Trijardy XR empagliflozin, linagliptin, metformin hydrochloride 12.5 mg; 2.5 mg; 1000 mg Tablet, Extended Release, 60-count — NDC 0597-0385-77 (Billing 00597-0385-77)
This is a package of 60 tablets of Trijardy XR empagliflozin, linagliptin, metformin hydrochloride 12.5 mg; 2.5 mg; 1000 mg Tablet, Extended Release from Boehringer Ingelheim Pharmaceuticals, Inc., marketed since Apr 2020 and currently FDA-listed; retail pharmacies pay about $5.63 per tablet (NADAC). It is the main listing for this product, which comes in 3 package sizes.
NDC database record
One package, one record: these facts belong to NDC 0597-0385-77 alone.
- Record
- FDA NDC Directory package listing · Human prescription drug
- Code segments
- 0597 labeler · 0385 product · 77 package
- Package marketed since
- Apr 23, 2020
- Sample package
- No — commercial package
- Listing certified through
- Dec 31, 2027
- Billing quantity
- 60 EA per package
- Barcode (UPC-A, from the NDC)
- 3 0597038577 6
- Medicaid fills, this package
- 15,126 prescriptions in the last four reported quarters
- FDA record last changed
- Oct 1, 2026
Identity & classification
Regulatory identifiers FDA, NLM and CMS codes for this package
Drug-database identifiers Medi-Span GPI and First Databank GCN / HICL / AHFS classification
- GSN (GCN sequence number): 080711
- GCN: 47671
- HICL (First Databank): 046321
- AHFS class code: 68:20.04.00
- RxCUI (RxNorm): 2359279
Where does this data come from?
- FDA openFDA NDC Directory · synced Oct 1, 2026
- FDA label on DailyMed · label index refreshed Oct 5, 2026
- RxNorm (NLM RxNav) · catalog refreshed Oct 1, 2026
- Medi-Span GPI (licensed)
- First Databank (licensed) · refreshed Oct 1, 2026
RxNorm drug class
This medicine belongs to the Dipeptidyl Peptidase 4 Inhibitor class.
Where does this data come from?
- RxClass (NLM) · catalog refreshed Oct 1, 2026
Clinical
Empagliflozin is used to: lower blood sugar in people with type 2 diabetes (condition in which blood sugar is too high because the body does not make or use insulin normally). reduce the risk of stroke, heart attack, or death in certain people who have type 2 diabetes. reduce the risk of being hospitalized for heart failure and death in adults with heart failure. reduce the risk of worsening of kidney disease, being hospitalized for heart failure, and death in certain adults with kidney disease. Empagliflozin is in a class of medications called sodium-glucose co-transporter 2 (SGLT2) inh...
Read the full MedlinePlus article ↗- It helps lower blood sugar in adults with type 2 diabetes, along with diet and exercise. The empagliflozin in it also lowers the risk of cardiovascular death if you have type 2 dia...
- Take it once a day with a meal in the morning. Swallow the tablets whole and never split, crush or chew them. If you miss a dose, take it when you remember, but don’t double up the...
- The most common are cold-like symptoms, urinary tract infections, diarrhea, constipation and headache. Genital yeast infections can also happen. Call your doctor if symptoms are bo...
- Get urgent care for unusual tiredness, muscle pain, trouble breathing, vomiting or stomach pain, since these can signal lactic acidosis or ketoacidosis. Also seek help for genital...
Patient education
Supplement & herbal interactions
Some supplements/herbs that may interact with Empagliflozin, Linagliptin, Metformin Hydrochloride — tap one for details:
Empagliflozin, Linagliptin, Metformin Hydrochloride may be associated with lower levels of 4 nutrients — worth a chat with your pharmacist, not a cause for alarm.
Where does this data come from?
- MedlinePlus (NLM) · refreshed Oct 1, 2026
- FDA label on DailyMed · label index refreshed Oct 5, 2026
Ask a licensed pharmacist directly — free, answered by our team.
Pricing
A drug doesn't have one price. Each row is a different public payment system, and none is what you'd pay at the counter — that depends on your insurance. The ⓘ on each row explains what it measures.
| Price system | Per ea | Per package |
|---|---|---|
| Retail pharmacies payNADAC · weekly | $5.628 | $337.66 / 60 tablets |
| Medicaid paysCMS SDUD · 12 mo | $9.53 | $571.60 / 60 tablets |
| Medicare drug plans payPart D · Q2 2026 | $5.63 | $337.97 / 60 tablets |
Where does this data come from?
- CMS NADAC weekly file · file of Sep 30, 2026
- CMS ASP pricing files · refreshed Sep 20, 2026
- CMS Medicaid State Drug Utilization Data · through Q1 2026
- CMS Part D plan pricing files · refreshed Sep 24, 2026
- VA National Acquisition Center price file
Packaging — all sizes for this product
| Package NDC | Description | Per unit | Per pack | Marketing start | Marketing end | Status |
|---|---|---|---|---|---|---|
| 00597-0385-77 You're viewing this Main listing | 60 TABLET, EXTENDED RELEASE in 1 BOTTLE | $5.63 / ea | $337.66 | 2020-04-23 | — | Active |
| 00597-0385-86 0597-0385-86 | 180 TABLET, EXTENDED RELEASE in 1 BOTTLE | $5.63 / ea | $1,012.98 | 2020-04-23 | — | Active |
| 00597-0385-88 0597-0385-88 | 1 BOTTLE in 1 CARTON / 14 TABLET, EXTENDED RELEASE in 1 BOTTLE | — | — | 2020-04-23 | — | Discontinued by firm |
This pack has the lowest per-ea cost of the 2 priced pack sizes ($5.63 NADAC).
In Medicaid, this is the most-dispensed pack of this product — about 93% of fills over the last four reported quarters. See all packs ↓
Pack size FAQ
What quantity is in this package?
How does this package differ from NDC 00597-0385-88?
What NDC number is used to bill for this package of Trijardy XR empagliflozin, linagliptin, metformin hydrochloride 12.5 mg; 2.5 mg; 1000 mg Tablet, Extended Release?
Prices are the latest CMS NADAC pharmacy acquisition cost per NDC; per-pack figures are per-unit × pack quantity, shown only when the pack is denominated in the same measure NADAC prices.
Therapeutic equivalents
| Product | Labeler | Pack | NADAC/unit | TE | Status | Price vs. this |
|---|---|---|---|---|---|---|
| Trijardy XR 12.5 mg/1; 2.5 mg/1; 1000 mgthis 00597-0385-77 | Boehringer | 60 tablets | $5.628 | — | Availability likely | — |
Where does this data come from?
- FDA openFDA NDC Directory · synced Oct 1, 2026
- FDA Orange Book · refreshed Oct 3, 2026
- CMS NADAC weekly file · file of Sep 30, 2026
Availability & generic status
We did not find an FDA-approved generic match for this exact strength, form and route. Patent/protection dates below may affect future generic timing.
Why the date isn’t exact: Generic timing can change because patents may be challenged, settled, licensed, added, removed, or worked around with a narrower label — and FDA approval does not always mean a pharmacy can get the generic today.
🛈 What do these terms mean?
- Patent
- Legal protection listed in the Orange Book that may delay generic approval or launch. Issued by the U.S. Patent & Trademark Office.
- Substance patent
- Covers the active drug molecule itself — the hardest to design around. A generic generally can’t launch until it expires.
- Formulation (product) patent
- Covers a specific formulation or dosage form. A generic can sometimes work around it with a different formulation.
- Method-of-use patent
- A patent covering one specific approved use of the drug — not necessarily the whole molecule. A generic can sometimes launch with a “skinny label” that carves out the protected use and keeps the others.
- Skinny label
- A generic label that omits a still-patented use when the FDA allows it — letting a generic reach the market for the unprotected uses.
- Exclusivity
- FDA-granted marketing protection, separate from patents — e.g. 5-yr new chemical entity, 7-yr orphan drug, or a +6-month pediatric extension.
- Paragraph IV
- A generic applicant’s formal challenge to a listed patent. It can potentially lead to earlier generic entry, but often involves litigation or a settlement.
- RLD / RS
- Reference Listed Drug — the brand product the FDA uses as the reference for generic applications. Reference Standard — the product the FDA expects generics to compare against in bioequivalence testing.
- TE / AB rating
- FDA therapeutic-equivalence rating. An AB rating generally means the FDA considers a generic therapeutically equivalent to — and substitutable for — the brand.
- LOE (loss of exclusivity)
- The latest patent or exclusivity currently listed — the loss-of-exclusivity / latest-listed-protection date shown on this page. Paragraph-IV challenges and settlements can move the real date earlier; FDA approval and a manufacturer’s decision to market can move it later.
Built from the FDA Orange Book. The bars above are scaled to each protection’s expiry; the red LOE marker is the last one to lapse.
| Patent | Type | Use code | Expires |
|---|---|---|---|
| US 9949998 ↗ | Method of use | U-2731 | Jun 11, 2034 |
| US 9949998 ↗ | Method of use | U-2731 | Jun 11, 2034 |
| US 9949998 ↗ | Method of use | U-2731 | Jun 11, 2034 |
| US 9949998 ↗ | Method of use | U-2731 | Jun 11, 2034 |
| US 10022379 ↗ | Method of use | U-2732 | Apr 2, 2029 |
| US 10022379 ↗ | Method of use | U-2732 | Apr 2, 2029 |
| US 10022379 ↗ | Method of use | U-2732 | Apr 2, 2029 |
| US 10022379 ↗ | Method of use | U-2732 | Apr 2, 2029 |
| US 10406172 ↗ | Method of use | U-2733 | Jun 15, 2030 |
| US 10258637 ↗ | Method of use | U-2731 | Apr 3, 2034 |
| US 10258637 ↗ | Method of use | U-2731 | Apr 3, 2034 |
| US 10406172 ↗ | Method of use | U-2733 | Jun 15, 2030 |
| US 10406172 ↗ | Method of use | U-2733 | Jun 15, 2030 |
| US 10258637 ↗ | Method of use | U-2731 | Apr 3, 2034 |
| US 10406172 ↗ | Method of use | U-2733 | Jun 15, 2030 |
| US 10258637 ↗ | Method of use | U-2731 | Apr 3, 2034 |
| US 8551957 ↗ | Method of use | U-2730 | Oct 14, 2029 |
| US 8551957 ↗ | Method of use | U-2730 | Oct 14, 2029 |
| US 8551957 ↗ | Method of use | U-2730 | Oct 14, 2029 |
| US 8551957 ↗ | Method of use | U-2730 | Oct 14, 2029 |
| US 11090323 ↗ | Method of use | U-3192 | Apr 3, 2034 |
| US 11090323 ↗ | Method of use | U-3192 | Apr 3, 2034 |
| US 11090323 ↗ | Method of use | U-3192 | Apr 3, 2034 |
| US 11090323 ↗ | Method of use | U-3192 | Apr 3, 2034 |
| US 11564886 ↗ | Method of use | U-3531 | Mar 7, 2032 |
| US 11564886 ↗ | Method of use | U-3531 | Mar 7, 2032 |
| US 11564886 ↗ | Method of use | U-3531 | Mar 7, 2032 |
| US 12364700 ↗ | Method of use | U-4224 | Jun 8, 2037 |
| US 12364700 ↗ | Method of use | U-4224 | Jun 8, 2037 |
| US 12364700 ↗ | Method of use | U-4224 | Jun 8, 2037 |
| US 12364700 ↗ | Method of use | U-4224 | Jun 8, 2037 |
| US 10596120 ↗ | Method of use | U-2790 | Mar 7, 2032 |
| US 10596120 ↗ | Method of use | U-2790 | Mar 7, 2032 |
| US 10596120 ↗ | Method of use | U-2790 | Mar 7, 2032 |
| US 10596120 ↗ | Method of use | U-2790 | Mar 7, 2032 |
| US 10596120 ↗ | Method of use | U-2776 | Mar 7, 2032 |
| US 10596120 ↗ | Method of use | U-2776 | Mar 7, 2032 |
| US 10596120 ↗ | Method of use | U-2776 | Mar 7, 2032 |
| US 10596120 ↗ | Method of use | U-2776 | Mar 7, 2032 |
| US 11833166 ↗ | Method of use | U-3776 | Apr 3, 2034 |
| US 11833166 ↗ | Method of use | U-3776 | Apr 3, 2034 |
| US 11833166 ↗ | Method of use | U-3776 | Apr 3, 2034 |
| US 11833166 ↗ | Method of use | U-3776 | Apr 3, 2034 |
| US 11833166 ↗ | Method of use | U-3777 | Apr 3, 2034 |
| US 11833166 ↗ | Method of use | U-3777 | Apr 3, 2034 |
| US 11833166 ↗ | Method of use | U-3777 | Apr 3, 2034 |
| US 11833166 ↗ | Method of use | U-3777 | Apr 3, 2034 |
| US 12115179 ↗ | Method of use | U-4023 | Feb 11, 2030 |
| US 12115179 ↗ | Method of use | U-4023 | Feb 11, 2030 |
| US 12115179 ↗ | Method of use | U-4023 | Feb 11, 2030 |
| US 12115179 ↗ | Method of use | U-4023 | Feb 11, 2030 |
| US 12678442 ↗ | Drug product | — | Apr 2, 2029 |
| US 7579449 ↗ | Drug substance | — | Aug 1, 2028 |
| US 7713938 ↗ | Drug substance | — | Apr 15, 2027 |
| US 12678442 ↗ | Drug product | — | Apr 2, 2029 |
| US 8883805 ↗ | Drug product | — | Nov 26, 2025 |
| US 7713938 ↗ | Drug substance | — | Apr 15, 2027 |
| US 9155705 ↗ | Drug product | — | May 21, 2030 |
| US 12678442 ↗ | Drug product | — | Apr 2, 2029 |
| US 12678442 ↗ | Drug product | — | Apr 2, 2029 |
| US 9415016 ↗ | Drug product | — | Apr 2, 2029 |
| US 9415016 ↗ | Drug product | — | Apr 2, 2029 |
| US 9155705 ↗ | Drug product | — | May 21, 2030 |
| US 7579449 ↗ | Drug substance | — | Aug 1, 2028 |
| US 8883805 ↗ | Drug product | — | Nov 26, 2025 |
| US 8883805 ↗ | Drug product | — | Nov 26, 2025 |
| US 8883805 ↗ | Drug product | — | Nov 26, 2025 |
| US 9155705 ↗ | Drug product | — | May 21, 2030 |
| US 7713938 ↗ | Drug substance | — | Apr 15, 2027 |
| US 9155705 ↗ | Drug product | — | May 21, 2030 |
| US 9415016 ↗ | Drug product | — | Apr 2, 2029 |
| US 7713938 ↗ | Drug substance | — | Apr 15, 2027 |
| US 9415016 ↗ | Drug product | — | Apr 2, 2029 |
| US 7579449 ↗ | Drug substance | — | Aug 1, 2028 |
| US 7579449 ↗ | Drug substance | — | Aug 1, 2028 |
| US 7579449*PED ↗ | Drug product | — | Feb 1, 2029 |
| US 7713938*PED ↗ | Drug product | — | Oct 15, 2027 |
| US 8551957*PED ↗ | Drug product | — | Apr 14, 2030 |
| US 8551957*PED ↗ | Drug product | — | Apr 14, 2030 |
| US 7713938*PED ↗ | Drug product | — | Oct 15, 2027 |
| US 7579449*PED ↗ | Drug product | — | Feb 1, 2029 |
| US 8551957*PED ↗ | Drug product | — | Apr 14, 2030 |
| US 7713938*PED ↗ | Drug product | — | Oct 15, 2027 |
| US 7579449*PED ↗ | Drug product | — | Feb 1, 2029 |
| US 8551957*PED ↗ | Drug product | — | Apr 14, 2030 |
| US 7579449*PED ↗ | Drug product | — | Feb 1, 2029 |
| US 7713938*PED ↗ | Drug product | — | Oct 15, 2027 |
| US 8883805*PED ↗ | Drug product | — | May 26, 2026 |
| US 8883805*PED ↗ | Drug product | — | May 26, 2026 |
| US 8883805*PED ↗ | Drug product | — | May 26, 2026 |
| US 8883805*PED ↗ | Drug product | — | May 26, 2026 |
| US 9949998*PED ↗ | Drug product | — | Dec 11, 2034 |
| US 9949998*PED ↗ | Drug product | — | Dec 11, 2034 |
| US 9949998*PED ↗ | Drug product | — | Dec 11, 2034 |
| US 9949998*PED ↗ | Drug product | — | Dec 11, 2034 |
| US 10258637*PED ↗ | Drug product | — | Oct 3, 2034 |
| US 10258637*PED ↗ | Drug product | — | Oct 3, 2034 |
| US 10258637*PED ↗ | Drug product | — | Oct 3, 2034 |
| US 10258637*PED ↗ | Drug product | — | Oct 3, 2034 |
| US 12115179*PED ↗ | Drug product | — | Aug 11, 2030 |
| US 12115179*PED ↗ | Drug product | — | Aug 11, 2030 |
| US 12115179*PED ↗ | Drug product | — | Aug 11, 2030 |
| US 12115179*PED ↗ | Drug product | — | Aug 11, 2030 |
| US 11833166*PED ↗ | Drug product | — | Oct 3, 2034 |
| US 11833166*PED ↗ | Drug product | — | Oct 3, 2034 |
| US 11833166*PED ↗ | Drug product | — | Oct 3, 2034 |
| US 11833166*PED ↗ | Drug product | — | Oct 3, 2034 |
| US 12364700*PED ↗ | Drug product | — | Dec 8, 2037 |
| US 12364700*PED ↗ | Drug product | — | Dec 8, 2037 |
| US 12364700*PED ↗ | Drug product | — | Dec 8, 2037 |
| US 12364700*PED ↗ | Drug product | — | Dec 8, 2037 |
| US 11090323*PED ↗ | Drug product | — | Oct 3, 2034 |
| US 11090323*PED ↗ | Drug product | — | Oct 3, 2034 |
| US 11090323*PED ↗ | Drug product | — | Oct 3, 2034 |
| US 11090323*PED ↗ | Drug product | — | Oct 3, 2034 |
Is there a generic version of TRIJARDY XR 12.5-2.5-1,000 MG?
The FDA approved a generic — why can’t I get it at my pharmacy yet?
Why do different websites show different generic release dates?
What does “FDA listed” mean?
What does a patent or protection date mean here?
What does “current Orange Book estimate” mean?
Can a generic come out before the last patent expires?
Can a generic come out after the listed dates?
What is the difference between patents and exclusivity?
Why are there multiple patent dates?
Where does this data come from?
- FDA Orange Book · refreshed Oct 3, 2026
What it looks like
Where does this data come from?
- FDA label on DailyMed · label index refreshed Oct 5, 2026
Inactive Ingredients / Excipients
Inactive ingredients, also called excipients, are components of the drug product other than the active ingredient. They may include fillers, dyes, coatings, preservatives, flavors, or other formulation ingredients.
🧪 Avoiding an ingredient? See Empagliflozin / Linagliptin / Metformin inactive ingredients by manufacturer: every current product's list side by side, so you can ask your pharmacy for the version that does not list it.
Where does this data come from?
IACT rows and label-wide narrative are kept separate; availability and product-level specificity depend on the submitted label.- FDA label on DailyMed · label index refreshed Oct 5, 2026
- FDA openFDA NDC Directory · synced Oct 1, 2026
Inactive ingredient FAQ
Are inactive ingredients the same for every manufacturer?
Why might an inactive ingredient be missing?
Can inactive ingredients matter?
Manufacturer & labeler
More NDCs from Boehringer Ingelheim Pharmaceuticals, Inc. labeler code 00597
- Synjardy XR empagliflozin, metformin hydrochloride 12.5 mg; 1000 mg Tablet, Extended Release NDC 0597-0300-20
- Pradaxa dabigatran etexilate mesylate 75 mg Capsule NDC 0597-0355-09
- Pradaxa dabigatran etexilate mesylate 150 mg Capsule NDC 0597-0360-42
- Cyltezo adalimumab-adbm Kit NDC 0597-0370-72
- Cyltezo adalimumab-adbm Kit NDC 0597-0375-16
- Trijardy XR empagliflozin, linagliptin, metformin hydrochloride 10 mg; 5 mg; 1000 mg Tablet, Extended Release NDC 0597-0380-13
- Trijardy XR empagliflozin, linagliptin, metformin hydrochloride 25 mg; 5 mg; 1000 mg Tablet, Extended Release NDC 0597-0390-13
- Trijardy XR empagliflozin, linagliptin, metformin hydrochloride 5 mg; 2.5 mg; 1000 mg Tablet, Extended Release NDC 0597-0395-23
- Cyltezo adalimumab-adbm Kit NDC 0597-0400-89
- Cyltezo adalimumab-adbm Kit NDC 0597-0405-10
- Pradaxa dabigatran etexilate 20 mg Pellet NDC 0597-0425-78
- Pradaxa dabigatran etexilate 30 mg Pellet NDC 0597-0430-18
Where does this data come from?
- FDA openFDA NDC Directory · synced Oct 1, 2026
- Drugs@FDA
Full prescribing information FDA SPL
🚨 Boxed Warning ▾
WARNING: LACTIC ACIDOSIS Postmarketing cases of metformin-associated lactic acidosis have resulted in death, hypothermia, hypotension, and resistant bradyarrhythmias. The onset of metformin-associated lactic acidosis is often subtle, accompanied only by nonspecific symptoms such as malaise, myalgias, respiratory distress, somnolence, and abdominal pain. Metformin-associated lactic acidosis was characterized by elevated blood lactate levels (>5 mmol/Liter), anion gap acidosis (without evidence of ketonuria or ketonemia), an increased lactate/pyruvate ratio; and metformin plasma levels generally >5 mcg/mL [see Warnings and Precautions (5.1) ] .
Risk factors for metformin-associated lactic acidosis include renal impairment, concomitant use of certain drugs (e.g., carbonic anhydrase inhibitors such as topiramate), age 65 years old or greater, having a radiological study with contrast, surgery and other procedures, hypoxic states (e.g., acute congestive heart failure), excessive alcohol intake, hepatic impairment, and mitochondrial diseases [see Warnings and Precautions (5.1) ] . Steps to reduce the risk of and manage metformin-associated lactic acidosis in these high risk groups are provided in the full prescribing information [see Dosage and Administration (2.3) , Contraindications (4) , Warnings and Precautions (5.1) , Drug Interactions (7) , and Use in Specific Populations (8.6 , 8.7) ].
If metformin-associated lactic acidosis is suspected, immediately discontinue TRIJARDY XR and institute general supportive measures in a hospital setting. Prompt hemodialysis is recommended [see Warnings and Precautions (5.1) ]. WARNING: LACTIC ACIDOSIS See full prescribing information for complete boxed warning.
Postmarketing cases of metformin-associated lactic acidosis have resulted in death, hypothermia, hypotension, and resistant bradyarrhythmias. Symptoms included malaise, myalgias, respiratory distress, somnolence, and abdominal pain. Laboratory abnormalities included elevated blood lactate levels, anion gap acidosis, increased lactate/pyruvate ratio; and metformin plasma levels generally >5 mcg/mL.
( 5.1 ) Risk factors include renal impairment, concomitant use of certain drugs, age ≥65 years old, radiological studies with contrast, surgery and other procedures, hypoxic states, excessive alcohol intake, hepatic impairment, and mitochondrial diseases. Steps to reduce the risk of and manage metformin-associated lactic acidosis in these high risk groups are provided in the Full Prescribing Information. ( 5.1 ) If lactic acidosis is suspected, discontinue TRIJARDY XR and institute general supportive measures in a hospital setting.
Prompt hemodialysis is recommended. ( 5.1 )
🎯 Indications and Usage ▾
1 INDICATIONS AND USAGE TRIJARDY XR is a combination of empagliflozin, linagliptin, and metformin hydrochloride (HCl) indicated as an adjunct to diet and exercise to improve glycemic control in adults with type 2 diabetes mellitus . Empagliflozin is indicated to reduce the risk of cardiovascular (CV) death in adults with type 2 diabetes mellitus and established CV disease [see Clinical Studies (14.2) ] . TRIJARDY XR is a combination of empagliflozin, a sodium-glucose co-transporter 2 (SGLT2) inhibitor, linagliptin, a dipeptidyl peptidase-4 (DPP-4) inhibitor, and metformin hydrochloride (HCl), a biguanide, indicated as an adjunct to diet and exercise to improve glycemic control in adults with type 2 diabetes mellitus.
Empagliflozin is indicated to reduce the risk of cardiovascular (CV) death in adults with type 2 diabetes mellitus and established CV disease. ( 1 ) Limitations of Use Not recommended for use to improve glycemic control in patients with type 1 diabetes mellitus. It may increase the risk of diabetic ketoacidosis in these patients.
( 1 ) Has not been studied in patients with a history of pancreatitis. ( 1 ) Limitations of Use TRIJARDY XR is not recommended for use to improve glycemic control in patients with type 1 diabetes mellitus. It may increase the risk of diabetic ketoacidosis in these patients [see Warnings and Precautions (5.2) ] .
TRIJARDY XR has not been studied in patients with a history of pancreatitis. It is unknown whether patients with a history of pancreatitis are at an increased risk for the development of pancreatitis while using TRIJARDY XR [see Warnings and Precautions (5.3) ].
⏱️ Dosage and Administration ▾
2 DOSAGE AND ADMINISTRATION Assess renal function before initiating and as clinically indicated. Assess volume status and correct volume depletion before initiating. ( 2.1 ) Individualize the starting dosage based on the patient's current regimen and renal function.
( 2.2 , 2.3 ) Initiation is not recommended in patients with an eGFR less than 45 mL/min/1.73 m 2 , due to the metformin HCl component. ( 2.3 ) The maximum recommended dosage of TRIJARDY XR is 25 mg empagliflozin, 5 mg linagliptin and 2,000 mg metformin HCl. ( 2.2 ) Take once daily with a meal in the morning.
( 2.2 ) Swallow whole; do not split, crush, dissolve, or chew. ( 2.2 ) TRIJARDY XR may need to be discontinued at time of, or prior to, iodinated contrast imaging procedures. ( 2.4 ) Withhold TRIJARDY XR for at least 3 days, if possible, prior to surgery or procedures associated with prolonged fasting.
( 2.5 )
2.1Testing Prior to Initiation of TRIJARDY XR Assess renal function before initiating TRIJARDY XR and as clinically indicated [see Warnings and Precautions (5.1 , 5.4) ] . Assess volume status. In patients with volume depletion, correct this condition before initiating TRIJARDY XR [see Warnings and Precautions (5.4) and Use in Specific Populations (8.5 , 8.6) ].
2.2Recommended Dosage and Administration Individualize the starting dosage of TRIJARDY XR based on the patient's current regimen: In patients on metformin HCl, with or without linagliptin, switch to TRIJARDY XR containing a similar total daily dosage of metformin HCl and a total daily dosage of empagliflozin 10 mg and linagliptin 5 mg; In patients on metformin HCl and any regimen containing empagliflozin, with or without linagliptin, switch to TRIJARDY XR containing a similar total daily dosage of metformin HCl, the same total daily dosage of empagliflozin and linagliptin 5 mg.
Monitor effectiveness and tolerability, and adjust dosing as appropriate, not to exceed the maximum recommended daily dosage of empagliflozin 25 mg, linagliptin 5 mg and metformin HCl 2,000 mg . Take TRIJARDY XR orally, once daily with a meal in the morning. Take TRIJARDY XR 10 mg/5 mg/1,000 mg or TRIJARDY XR 25 mg/5 mg/1,000 mg as a single tablet once daily.
Take TRIJARDY XR 5 mg/2.5 mg/1,000 mg or TRIJARDY XR 12.5 mg/2.5 mg/1,000 mg as two tablets together once daily. Swallow TRIJARDY XR tablets whole. Do not split, crush, dissolve, or chew.
2.3Dosage Recommendations in Patients with Renal Impairment Initiation of TRIJARDY XR is not recommended in patients with an eGFR less than 45 mL/min/1.73 m 2 , due to the metformin HCl component. TRIJARDY XR is contraindicated in patients with an eGFR less than 30 mL/min/1.73 m 2 [see Contraindications (4) , Warnings and Precautions (5.1 , 5.4) , and Use in Specific Populations (8.6) ] .
2.4Discontinuation for Iodinated Contrast Imaging Procedures Discontinue TRIJARDY XR at the time of, or prior to, an iodinated contrast imaging procedure in patients with an eGFR less than 60 mL/min/1.73 m 2 ; in patients with a history of liver disease, alcoholism or heart failure; or in patients who will be administered intra-arterial iodinated contrast. Re-evaluate eGFR 48 hours after the imaging procedure; restart TRIJARDY XR if renal function is stable [see Warnings and Precautions (5.1) ] .
2.5Temporary Interruption for Surgery Withhold TRIJARDY XR for at least 3 days, if possible, prior to surgery or procedures associated with prolonged fasting. Resume TRIJARDY XR when the patient is clinically stable and has resumed oral intake [see Warnings and Precautions (5.2) and Clinical Pharmacology (12.2) ].
2.6Recommendations Regarding Missed Dose If a dose is missed, instruct patients to take the dose as soon as possible. Advise patients not to double up the next dose.
💊 Dosage Forms and Strengths ▾
3 DOSAGE FORMS AND STRENGTHS TRIJARDY XR Tablets: Empagliflozin Strength Linagliptin Strength Metformin HCl Extended-Release Strength Color/Shape Tablet Markings 5 mg 2.5 mg 1,000 mg grey, oval-shaped, film-coated tablet Printed on one side in white ink with the Boehringer Ingelheim company symbol and "395" on the top line and "5/2.5" on the bottom line. 10 mg 5 mg 1,000 mg tan, oval-shaped, film-coated tablet Printed on one side in white ink with the Boehringer Ingelheim company symbol and "380" on the top line and "10/5" on the bottom line.
12.5mg 2.5 mg 1,000 mg red, oval-shaped, film-coated tablet Printed on one side in white ink with the Boehringer Ingelheim company symbol and "385" on the top line and "12.5/2.5" on the bottom line. 25 mg 5 mg 1,000 mg brown, oval-shaped, film-coated tablet Printed on one side in white ink with the Boehringer Ingelheim company symbol and "390" on the top line and "25/5" on the bottom line. Tablets: 5 mg empagliflozin/2.5 mg linagliptin/1,000 mg metformin HCl extended-release ( 3 ) 10 mg empagliflozin/5 mg linagliptin/1,000 mg metformin HCl extended-release ( 3 ) 12.5 mg empagliflozin/2.5 mg linagliptin/1,000 mg metformin HCl extended-release ( 3 ) 25 mg empagliflozin/5 mg linagliptin/1,000 mg metformin HCl extended-release ( 3 )
⛔ Contraindications ▾
4 CONTRAINDICATIONS TRIJARDY XR is contraindicated in patients with: severe renal impairment (eGFR less than 30 mL/min/1.73 m 2 ) [see Warnings and Precautions (5.1 , 5.4) and Use in Specific Populations (8.6) ]. acute or chronic metabolic acidosis, including diabetic ketoacidosis [see Warnings and Precautions (5.1) ]. hypersensitivity to empagliflozin, linagliptin, metformin HCl or any of the excipients in TRIJARDY XR, reactions such as anaphylaxis, angioedema, exfoliative skin conditions, urticaria, or bronchial hyperreactivity have occurred [see Warnings and Precautions (5.8) and Adverse Reactions (6) ] .
Severe renal impairment (eGFR below 30 mL/min/1.73 m 2 ). ( 4 ) Metabolic acidosis, including diabetic ketoacidosis. ( 4 ) Hypersensitivity to empagliflozin, linagliptin, metformin HCl, or any of the excipients in TRIJARDY XR.
( 4 )
⚠️ Warnings and Cautions ▾
5 WARNINGS AND PRECAUTIONS Diabetic Ketoacidosis in Patients with Type 1 Diabetes Mellitus and Other Ketoacidosis: Consider ketone monitoring in patients at risk of ketoacidosis, as indicated. Assess for ketoacidosis regardless of presenting blood glucose levels and discontinue TRIJARDY XR if ketoacidosis is suspected. Monitor patients for resolution of ketoacidosis before restarting.
( 5.2 ) Pancreatitis: There have been reports of acute pancreatitis, including fatal pancreatitis. If pancreatitis is suspected, promptly discontinue TRIJARDY XR. ( 5.3 ) Volume Depletion: Before initiating TRIJARDY XR, assess volume status and renal function in patients with impaired renal function, elderly patients, or patients on loop diuretics.
Monitor for signs and symptoms during therapy. ( 5.4 ) Genitourinary Infections, including Urosepsis, Pyelonephritis, Necrotizing Fasciitis of the Perineum (Fournier's Gangrene), and Genital Mycotic Infections: Monitor patients for signs and symptoms of genitourinary infections and treat promptly, if indicated. Immediately evaluate patients presenting with pain or tenderness, erythema, or swelling in the genital or perineal area, along with fever or malaise, for necrotizing fasciitis and if suspected, discontinue TRIJARDY XR, and promptly institute appropriate medical and/or surgical intervention.
( 5.5 ) Hypoglycemia: Consider lowering the dosage of insulin secretagogue or insulin to reduce the risk of hypoglycemia when initiating TRIJARDY XR. ( 5.6 ) Lower Limb Amputation: Monitor patients for infections or ulcers of lower limbs, and institute appropriate treatment. ( 5.7 ) Hypersensitivity Reactions: Serious hypersensitivity reactions (e.g., anaphylaxis, angioedema, and exfoliative skin conditions) have occurred with empagliflozin and linagliptin.
If hypersensitivity reactions occur, discontinue TRIJARDY XR, treat promptly, and monitor until signs and symptoms resolve. ( 5.8 ) Vitamin B 12 Deficiency: Metformin may lower vitamin B 12 levels. Measure hematologic parameters annually and vitamin B 12 at 2 to 3 year intervals and manage any abnormalities.
( 5.9 ) Arthralgia: Severe and disabling arthralgia has been reported in patients taking linagliptin. Consider as a possible cause for severe joint pain and discontinue TRIJARDY XR if appropriate. ( 5.10 ) Bullous Pemphigoid: There have been reports of bullous pemphigoid requiring hospitalization.
Tell patients to report development of blisters or erosions. If bullous pemphigoid is suspected, discontinue TRIJARDY XR. ( 5.11 ) Heart Failure: Heart failure has been observed with two other members of the DPP-4 inhibitor class.
Consider risks and benefits of TRIJARDY XR in patients who have known risk factors for heart failure. Monitor for signs and symptoms. ( 5.12 )
5.1Lactic Acidosis There have been postmarketing cases of metformin-associated lactic acidosis, including fatal cases. These cases had a subtle onset and were accompanied by nonspecific symptoms such as malaise, myalgias, abdominal pain, respiratory distress, or increased somnolence; however, hypothermia, hypotension, and resistant bradyarrhythmias have occurred with severe acidosis. Metformin-associated lactic acidosis was characterized by elevated blood lactate concentrations (>5 mmol/Liter), anion gap acidosis (without evidence of ketonuria or ketonemia), and an increased lactate/pyruvate ratio; metformin plasma levels generally >5 mcg/mL.
Metformin decreases liver uptake of lactate increasing lactate blood levels, which may increase the risk of lactic acidosis, especially in patients at risk. If metformin-associated lactic acidosis is suspected, general supportive measures should be instituted promptly in a hospital setting, along with immediate discontinuation of TRIJARDY XR. In TRIJARDY XR-treated patients with a diagnosis or strong suspicion of lactic acidosis, prompt hemodialysis is recommended to correct the acidosis and remove accumulated metformin (metformin is dialyzable, with a… [Excerpted — this section continues on DailyMed.]
🤒 Adverse Reactions ▾
6 ADVERSE REACTIONS The following important adverse reactions are described below and elsewhere in the labeling: Lactic Acidosis [see Boxed Warning and Warnings and Precautions (5.1) ] Diabetic Ketoacidosis in Patients with Type 1 Diabetes Mellitus and Other Ketoacidosis [see Warnings and Precautions (5.2) ] Pancreatitis [see Warnings and Precautions (5.3) ] Volume Depletion [see Warnings and Precautions (5.4) ] Genitourinary Infections, including Urosepsis, Pyelonephritis, Necrotizing Fasciitis of the Perineum (Fournier's Gangrene), and Genital Mycotic Infections [see Warnings and Precautions (5.5) ] Hypoglycemia with Concomitant Use with Insulin and Insulin Secretagogues [see Warnings and Precautions (5.6) ] Lower Limb Amputation [see Warnings and Precautions (5.7) ] Hypersensitivity Reactions [see Warnings and Precautions (5.8) ] Vitamin B 12 Deficiency [see Warnings and Precautions (5.9) ] Severe and Disabling Arthralgia [see Warnings and Precautions (5.10) ] Bullous Pemphigoid [see Warnings and Precautions (5.11) ] Heart Failure [see Warnings and Precautions (5.12) ] Most common adverse reactions (5% or greater incidence) were upper respiratory tract infection, urinary tract infection, nasopharyngitis, diarrhea, constipation, headache, and gastroenteritis.
( 6.1 ) To report SUSPECTED ADVERSE REACTIONS, contact Boehringer Ingelheim Pharmaceuticals, Inc. at 1-800-542-6257, or FDA at 1-800-FDA-1088 or www.fda.gov/medwatch .
6.1Clinical Trials Experience Because clinical trials are conducted under widely varying conditions, adverse reaction rates observed in the clinical trials of a drug cannot be directly compared to rates in the clinical trials of another drug and may not reflect the rates observed in practice. Empagliflozin, Linagliptin and Metformin HCl The safety of concomitantly administered empagliflozin (daily dosage 10 mg or 25 mg), linagliptin (daily dosage 5 mg) and metformin HCl has been evaluated in a total of 686 patients with type 2 diabetes mellitus treated for up to 52 weeks in an active-controlled clinical trial.
The most common adverse reactions are shown in Table 1. Table 1 Adverse Reactions Reported in ≥5% of Patients Treated with Empagliflozin, Linagliptin, and Metformin HCl in an Active-Controlled Clinical Trial of 52 Weeks Adverse Reactions Empagliflozin 10 mg + Linagliptin 5 mg + Metformin HCl (%) n=136 Empagliflozin 25 mg + Linagliptin 5 mg + Metformin HCl (%) n=137 a Predefined grouping, including, but not limited to, urinary tract infection, asymptomatic bacteriuria, cystitis Upper respiratory tract infection 10.3
8.0Urinary tract infection a 9.6
10.2Nasopharyngitis 8.1
5.8Diarrhea 6.6
2.2Constipation 5.1
5.8Headache 5.1
5.1Gastroenteritis 2.9
5.8Hypoglycemia The incidence of hypoglycemia (defined as plasma or capillary glucose of less than 54 mg/dL) was 0.7% in patients receiving empagliflozin 10 mg/linagliptin 5 mg/metformin HCl and 0.7% in patients receiving empagliflozin 25 mg/linagliptin 5 mg/metformin HCl. Events of severe hypoglycemia (requiring assistance regardless of blood glucose) did not occur in this trial. Empagliflozin Adverse reactions that occurred in ≥2% of patients receiving empagliflozin and more commonly than in patients given placebo included (10 mg, 25 mg, and placebo): urinary tract infection (9.3%, 7.6%, and 7.6%), female genital mycotic infections (5.4%, 6.4%, and 1.5%), upper respiratory tract infection (3.1%, 4.0%, and 3.8%), increased urination (3.4%, 3.2%, and 1.0%), dyslipidemia (3.9%, 2.9%, and 3.4%), arthralgia (2.4%, 2.3%, and 2.2%), male genital mycotic infections (3.1%, 1.6%, and 0.4%), and nausea (2.3%, 1.1%, and 1.4%).
Thirst (including polydipsia) was reported in 0%, 1.7%, and 1.5% for placebo, empagliflozin 10 mg, and empagliflozin 25 mg, respectively. Empagliflozin causes an osmotic diuresis, which may lead to intravascular volume contraction and adverse reactions related to volume depletion. Events related to volume depletion (hypotension and syncop… [Excerpted — this section continues on DailyMed.]
🔄 Drug Interactions ▾
7 DRUG INTERACTIONS Table 2 describes clinically relevant interactions with TRIJARDY XR. Table 2 Clinically Relevant Interactions with TRIJARDY XR Carbonic Anhydrase Inhibitors Clinical Impact Topiramate or other carbonic anhydrase inhibitors (e.g., zonisamide, acetazolamide or dichlorphenamide) frequently causes a decrease in serum bicarbonate and induce non-anion gap, hyperchloremic metabolic acidosis. Concomitant use of these drugs with TRIJARDY XR may increase the risk of lactic acidosis.
Intervention Consider more frequent monitoring of these patients. Drugs that Reduce Metformin Clearance Clinical Impact Concomitant use of drugs that interfere with common renal tubular transport systems involved in the renal elimination of metformin (e.g., organic cationic transporter-2 [OCT2] / multidrug and toxin extrusion [MATE] inhibitors such as ranolazine, vandetanib, dolutegravir, and cimetidine) could increase systemic exposure to metformin and may increase the risk for lactic acidosis [see Clinical Pharmacology (12.3) ] .
Intervention Consider the benefits and risks of concomitant use. Alcohol Clinical Impact Alcohol is known to potentiate the effect of metformin on lactate metabolism. Intervention Warn patients against excessive alcohol intake while receiving TRIJARDY XR.
Diuretics Clinical Impact Coadministration of empagliflozin with diuretics resulted in increased urine volume and frequency of voids, which might enhance the potential for volume depletion. Intervention Before initiating TRIJARDY XR, assess volume status and renal function. In patients with volume depletion, correct this condition before initiating TRIJARDY XR.
Monitor for signs and symptoms of volume depletion, and renal function after initiating therapy. Insulin or Insulin Secretagogues Clinical Impact The risk of hypoglycemia is increased when TRIJARDY XR is used in combination with an insulin secretagogue (e.g., sulfonylurea) or insulin. Intervention Coadministration of TRIJARDY XR with an insulin secretagogue (e.g., sulfonylurea) or insulin may require lower dosages of the insulin secretagogue or insulin to reduce the risk of hypoglycemia.
Drugs Affecting Glycemic Control Clinical Impact Certain drugs tend to produce hyperglycemia and may lead to loss of glycemic control. These drugs include the thiazides and other diuretics, corticosteroids, phenothiazines, thyroid products, estrogens, oral contraceptives, phenytoin, nicotinic acid, sympathomimetics, calcium channel blocking drugs, and isoniazid. Intervention When such drugs are administered to a patient receiving TRIJARDY XR, the patient should be closely observed to maintain adequate glycemic control.
When such drugs are withdrawn from a patient receiving TRIJARDY XR, the patient should be observed closely for hypoglycemia. Lithium Clinical Impact Concomitant use of an SGLT2 inhibitor with lithium may decrease serum lithium concentrations. Intervention Monitor serum lithium concentration more frequently during TRIJARDY XR initiation and dosage changes.
Inducers of P-glycoprotein or CYP3A4 Enzymes Clinical Impact Rifampin decreased linagliptin exposure, suggesting that the efficacy of linagliptin may be reduced when administered in combination with a strong P-gp or CYP3A4 inducer. Intervention Use of alternative treatments is strongly recommended when linagliptin is to be administered with a strong P-gp or CYP3A4 inducer. Positive Urine Glucose Test Clinical Impact SGLT2 inhibitors increase urinary glucose excretion and will lead to positive urine glucose tests.
Intervention Monitoring glycemic control with urine glucose tests is not recommended in patients taking SGLT2 inhibitors. Use alternative methods to monitor glycemic control. Interference with 1,5-anhydroglucitol (1,5-AG) Assay Clinical Impact Measurements of 1,5-AG are unreliable in assessing glycemic control in patients taking SGLT2 inhibitors.
Intervention Monitoring glycemic control with 1,5-AG assay is not recommended. Use alternative metho… [Excerpted — this section continues on DailyMed.]
👥 Use in Specific Populations ▾
8 USE IN SPECIFIC POPULATIONS Pregnancy: Advise females of the potential risk to a fetus especially during the second and third trimesters. ( 8.1 ) Lactation: Not recommended when breastfeeding. ( 8.2 ) Females and Males of Reproductive Potential: Advise premenopausal females of the potential for an unintended pregnancy.
( 8.3 ) Geriatric Patients: Higher incidence of adverse reactions related to volume depletion and reduced renal function. ( 8.5 ) Renal Impairment: Higher incidence of adverse reactions related to reduced renal function. ( 8.6 ) Hepatic Impairment: Avoid use in patients with hepatic impairment.
( 8.7 )
8.1Pregnancy Risk Summary Based on animal data showing adverse renal effects from empagliflozin, TRIJARDY XR is not recommended during the second and third trimesters of pregnancy. The limited available data with TRIJARDY XR, linagliptin, or empagliflozin in pregnant women are not sufficient to determine a drug-associated risk for major birth defects and miscarriage. Published studies with metformin HCl use during pregnancy have not reported a clear association with metformin HCl and major birth defect or miscarriage risk (see Data ) .
There are risks to the mother and fetus associated with poorly controlled diabetes in pregnancy (see Clinical Considerations ). In animal studies, empagliflozin, a component of TRIJARDY XR, resulted in adverse renal changes in rats when administered during a period of renal development corresponding to the late second and third trimesters of human pregnancy. Doses approximately 13-times the maximum clinical dose caused renal pelvic and tubule dilatations that were reversible.
No adverse developmental effects were observed when linagliptin or metformin HCl were administered to pregnant rats or rabbits (see Data ). The estimated background risk of major birth defects is 6% to 10% in women with pre-gestational diabetes with a HbA1c >7 and has been reported to be as high as 20% to 25% in women with HbA1c >10. The estimated background risk of miscarriage for the indicated population is unknown.
In the U.S. general population, the estimated background risk of major birth defects and miscarriage in clinically recognized pregnancies is 2% to 4% and 15% to 20%, respectively. Clinical Considerations Disease-associated maternal and/or embryo/fetal risk Poorly controlled diabetes in pregnancy increases the maternal risk for diabetic ketoacidosis, pre-eclampsia, spontaneous abortions, preterm delivery, and delivery complications. Poorly controlled diabetes increases the fetal risk for major birth defects, stillbirth, and macrosomia related morbidity.
Data Human Data Published data from postmarketing studies have not reported a clear association with metformin HCl and major birth defects, miscarriage, or adverse maternal or fetal outcomes when metformin HCl was used during pregnancy. However, these studies cannot definitely establish the absence of any metformin-associated risk because of methodological limitations, including small sample size and inconsistent comparator groups. Animal Data Empagliflozin: Empagliflozin dosed directly to juvenile rats from postnatal day (PND) 21 until PND 90 at doses of 1, 10, 30, and 100 mg/kg/day caused increased kidney weights and renal tubular and pelvic dilatation at 100 mg/kg/day, which approximates 13-times the maximum clinical dose of 25 mg, based on AUC.
These findings were not observed after a 13-week, drug-free recovery period. These outcomes occurred with drug exposure during periods of renal development in rats that correspond to the late second and third trimester of human renal development. In embryo-fetal development studies in rats and rabbits, empagliflozin was administered for intervals coinciding with the first trimester period of organogenesis in humans.
Doses up to 300 mg/kg/day, which approximates 48-times (rats) and 128-times (rabbits) the maximum clinical dose of 25 mg (based on AUC), did not result in adverse developmental effects. In… [Excerpted — this section continues on DailyMed.]
🤰 Pregnancy ▾
8.1Pregnancy Risk Summary Based on animal data showing adverse renal effects from empagliflozin, TRIJARDY XR is not recommended during the second and third trimesters of pregnancy. The limited available data with TRIJARDY XR, linagliptin, or empagliflozin in pregnant women are not sufficient to determine a drug-associated risk for major birth defects and miscarriage. Published studies with metformin HCl use during pregnancy have not reported a clear association with metformin HCl and major birth defect or miscarriage risk (see Data ) .
There are risks to the mother and fetus associated with poorly controlled diabetes in pregnancy (see Clinical Considerations ). In animal studies, empagliflozin, a component of TRIJARDY XR, resulted in adverse renal changes in rats when administered during a period of renal development corresponding to the late second and third trimesters of human pregnancy. Doses approximately 13-times the maximum clinical dose caused renal pelvic and tubule dilatations that were reversible.
No adverse developmental effects were observed when linagliptin or metformin HCl were administered to pregnant rats or rabbits (see Data ). The estimated background risk of major birth defects is 6% to 10% in women with pre-gestational diabetes with a HbA1c >7 and has been reported to be as high as 20% to 25% in women with HbA1c >10. The estimated background risk of miscarriage for the indicated population is unknown.
In the U.S. general population, the estimated background risk of major birth defects and miscarriage in clinically recognized pregnancies is 2% to 4% and 15% to 20%, respectively. Clinical Considerations Disease-associated maternal and/or embryo/fetal risk Poorly controlled diabetes in pregnancy increases the maternal risk for diabetic ketoacidosis, pre-eclampsia, spontaneous abortions, preterm delivery, and delivery complications. Poorly controlled diabetes increases the fetal risk for major birth defects, stillbirth, and macrosomia related morbidity.
Data Human Data Published data from postmarketing studies have not reported a clear association with metformin HCl and major birth defects, miscarriage, or adverse maternal or fetal outcomes when metformin HCl was used during pregnancy. However, these studies cannot definitely establish the absence of any metformin-associated risk because of methodological limitations, including small sample size and inconsistent comparator groups. Animal Data Empagliflozin: Empagliflozin dosed directly to juvenile rats from postnatal day (PND) 21 until PND 90 at doses of 1, 10, 30, and 100 mg/kg/day caused increased kidney weights and renal tubular and pelvic dilatation at 100 mg/kg/day, which approximates 13-times the maximum clinical dose of 25 mg, based on AUC.
These findings were not observed after a 13-week, drug-free recovery period. These outcomes occurred with drug exposure during periods of renal development in rats that correspond to the late second and third trimester of human renal development. In embryo-fetal development studies in rats and rabbits, empagliflozin was administered for intervals coinciding with the first trimester period of organogenesis in humans.
Doses up to 300 mg/kg/day, which approximates 48-times (rats) and 128-times (rabbits) the maximum clinical dose of 25 mg (based on AUC), did not result in adverse developmental effects. In rats, at higher doses of empagliflozin causing maternal toxicity, malformations of limb bones increased in fetuses at 700 mg/kg/day or 154-times the 25 mg maximum clinical dose. Empagliflozin crosses the placenta and reaches fetal tissues in rats.
In the rabbit, higher doses of empagliflozin resulted in maternal and fetal toxicity at 700 mg/kg/day, or 139-times the 25 mg maximum clinical dose. In pre- and postnatal development studies in pregnant rats, empagliflozin was administered from gestation day 6 through to lactation day 20 (weaning) at up to 100 mg/kg/day (approximately 16-times the 25 mg maximum clinical dose)… [Excerpted — this section continues on DailyMed.]
🧒 Pediatric Use ▾
8.4Pediatric Use Safety and effectiveness of TRIJARDY XR have not been established in pediatric patients.
🧓 Geriatric Use ▾
8.5Geriatric Use Assess renal function more frequently in TRIJARDY XR-treated geriatric patients because there is a greater risk of empagliflozin-associated intravascular volume contraction and symptomatic hypotension in geriatric patients and there is a greater risk of metformin-associated lactic acidosis in geriatric patients [see Warnings and Precautions (5.1 , 5.4) ]. The recommended dosage for the metformin HCl component of TRIJARDY XR in geriatric patients should usually start at the lower end of the dosage range.
Of the 273 patients treated with the combination of empagliflozin, linagliptin, and metformin HCl to improve glycemic control in adults with type 2 diabetes mellitus, 58 were 65 years of age and older, while 8 were 75 years of age and older. Clinical trials of TRIJARDY XR did not include sufficient numbers of geriatric patients to determine whether they respond differently from younger adult patients. Empagliflozin In empagliflozin type 2 diabetes mellitus trials, 2,721 empagliflozin-treated patients were 65 years of age and older and 491 patients were 75 years of age and older.
In these trials, volume depletion-related adverse reactions occurred in 2.1%, 2.3%, and 4.4% of patients 75 years of age and older in the placebo, empagliflozin 10 mg, and empagliflozin 25 mg once daily groups, respectively; and urinary tract infections occurred in 10.5%, 15.7%, and 15.1% of patients 75 years of age and older in the placebo, empagliflozin 10 mg, and empagliflozin 25 mg once daily groups, respectively. Linagliptin In linagliptin trials, 1,085 linagliptin-treated patients were 65 years of age and older and 131 patients were 75 years of age and older.
In these linagliptin trials, no overall differences in safety or effectiveness of linagliptin were observed between geriatric patients and younger adult patients. Metformin HCl Clinical trials of metformin HCl did not include sufficient numbers of patients 65 years of age and older to determine whether they respond differently from younger adult patients.
🆘 Overdosage ▾
10 OVERDOSAGE In the event of an overdose with TRIJARDY XR, consider contacting the Poison Help line (1-800-222-1222) or a medical toxicologist for additional overdosage management recommendations. Overdose of metformin HCl has occurred, including ingestion of amounts greater than 50 grams. Lactic acidosis has been reported in approximately 32% of metformin overdose cases [see Warnings and Precautions (5.1) ].
Metformin is dialyzable with a clearance of up to 170 mL/min under good hemodynamic conditions. Therefore, hemodialysis may be useful for removal of accumulated drug from patients in whom metformin overdosage is suspected. Removal of empagliflozin by hemodialysis has not been studied, and removal of linagliptin by hemodialysis or peritoneal dialysis is unlikely.
🧬 Clinical Pharmacology ▾
12 CLINICAL PHARMACOLOGY
12.1Mechanism of Action TRIJARDY XR TRIJARDY XR contains: empagliflozin, a SGLT2 inhibitor, linagliptin, a DPP-4 inhibitor, and metformin HCl, a biguanide. Empagliflozin Empagliflozin is an inhibitor of SGLT2, the predominant transporter responsible for reabsorption of glucose from the glomerular filtrate back into the circulation. By inhibiting SGLT2, empagliflozin reduces renal reabsorption of filtered glucose and lowers the renal threshold for glucose, and thereby increases urinary glucose excretion.
Linagliptin Linagliptin is an inhibitor of DPP-4, an enzyme that degrades the incretin hormones glucagon-like peptide-1 (GLP-1) and glucose-dependent insulinotropic polypeptide (GIP). Thus, linagliptin increases the concentrations of active incretin hormones, stimulating the release of insulin in a glucose-dependent manner and decreasing the levels of glucagon in the circulation. Both incretin hormones are involved in the physiological regulation of glucose homeostasis.
Incretin hormones are secreted at a low basal level throughout the day and levels rise immediately after meal intake. GLP-1 and GIP increase insulin biosynthesis and secretion from pancreatic beta cells in the presence of normal and elevated blood glucose levels. Furthermore, GLP-1 also reduces glucagon secretion from pancreatic alpha cells, resulting in a reduction in hepatic glucose output.
Metformin HCl Metformin HCl is an antihyperglycemic agent which improves glucose tolerance in patients with type 2 diabetes mellitus, lowering both basal and postprandial plasma glucose. Metformin HCl decreases hepatic glucose production, decreases intestinal absorption of glucose, and improves insulin sensitivity by increasing peripheral glucose uptake and utilization. With metformin HCl therapy, insulin secretion remains unchanged while fasting insulin levels and day-long plasma insulin response may decrease.
12.2Pharmacodynamics Empagliflozin Urinary Glucose Excretion In patients with type 2 diabetes mellitus, urinary glucose excretion increased immediately following a dose of empagliflozin and was maintained at the end of a 4-week treatment period averaging at approximately 64 grams per day with 10 mg empagliflozin and 78 grams per day with 25 mg empagliflozin once daily. Data from single oral doses of empagliflozin in healthy subjects indicate that, on average, the elevation in urinary glucose excretion approaches baseline by about 3 days for the 10 mg and 25 mg doses.
Urinary Volume In a 5-day study, mean 24-hour urine volume increase from baseline was 341 mL on Day 1 and 135 mL on Day 5 of empagliflozin 25 mg once daily treatment. Cardiac Electrophysiology In a randomized, placebo-controlled, active-comparator, crossover study, 30 healthy subjects were administered a single oral dose of empagliflozin 25 mg, empagliflozin 200 mg (8 times the maximum recommended dose), moxifloxacin, and placebo. No increase in QTc was observed with either 25 mg or 200 mg empagliflozin.
Linagliptin Linagliptin binds to DPP-4 in a reversible manner and increases the concentrations of incretin hormones. Linagliptin glucose-dependently increases insulin secretion and lowers glucagon secretion, thus resulting in a better regulation of the glucose homeostasis. Linagliptin binds selectively to DPP-4 and selectively inhibits DPP-4, but not DPP-8 or DPP-9 activity in vitro at concentrations approximating therapeutic exposures.
Cardiac Electrophysiology In a randomized, placebo-controlled, active-comparator, 4-way crossover study, 36 healthy subjects were administered a single oral dose of linagliptin 5 mg, linagliptin 100 mg (20 times the recommended dose), moxifloxacin, and placebo. No increase in QTc was observed with either the recommended dose of 5 mg or the 100 mg dose. At the 100 mg dose, peak linagliptin plasma concentrations were approximately 38-fold higher than the peak concentrations following a 5-mg dose.
12.3Pharmacokinetics TRIJARDY XR Administration of… [Excerpted — this section continues on DailyMed.]
🧬 Mechanism of Action ▾
12.1Mechanism of Action TRIJARDY XR TRIJARDY XR contains: empagliflozin, a SGLT2 inhibitor, linagliptin, a DPP-4 inhibitor, and metformin HCl, a biguanide. Empagliflozin Empagliflozin is an inhibitor of SGLT2, the predominant transporter responsible for reabsorption of glucose from the glomerular filtrate back into the circulation. By inhibiting SGLT2, empagliflozin reduces renal reabsorption of filtered glucose and lowers the renal threshold for glucose, and thereby increases urinary glucose excretion.
Linagliptin Linagliptin is an inhibitor of DPP-4, an enzyme that degrades the incretin hormones glucagon-like peptide-1 (GLP-1) and glucose-dependent insulinotropic polypeptide (GIP). Thus, linagliptin increases the concentrations of active incretin hormones, stimulating the release of insulin in a glucose-dependent manner and decreasing the levels of glucagon in the circulation. Both incretin hormones are involved in the physiological regulation of glucose homeostasis.
Incretin hormones are secreted at a low basal level throughout the day and levels rise immediately after meal intake. GLP-1 and GIP increase insulin biosynthesis and secretion from pancreatic beta cells in the presence of normal and elevated blood glucose levels. Furthermore, GLP-1 also reduces glucagon secretion from pancreatic alpha cells, resulting in a reduction in hepatic glucose output.
Metformin HCl Metformin HCl is an antihyperglycemic agent which improves glucose tolerance in patients with type 2 diabetes mellitus, lowering both basal and postprandial plasma glucose. Metformin HCl decreases hepatic glucose production, decreases intestinal absorption of glucose, and improves insulin sensitivity by increasing peripheral glucose uptake and utilization. With metformin HCl therapy, insulin secretion remains unchanged while fasting insulin levels and day-long plasma insulin response may decrease.
📦 How Supplied / Storage and Handling ▾
16 HOW SUPPLIED/STORAGE AND HANDLING TRIJARDY XR tablets are available as follows: Tablet Strength Color/Shape Tablet Markings Package Size NDC Number 5 mg Empagliflozin 2.5 mg Linagliptin 1,000 mg Metformin HCl Extended-Release grey, oval-shaped, film-coated tablet Printed on one side in white ink with the Boehringer Ingelheim company symbol and "395" on the top line and "5/2.5" on the bottom line. Bottles of 60 Bottles of 180 0597-0395-82 0597-0395-23 10 mg Empagliflozin 5 mg Linagliptin 1,000 mg Metformin HCl Extended-Release tan, oval-shaped, film-coated tablet Printed on one side in white ink with the Boehringer Ingelheim company symbol and "380" on the top line and "10/5" on the bottom line.
Bottles of 30 Bottles of 90 0597-0380-13 0597-0380-68 12.5 mg Empagliflozin 2.5 mg Linagliptin 1,000 mg Metformin HCl Extended-Release red, oval-shaped, film-coated tablet Printed on one side in white ink with the Boehringer Ingelheim company symbol and "385" on the top line and "12.5/2.5" on the bottom line. Bottles of 60 Bottles of 180 0597-0385-77 0597-0385-86 25 mg Empagliflozin 5 mg Linagliptin 1,000 mg Metformin HCl Extended-Release brown, oval-shaped, film-coated tablet Printed on one side in white ink with the Boehringer Ingelheim company symbol and "390" on the top line and "25/5" on the bottom line.
Bottles of 30 Bottles of 90 0597-0390-71 0597-0390-13 Storage Store at 20°C to 25°C (68°F to 77°F); excursions permitted to 15°C to 30°C (59°F to 86°F) [see USP Controlled Room Temperature]. Protect from exposure to high humidity.
📦 Storage and Handling ▾
Storage Store at 20°C to 25°C (68°F to 77°F); excursions permitted to 15°C to 30°C (59°F to 86°F) [see USP Controlled Room Temperature]. Protect from exposure to high humidity.
📋 Description ▾
11 DESCRIPTION TRIJARDY XR tablets for oral use contain: empagliflozin, linagliptin, and metformin HCl. Empagliflozin Empagliflozin is an inhibitor of the SGLT2. The chemical name of empagliflozin is D-Glucitol,1,5-anhydro-1-C-[4-chloro-3-[[4-[[(3S)-tetrahydro-3-furanyl]oxy]phenyl]methyl]phenyl]-, (1S).
The molecular formula is C 23 H 27 ClO 7 and the molecular weight is 450.91. The structural formula is: Empagliflozin is a white to yellowish, non-hygroscopic powder. It is very slightly soluble in water, sparingly soluble in methanol, slightly soluble in ethanol and acetonitrile, soluble in 50% acetonitrile/water, and practically insoluble in toluene.
Chemical Structure Linagliptin Linagliptin is an inhibitor of the DPP-4 enzyme. The chemical name of linagliptin is 1H-Purine-2,6-dione, 8-[(3R)-3-amino-1-piperidinyl]-7-(2-butyn-1-yl)-3,7-dihydro-3-methyl-1-[(4-methyl-2-quinazolinyl)methyl]- The molecular formula is C 25 H 28 N 8 O 2 and the molecular weight is 472.54. The structural formula is: Linagliptin is a white to yellowish, not or only slightly hygroscopic solid substance.
It is very slightly soluble in water. Linagliptin is soluble in methanol, sparingly soluble in ethanol, very slightly soluble in isopropanol, and very slightly soluble in acetone. Chemical Structure Metformin HCl Metformin HCl ( N,N -dimethylimidodicarbonimidic diamide hydrochloride) is a biguanide.
Metformin HCl is a white to off-white crystalline compound with a molecular formula of C 4 H 11 N 5 ∙HCl and a molecular weight of 165.63. Metformin HCl is freely soluble in water and is practically insoluble in acetone, ether, and chloroform. The pKa of metformin is 12.4.
The pH of a 1% aqueous solution of metformin hydrochloride is 6.68. The structural formula is: Chemical Structure TRIJARDY XR Each film-coated tablet of TRIJARDY XR consists of an extended-release metformin HCl core tablet that is coated with the immediate-release drug substances: empagliflozin and linagliptin. TRIJARDY XR tablets for oral administration are available in four strengths containing: 5 mg empagliflozin, 2.5 mg linagliptin, and 1,000 mg metformin HCl (equivalent to 779.86 mg of metformin) 10 mg empagliflozin, 5 mg linagliptin, and 1,000 mg metformin HCl (equivalent to 779.86 mg of metformin) 12.5 mg empagliflozin, 2.5 mg linagliptin, and 1,000 mg metformin HCl (equivalent to 779.86 mg of metformin) 25 mg empagliflozin, 5 mg linagliptin, and 1,000 mg metformin HCl (equivalent to 779.86 mg of metformin) Each film-coated tablet of TRIJARDY XR contains the following inactive ingredients: Tablet Core: hypromellose, magnesium stearate, and polyethylene oxide.
Film Coatings and Printing Ink: ammonium hydroxide, arginine, carnauba wax, ferric oxide yellow and ferric oxide red (10 mg/5 mg/1,000 mg), ferrosoferric oxide and ferric oxide red (12.5 mg/2.5 mg/1,000 mg), ferrosoferric oxide and ferric oxide yellow (5 mg/2.5 mg/1,000 mg and 25 mg/5 mg/1,000 mg), hydroxypropyl cellulose, hypromellose, isopropyl alcohol, n-butyl alcohol, polyethylene glycol, propylene glycol, purified water, shellac glaze, talc, and titanium dioxide.
💬 Information for Patients ▾
17 PATIENT COUNSELING INFORMATION Advise the patient to read the FDA-approved patient labeling (Medication Guide). Lactic Acidosis Inform patients of the risks of lactic acidosis due to metformin, its symptoms, and conditions that predispose to its development. Advise patients to discontinue TRIJARDY XR immediately and to notify their healthcare provider promptly if unexplained hyperventilation, malaise, myalgia, unusual somnolence, or other nonspecific symptoms occur.
Counsel patients against excessive alcohol intake and inform patients about importance of regular testing of renal function while receiving TRIJARDY XR. Instruct patients to inform their healthcare provider that they are taking TRIJARDY XR prior to any surgical or radiological procedure, as temporary discontinuation may be required until renal function has been confirmed to be normal [see Warnings and Precautions (5.1) ] . Diabetic Ketoacidosis in Patients with Type 1 Diabetes Mellitus and Other Ketoacidosis Inform patients that TRIJARDY XR can cause potentially fatal ketoacidosis and that type 2 diabetes mellitus and pancreatic disorders (e.g., history of pancreatitis or pancreatic surgery) are risk factors.
Educate all patients on precipitating factors (such as insulin dose reduction or missed insulin doses, infection, reduced caloric intake, ketogenic diet, surgery, dehydration, and alcohol abuse) and symptoms of ketoacidosis (including nausea, vomiting, abdominal pain, tiredness, and labored breathing). Inform patients that blood glucose may be normal even in the presence of ketoacidosis. Advise patients that they may be asked to monitor ketones.
If symptoms of ketoacidosis occur, instruct patients to discontinue TRIJARDY XR and seek medical attention immediately [see Warnings and Precautions (5.2) ] . Pancreatitis Inform patients that acute pancreatitis has been reported during use of linagliptin. Inform patients that persistent severe abdominal pain, sometimes radiating to the back, which may or may not be accompanied by vomiting, is the hallmark symptom of acute pancreatitis.
Instruct patients to discontinue TRIJARDY XR promptly and contact their healthcare provider if persistent severe abdominal pain occurs [see Warnings and Precautions (5.3) ] . Volume Depletion Inform patients that symptomatic hypotension may occur with TRIJARDY XR and advise them to contact their healthcare provider if they experience such symptoms [see Warnings and Precautions (5.4) ] . Inform patients that dehydration may increase the risk for hypotension, and to maintain adequate fluid intake.
Genitourinary Infections, including Urosepsis, Pyelonephritis, Necrotizing Fasciitis of the Perineum (Fournier's Gangrene), and Genital Mycotic Infections Counsel patients that genitourinary infections may occur when taking empagliflozin, a component of TRIJARDY XR, and may become serious. Educate patients on the symptoms and advise them to seek medical advice if symptoms occur. Specifically, advise patients to promptly seek medical attention if they develop pain or tenderness, redness, or swelling of the genitals or the area from the genitals back to the rectum, along with a fever above 100.4°F or malaise [see Warnings and Precautions (5.5) ] .
Hypoglycemia with Concomitant Use with Insulin and Insulin Secretagogues Inform patients that the risk of hypoglycemia is increased when TRIJARDY XR is used in combination with an insulin secretagogue (e.g., sulfonylurea) or insulin [see Warnings and Precautions (5.6) ] . Lower Limb Amputation Counsel patients about the importance of routine preventative foot care. Instruct patients to monitor for new pain or tenderness, sores or ulcers, or infections involving the leg or foot and to seek medical advice immediately if such signs or symptoms develop [see Warnings and Precautions (5.7) ] .
Hypersensitivity Reactions Inform patients that serious allergic reactions, such as anaphylaxis, angioedema, and exfoliative skin conditions, have been reported durin… [Excerpted — this section continues on DailyMed.]
💬 Medication Guide ▾
MEDICATION GUIDE TRIJARDY ® XR (try-JAR-dee XR) (empagliflozin, linagliptin, and metformin hydrochloride extended-release tablets) for oral use This Medication Guide has been approved by the U.S. Food and Drug Administration. Revised: August 2026 What is the most important information I should know about TRIJARDY XR?
TRIJARDY XR can cause serious side effects, including: Lactic Acidosis. Metformin hydrochloride (HCl), one of the medicines in TRIJARDY XR, can cause a rare but serious condition called lactic acidosis (a build-up of lactic acid in the blood) that can cause death. Lactic acidosis is a medical emergency and must be treated in a hospital.
Stop taking TRIJARDY XR and call your healthcare provider right away or go to the nearest hospital emergency room if you get any of the following symptoms of lactic acidosis: feel very weak and tired have unusual (not normal) muscle pain have trouble breathing have unexplained stomach or intestinal problems with nausea and vomiting, or diarrhea have unusual sleepiness or sleep longer than usual feel cold, especially in your arms and legs feel dizzy or lightheaded have a slow or irregular heartbeat You have a higher chance of getting lactic acidosis with TRIJARDY XR if you: have moderate to severe kidney problems. have liver problems. drink a lot of alcohol (very often or short-term "binge" drinking). get dehydrated (lose a large amount of body fluids).
This can happen if you are sick with a fever, vomiting, or diarrhea. Dehydration can also happen when you sweat a lot with activity or exercise and do not drink enough fluids. have certain x-ray tests with injectable dyes or contrast agents. have surgery or other procedure for which you need to restrict the amount of food and liquid you eat and drink. have congestive heart failure. have a heart attack, severe infection, or stroke. are 65 years of age or older. have a genetically inherited disease affecting mitochondria (the energy-producing parts within cells) such as mitochondrial encephalomyopathy with lactic acidosis, and stroke-like episodes (MELAS) syndrome and maternally inherited diabetes and deafness (MIDD).
Tell your healthcare provider if you have any of the problems in the list above. Tell your healthcare provider that you are taking TRIJARDY XR before you have surgery or x-ray tests. Your healthcare provider may need to stop your TRIJARDY XR for a while if you have surgery or certain x-ray tests.
TRIJARDY XR can have other serious side effects. See " What are the possible side effects of TRIJARDY XR? " Diabetic ketoacidosis (increased ketones in your blood or urine) in people with type 1 and other ketoacidosis. TRIJARDY XR can cause ketoacidosis that can be life-threatening and may lead to death.
Ketoacidosis is a serious condition which needs to be treated in a hospital. People with type 1 diabetes have a high risk of getting ketoacidosis. People with type 2 diabetes or pancreas problems also have an increased risk of getting ketoacidosis.
Ketoacidosis can also happen in people who: are sick, cannot eat or drink as usual, skip meals, are on a diet high in fat and low in carbohydrates (ketogenic diet), take less than the usual amount of insulin or miss insulin doses, drink too much alcohol, have a loss of too much fluid from the body (volume depletion), or who have surgery. Ketoacidosis can happen even if your blood sugar is less than 250 mg/dL. Your healthcare provider may ask you to periodically check ketones in your urine or blood.
Stop taking TRIJARDY XR and call your healthcare provider or get medical help right away if you get any of the following. If possible, check for ketones in your urine or blood, even if your blood sugar is less than 250 mg/dL: nausea vomiting stomach-area (abdominal) pain tiredness trouble breathing ketones in your urine or blood Inflammation of the pancreas (pancreatitis) which may be severe and lead to death. Certain medical problems make you more likely to get pancreatitis.
Before you star… [Excerpted — this section continues on DailyMed.]
🧬 Pharmacokinetics ▾
12.3Pharmacokinetics TRIJARDY XR Administration of TRIJARDY XR with food resulted in no change in overall exposure of empagliflozin or linagliptin. For metformin HCl extended-release, high-fat meals increased systemic exposure (as measured by area-under-the-curve [AUC]) by approximately 70% relative to fasting, while C max is not affected. Meals prolonged T max by approximately 3 hours.
Empagliflozin The pharmacokinetics of empagliflozin has been characterized in healthy volunteers and patients with type 2 diabetes mellitus and no clinically relevant differences were noted between the two populations. The steady-state mean plasma AUC and C max were 1,870 nmol∙h/L and 259 nmol/L, respectively, with 10 mg empagliflozin once daily treatment, and 4,740 nmol∙h/L and 687 nmol/L, respectively, with 25 mg empagliflozin once daily treatment. Systemic exposure of empagliflozin increased in a dose-proportional manner in the therapeutic dose range.
Empagliflozin does not appear to have time-dependent pharmacokinetic characteristics. Following once-daily dosing, up to 22% accumulation, with respect to plasma AUC, was observed at steady-state. Absorption After oral administration, peak plasma concentrations of empagliflozin were reached at 1.5 hours post-dose.
Administration of 25 mg empagliflozin after intake of a high-fat and high-calorie meal resulted in slightly lower exposure; AUC decreased by approximately 16% and C max decreased by approximately 37%, compared to fasted condition. The observed effect of food on empagliflozin pharmacokinetics was not considered clinically relevant and empagliflozin may be administered with or without food. Distribution The apparent steady-state volume of distribution was estimated to be
73.8L based on a population pharmacokinetic analysis. Following administration of an oral [ 14 C]-empagliflozin solution to healthy subjects, the red blood cell partitioning was approximately 36.8% and plasma protein binding was 86.2%. Elimination The apparent terminal elimination half-life of empagliflozin was estimated to be 12.4 h and apparent oral clearance was
10.6L/h based on the population pharmacokinetic analysis. Metabolism No major metabolites of empagliflozin were detected in human plasma and the most abundant metabolites were three glucuronide conjugates (2-O-, 3-O-, and 6-O-glucuronide). Systemic exposure of each metabolite was less than 10% of total drug-related material.
In vitro studies suggested that the primary route of metabolism of empagliflozin in humans is glucuronidation by the uridine 5'-diphospho-glucuronosyltransferases UGT2B7, UGT1A3, UGT1A8, and UGT1A9. Excretion Following administration of an oral [ 14 C]-empagliflozin solution to healthy subjects, approximately 95.6% of the drug-related radioactivity was eliminated in feces (41.2%) or urine (54.4%). The majority of drug-related radioactivity recovered in feces was unchanged parent drug and approximately half of drug-related radioactivity excreted in urine was unchanged parent drug.
Linagliptin Absorption The absolute bioavailability of linagliptin is approximately 30%. A high-fat meal reduced C max by 15% and increased AUC by 4%; this effect is not clinically relevant. Linagliptin may be administered with or without food.
Distribution The mean apparent volume of distribution at steady-state following a single intravenous dose of linagliptin 5 mg to healthy subjects is approximately 1,110 L, indicating that linagliptin extensively distributes to the tissues. Plasma protein binding of linagliptin is concentration-dependent, decreasing from about 99% at 1 nmol/L to 75% to 89% at ≥30 nmol/L, reflecting saturation of binding to DPP-4 with increasing concentration of linagliptin. At high concentrations, where DPP-4 is fully saturated, 70% to 80% of linagliptin remains bound to plasma proteins and 20% to 30% is unbound in plasma.
Plasma binding is not altered in patients with renal or hepatic impairment. Elimination Linagliptin has a terminal h… [Excerpted — this section continues on DailyMed.]
🧬 Pharmacodynamics ▾
12.2Pharmacodynamics Empagliflozin Urinary Glucose Excretion In patients with type 2 diabetes mellitus, urinary glucose excretion increased immediately following a dose of empagliflozin and was maintained at the end of a 4-week treatment period averaging at approximately 64 grams per day with 10 mg empagliflozin and 78 grams per day with 25 mg empagliflozin once daily. Data from single oral doses of empagliflozin in healthy subjects indicate that, on average, the elevation in urinary glucose excretion approaches baseline by about 3 days for the 10 mg and 25 mg doses.
Urinary Volume In a 5-day study, mean 24-hour urine volume increase from baseline was 341 mL on Day 1 and 135 mL on Day 5 of empagliflozin 25 mg once daily treatment. Cardiac Electrophysiology In a randomized, placebo-controlled, active-comparator, crossover study, 30 healthy subjects were administered a single oral dose of empagliflozin 25 mg, empagliflozin 200 mg (8 times the maximum recommended dose), moxifloxacin, and placebo. No increase in QTc was observed with either 25 mg or 200 mg empagliflozin.
Linagliptin Linagliptin binds to DPP-4 in a reversible manner and increases the concentrations of incretin hormones. Linagliptin glucose-dependently increases insulin secretion and lowers glucagon secretion, thus resulting in a better regulation of the glucose homeostasis. Linagliptin binds selectively to DPP-4 and selectively inhibits DPP-4, but not DPP-8 or DPP-9 activity in vitro at concentrations approximating therapeutic exposures.
Cardiac Electrophysiology In a randomized, placebo-controlled, active-comparator, 4-way crossover study, 36 healthy subjects were administered a single oral dose of linagliptin 5 mg, linagliptin 100 mg (20 times the recommended dose), moxifloxacin, and placebo. No increase in QTc was observed with either the recommended dose of 5 mg or the 100 mg dose. At the 100 mg dose, peak linagliptin plasma concentrations were approximately 38-fold higher than the peak concentrations following a 5-mg dose.
🔬 Clinical Studies ▾
14 CLINICAL STUDIES
14.1Empagliflozin and Linagliptin Add-on Combination Therapy with Metformin for Glycemic Control A total of 686 patients with type 2 diabetes mellitus participated in a double-blind, active-controlled trial to evaluate the efficacy of empagliflozin 10 mg or 25 mg in combination with linagliptin 5 mg, compared to the individual components. Patients with type 2 diabetes mellitus inadequately controlled on at least 1,500 mg of metformin HCl per day entered a single-blind placebo run-in period for 2 weeks. At the end of the run-in period, patients who remained inadequately controlled and had an HbA1c between 7% and 10.5% were randomized 1:1:1:1:1 to one of 5 active-treatment arms of empagliflozin 10 mg or 25 mg, linagliptin 5 mg, or linagliptin 5 mg in combination with 10 mg or 25 mg empagliflozin as a fixed dose combination tablet.
At Week 24, empagliflozin 10 mg or 25 mg used in combination with linagliptin 5 mg provided statistically significant improvement in HbA1c (p-value <0.0001) and FPG (p-value <0.001) compared to the individual components in patients who had been inadequately controlled on metformin HCl (see Table 7 , Figure 3 ). Treatment with empagliflozin 10 mg or 25 mg used in combination with linagliptin 5 mg also resulted in a statistically significant reduction in body weight compared to linagliptin 5 mg (p-value <0.0001). There was no statistically significant difference compared to empagliflozin alone.
Table 7 Glycemic Parameters at 24 Weeks in a Trial Comparing Empagliflozin in Combination with Linagliptin to the Individual Components as Add-on Therapy in Patients Inadequately Controlled on Metformin HCl Empagliflozin 10 mg/ Linagliptin 5 mg Empagliflozin 25 mg/ Linagliptin 5 mg Empagliflozin 10 mg Empagliflozin 25 mg Linagliptin 5 mg a Full analysis population (observed case) using MMRM. MMRM model included treatment, renal function, region, visit, visit by treatment interaction, and baseline HbA1c. b Patients with HbA1c above 7% at baseline: empagliflozin 25 mg/linagliptin 5 mg, n=123; empagliflozin 10 mg/linagliptin 5 mg, n=128; empagliflozin 25 mg, n=132; empagliflozin 10 mg, n=125; linagliptin 5 mg, n=119.
Non-completers were considered failures (NCF). c Full analysis population using last observation carried forward. ANCOVA model included treatment, renal function, region, baseline weight, and baseline HbA1c. d p<0.001 for FPG; p<0.0001 for HbA1c and body weight HbA1c (%) Number of patients n=135 n=133 n=137 n=139 n=128 Baseline (mean) 8.0 7.9 8.0 8.0
8.0Change from baseline (adjusted mean) -1.1 -1.2 -0.7 -0.6 -0.7 Comparison vs empagliflozin 25 mg or 10 mg (adjusted mean) (95% CI) a -0.4 (-0.6, -0.2) d -0.6 (-0.7, -0.4) d -- -- -- Comparison vs linagliptin 5 mg (adjusted mean) (95% CI) a -0.4 (-0.6, -0.2) d -0.5 (-0.7, -0.3) d -- -- -- Patients [n (%)] achieving HbA1c <7% b 74 (58) 76 (62) 35 (28) 43 (33) 43 (36) FPG (mg/dL) Number of patients n=133 n=131 n=136 n=137 n=125 Baseline (mean) 157 155 162 160 156 Change from baseline (adjusted mean) -33 -36 -21 -21 -13 Comparison vs empagliflozin 25 mg or 10 mg (adjusted mean) (95% CI) a -12 (-18, -5) d -15 (-22, -9) d -- -- -- Comparison vs linagliptin 5 mg (adjusted mean) (95% CI) a -20 (-27, -13) d -23 (-29, -16) d -- -- -- Body Weight Number of patients n=135 n=134 n=137 n=140 n=128 Baseline (mean) in kg 87 85 86 88 85 % change from baseline (adjusted mean) -3.1 -3.4 -3.0 -3.5 -0.7 Comparison vs empagliflozin 25 mg or 10 mg (adjusted mean) (95% CI) c 0.0 (-0.9, 0.8) 0.1 (-0.8, 0.9) -- -- -- Comparison vs linagliptin 5 mg (adjusted mean) (95% CI) c -2.4 (-3.3, -1.5) d -2.7 (-3.6, -1.8) d -- -- -- Figure 3 Adjusted Mean HbA1c Change at Each Time Point (Completers) and at Week 24 (mITT population) Figure 3
14.2Empagliflozin Cardiovascular Outcomes in Patients with Type 2 Diabetes Mellitus and Atherosclerotic Cardiovascular Disease EMPA-REG OUTCOME was a multicenter, multinational, randomized, double-blind parallel group trial that comp… [Excerpted — this section continues on DailyMed.]
🧪 Nonclinical Toxicology ▾
13 NONCLINICAL TOXICOLOGY
13.1Carcinogenesis, Mutagenesis, Impairment of Fertility TRIJARDY XR No carcinogenicity, mutagenicity, or impairment of fertility studies have been conducted with the combination of empagliflozin, linagliptin, and metformin HCl. Empagliflozin Carcinogenesis was evaluated in 2-year studies conducted in CD-1 mice and Wistar rats. Empagliflozin did not increase the incidence of tumors in female rats dosed at 100, 300, or 700 mg/kg/day (up to 72 times the exposure from the maximum clinical dose of 25 mg).
In male rats, hemangiomas of the mesenteric lymph node were increased significantly at 700 mg/kg/day or approximately 42 times the exposure from a 25 mg clinical dose. Empagliflozin did not increase the incidence of tumors in female mice dosed at 100, 300, or 1,000 mg/kg/day (up to 62 times the exposure from a 25 mg clinical dose). Renal tubule adenomas and carcinomas were observed in male mice at 1,000 mg/kg/day, which is approximately 45 times the exposure of the maximum clinical dose of 25 mg.
These tumors may be associated with a metabolic pathway predominantly present in the male mouse kidney. Empagliflozin was not mutagenic or clastogenic with or without metabolic activation in the in vitro Ames bacterial mutagenicity assay, the in vitro L5178Y tk +/- mouse lymphoma cell assay, and an in vivo micronucleus assay in rats. Empagliflozin had no effects on mating, fertility or early embryonic development in treated male or female rats, up to the high dose of 700 mg/kg/day (approximately 155 times the 25 mg clinical dose in males and females, respectively).
Linagliptin Linagliptin did not increase the incidence of tumors in male and female rats in a 2-year study at doses of 6, 18, and 60 mg/kg. The highest dose of 60 mg/kg is approximately 418 times the clinical dose of 5 mg/day based on AUC exposure. Linagliptin did not increase the incidence of tumors in mice in a 2-year study at doses up to 80 mg/kg (males) and 25 mg/kg (females), or approximately 35 and 270 times the clinical dose based on AUC exposure.
Higher doses of linagliptin in female mice (80 mg/kg) increased the incidence of lymphoma at approximately 215 times the clinical dose based on AUC exposure. Linagliptin was not mutagenic or clastogenic with or without metabolic activation in the Ames bacterial mutagenicity assay, a chromosomal aberration test in human lymphocytes, and an in vivo micronucleus assay. In fertility studies in rats, linagliptin had no adverse effects on early embryonic development, mating, fertility, or bearing live young up to the highest dose of 240 mg/kg (approximately 943 times the clinical dose based on AUC exposure).
Metformin HCl Long-term carcinogenicity studies have been performed in Sprague Dawley rats at doses of 150, 300, and 450 mg/kg/day in males and 150, 450, 900, and 1,200 mg/kg/day in females. These doses are approximately 2, 4, and 8 times in males, and 3, 7, 12, and 16 times in females of the maximum recommended human daily dose of 2,000 mg/kg/day based on body surface area comparisons. No evidence of carcinogenicity with metformin was found in either male or female rats.
A carcinogenicity study was also performed in Tg.AC transgenic mice at doses of up to 2,000 mg/kg/day applied dermally. No evidence of carcinogenicity was observed in male or female mice. Genotoxicity assessments in the Ames test, gene mutation test (mouse lymphoma cells), chromosomal aberrations test (human lymphocytes) and in vivo mouse micronucleus tests were negative.
Fertility of male or female rats was not affected by metformin when administered at doses up to 600 mg/kg/day, which is approximately 3 times the maximum recommended human daily dose based on body surface area comparisons.
📄 Carcinogenesis, Mutagenesis, Impairment of Fertility ▾
13.1Carcinogenesis, Mutagenesis, Impairment of Fertility TRIJARDY XR No carcinogenicity, mutagenicity, or impairment of fertility studies have been conducted with the combination of empagliflozin, linagliptin, and metformin HCl. Empagliflozin Carcinogenesis was evaluated in 2-year studies conducted in CD-1 mice and Wistar rats. Empagliflozin did not increase the incidence of tumors in female rats dosed at 100, 300, or 700 mg/kg/day (up to 72 times the exposure from the maximum clinical dose of 25 mg).
In male rats, hemangiomas of the mesenteric lymph node were increased significantly at 700 mg/kg/day or approximately 42 times the exposure from a 25 mg clinical dose. Empagliflozin did not increase the incidence of tumors in female mice dosed at 100, 300, or 1,000 mg/kg/day (up to 62 times the exposure from a 25 mg clinical dose). Renal tubule adenomas and carcinomas were observed in male mice at 1,000 mg/kg/day, which is approximately 45 times the exposure of the maximum clinical dose of 25 mg.
These tumors may be associated with a metabolic pathway predominantly present in the male mouse kidney. Empagliflozin was not mutagenic or clastogenic with or without metabolic activation in the in vitro Ames bacterial mutagenicity assay, the in vitro L5178Y tk +/- mouse lymphoma cell assay, and an in vivo micronucleus assay in rats. Empagliflozin had no effects on mating, fertility or early embryonic development in treated male or female rats, up to the high dose of 700 mg/kg/day (approximately 155 times the 25 mg clinical dose in males and females, respectively).
Linagliptin Linagliptin did not increase the incidence of tumors in male and female rats in a 2-year study at doses of 6, 18, and 60 mg/kg. The highest dose of 60 mg/kg is approximately 418 times the clinical dose of 5 mg/day based on AUC exposure. Linagliptin did not increase the incidence of tumors in mice in a 2-year study at doses up to 80 mg/kg (males) and 25 mg/kg (females), or approximately 35 and 270 times the clinical dose based on AUC exposure.
Higher doses of linagliptin in female mice (80 mg/kg) increased the incidence of lymphoma at approximately 215 times the clinical dose based on AUC exposure. Linagliptin was not mutagenic or clastogenic with or without metabolic activation in the Ames bacterial mutagenicity assay, a chromosomal aberration test in human lymphocytes, and an in vivo micronucleus assay. In fertility studies in rats, linagliptin had no adverse effects on early embryonic development, mating, fertility, or bearing live young up to the highest dose of 240 mg/kg (approximately 943 times the clinical dose based on AUC exposure).
Metformin HCl Long-term carcinogenicity studies have been performed in Sprague Dawley rats at doses of 150, 300, and 450 mg/kg/day in males and 150, 450, 900, and 1,200 mg/kg/day in females. These doses are approximately 2, 4, and 8 times in males, and 3, 7, 12, and 16 times in females of the maximum recommended human daily dose of 2,000 mg/kg/day based on body surface area comparisons. No evidence of carcinogenicity with metformin was found in either male or female rats.
A carcinogenicity study was also performed in Tg.AC transgenic mice at doses of up to 2,000 mg/kg/day applied dermally. No evidence of carcinogenicity was observed in male or female mice. Genotoxicity assessments in the Ames test, gene mutation test (mouse lymphoma cells), chromosomal aberrations test (human lymphocytes) and in vivo mouse micronucleus tests were negative.
Fertility of male or female rats was not affected by metformin when administered at doses up to 600 mg/kg/day, which is approximately 3 times the maximum recommended human daily dose based on body surface area comparisons.
📄 Recent Major Changes ▾
Boxed Warning 8/2026 Warnings and Precautions: Lactic Acidosis ( 5.1 ) 8/2026 Genitourinary Infections, including Urosepsis, Pyelonephritis, Necrotizing Fasciitis of the Perineum (Fournier's Gangrene), and Genital Mycotic Infections ( 5.5 ) 10/2025
📄 Package Label / Principal Display Panel ▾
PRINCIPAL DISPLAY PANEL - 5 mg/2.5 mg/1,000 mg Tablet Bottle Label NDC 0597-0395-82 Trijardy ® XR (empagliflozin, linagliptin, and metformin hydrochloride extended-release tablets) 5 mg/2.5 mg/1,000 mg* DISPENSE WITH ACCOMPANYING MEDICATION GUIDE 60 tablets Rx only Boehringer Ingelheim PRINCIPAL DISPLAY PANEL - 5 mg/2.5 mg/1,000 mg Tablet Bottle Label
PRINCIPAL DISPLAY PANEL - 10 mg/5 mg/1,000 mg Tablet Bottle Label NDC 0597-0380-13 Trijardy ® XR (empagliflozin, linagliptin, and metformin hydrochloride extended-release tablets) 10 mg/5 mg/1,000 mg* DISPENSE WITH ACCOMPANYING MEDICATION GUIDE 30 tablets Rx only Boehringer Ingelheim PRINCIPAL DISPLAY PANEL - 10 mg/5 mg/1,000 mg Tablet Bottle Label
PRINCIPAL DISPLAY PANEL - 12.5 mg/2.5 mg/1,000 mg Tablet Bottle Label NDC 0597-0385-77 Trijardy ® XR (empagliflozin, linagliptin, and metformin hydrochloride extended-release tablets) 12.5 mg/2.5 mg/1,000 mg* DISPENSE WITH ACCOMPANYING MEDICATION GUIDE 60 tablets Rx only Boehringer Ingelheim PRINCIPAL DISPLAY PANEL - 12.5 mg/2.5 mg/1,000 mg Tablet Bottle Label
PRINCIPAL DISPLAY PANEL - 25 mg/5 mg/1,000 mg Tablet Bottle Label NDC 0597-0390-71 Trijardy ® XR (empagliflozin, linagliptin, and metformin hydrochloride extended-release tablets) 25 mg/5 mg/1,000 mg* DISPENSE WITH ACCOMPANYING MEDICATION GUIDE 30 tablets Rx only Boehringer Ingelheim PRINCIPAL DISPLAY PANEL - 25 mg/5 mg/1,000 mg Tablet Bottle Label