Home › NDC Lookup › Ingredients › Pitavastatin Magnesium › 25208-0202-09
ZYPITAMAG Pitavastatin Magnesium 4 mg Tablet, Film Coated, 90-count — NDC 25208-0202-09 package photo
Label image from the product's FDA listing (DailyMed) — may show a different pack size or an older label revision.

ZYPITAMAG Pitavastatin Magnesium 4 mg Tablet, Film Coated, 90-count — NDC 25208-202-09 (Billing 25208-0202-09)

by Medicure International Inc · 90 TABLET, FILM COATED in 1 BOTTLE

This is a package of 90 tablets of ZYPITAMAG Pitavastatin Magnesium 4 mg Tablet, Film Coated from Medicure International Inc, marketed since Mar 2018 and currently FDA-listed; retail pharmacies pay about $7.39 per tablet (NADAC). It is the main listing for this product, which comes in 7 package sizes.

NDC 25208-0202-09
🏷️ FDA NDC (as labeled) 25208-202-09 billing pads the product segment with a zero
This package
Contains90-count Cost per ea$7.39 NADAC Per package$664.97 / 90 tablets Pack sizes7 compare ↓
Also priced by: Part D plans $7.43/unit — full pricing hub ↓
Rx only Brand On market Non-controlled ⇄ Compare with another NDC
🗂️ FDA directory synced Oct 1, 2026 · this listing last changed Jul 24, 2026 · sources: openFDA · FDA label (DailyMed) · FDA Orange & Purple Book · First Databank · CMS NADAC, ASP, Medicare & Medicaid · RxNorm
📋 All sources & update times →

Identity & classification

Regulatory identifiers FDA, NLM and CMS codes for this package

FDA NDC (as labeled) 25208-202-09
Product NDC 25208-202
11-digit billing NDC 25208020209
NCPDP billing unit EA — each (per item)
UNII M5681Q5F9P
UPC 0325208202156, 0325208201159
Application # NDA208379
SPL Set ID c8c50e03-5cb8-43f4-bdef-8edd12f1945f
Established class (EPC) HMG-CoA Reductase Inhibitor
Mechanism of action Hydroxymethylglutaryl-CoA Reductase Inhibitors
DEA schedule Non-controlled
Marketing category NDA
Marketing status On market
FDA listing status Listed (active directory)
Marketing start 2018-03-09
Route ORAL
Dosage form TABLET, FILM COATED
Substance PITAVASTATIN

Drug-database identifiers Medi-Span GPI and First Databank GCN / HICL / AHFS classification

GPI-14 39400058300340
GPI class Zypitamag
GCN Seq No 077569
GCN 43616
HICL code 044422
Ingredient (HICL) Pitavastatin Magnesium
HIC1 code M
Therapeutic class — broad (HIC1) Blood
HIC2 code M4
Therapeutic class — intermediate (HIC2) Affect Blood Lipids/Sugar/Amino Acids
HIC3 code M4D
Therapeutic class — specific (HIC3) Antihyperlipidemic-Hmgcoa Reductase Inhib(Statins)
AHFS code 24:06.08.00
AHFS class Hmg-Coa Reductase Inhibitors
FDB label name ZYPITAMAG 4 MG TABLET
FDB brand name Zypitamag
Legend status F — Federal legend — prescription drug or device
Quick answers
  • GSN (GCN sequence number): 077569
  • GCN: 43616
  • GPI-14 (Medi-Span): 39400058300340
  • HICL (First Databank): 044422
  • AHFS class code: 24:06.08.00
  • RxCUI (RxNorm): 2001262
Why two NDCs? The FDA registers this code as 25208-202-09 — a 5-3-2 layout, and that's what's printed on the package and shown on DailyMed. For insurance claims, every NDC is standardized to a uniform 11-digit 5-4-2 format by adding a zero to the product segment → 25208-0202-09. Same drug, same package — only the format differs.
Where does this data come from?
Identifiers from the FDA openFDA NDC Directory and Structured Product Labeling; RxCUI from RxNorm (NLM); GPI from Medi-Span; GCN / HIC / AHFS / legend from First Databank.

RxNorm drug class

This medicine belongs to the HMG-CoA Reductase Inhibitor class.

Pharmacologic class HMG-CoA Reductase Inhibitor
Drug family (ATC) HMG CoA reductase inhibitors
How it works Hydroxymethylglutaryl-CoA Reductase Inhibitors
Where does this data come from?
Therapeutic classes from RxNorm RxClass (U.S. National Library of Medicine) — Established Pharmacologic Class (FDA), ATC drug family (WHO) and mechanism of action, matched by this product’s RxCUI.

Clinical

Label name ZYPITAMAG 4 MG TABLET Ingredient Pitavastatin Magnesium
📖 What it is MedlinePlus · NLM

Pitavastatin is used to decrease the amount of cholesterol (a fatty substance that builds up in blood vessels causing heart attacks or strokes or other medical conditions).  Pitavastatin is in a class of medications called HMG-CoA reductase inhibitors (statins). It works by slowing how much cholesterol your body makes. This lowers the amount of cholesterol that can build up on the walls of the arteries and block blood flow to the heart, brain, and other parts of the body.

Read the full MedlinePlus article ↗
📗 Our plain-language guide HelloPharmacist
  • It lowers LDL, the “bad” cholesterol, along with a healthy diet. It is used in adults with primary hyperlipidemia. Some products, such as Livalo, are also used for inherited high c...
  • Take one tablet by mouth once a day, with or without food, at about the same time each day. Your doctor may recheck your cholesterol after about 4 weeks. Follow the directions on y...
  • The most common are muscle aches, constipation, diarrhea, back pain, and pain in the arms or legs. Most are mild. Call your doctor if muscle pain or weakness is unexplained, especi...
  • Yes. Cyclosporine must not be taken with it, and gemfibrozil should be avoided. Erythromycin and rifampin require a lower dose limit. Niacin, other fibrates and colchicine can rais...
📖 Read our full Pitavastatin guide →
1
Nutrient depletion considerations

Pitavastatin may be associated with lower levels of 1 nutrient — worth a chat with your pharmacist, not a cause for alarm.

An association is not a deficiency. Educational only — don't start or stop anything without professional guidance.
Where does this data come from?
Plain-language summary from MedlinePlus (U.S. National Library of Medicine); supplement & herbal interactions and nutrient depletion data from the Natural Medicines database; our full guide is HelloPharmacist editorial content.

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 systemPer eaPer package
Retail pharmacies payNADAC · weekly $7.389 $664.97 / 90 tablets
Medicaid paysCMS SDUD · 12 mo No recent Medicaid claims on file for this NDC — rare and low-volume NDCs are suppressed in the public data.
Medicare drug plans payPart D · Q2 2026 $7.43 $668.53 / 90 tablets
NADAC price history (per ea) — tap or hover for the price & month
Dec 2025 Mar 2026 Jun 2026 Sep 2026 $7.416 $7.387
Flat over the last 10 months.
Where does this data come from?
NADAC (National Average Drug Acquisition Cost) is the CMS weekly pharmacy-acquisition-cost survey — what pharmacies pay. ASP (Average Sales Price) is the CMS Medicare Part B drug-payment file, published quarterly. Medicaid pays is computed by us from CMS State Drug Utilization Data (total reimbursed ÷ units, trailing 12 months) — gross of rebates and inclusive of dispensing fees, so it reflects what Medicaid paid, not an acquisition cost. Medicare drug plans pay is the median negotiated point-of-sale unit cost across plans listing this NDC in the CMS quarterly Prescription Drug Plan pricing files, before rebates. The VA pays is the federal contract price (FSS, and the statutory Big 4 ceiling where listed) from the VA National Acquisition Center pharmaceutical price file. All are free public government data; each measures a different payer, so the figures are not directly comparable.

Packaging — all sizes for this product

Package NDCDescription Per unit Per pack Marketing startMarketing endStatus
25208-0202-09 You're viewing this Main listing 90 TABLET, FILM COATED in 1 BOTTLE $7.39 / ea $664.97 2018-03-09 — Active
25208-0202-10 25208-202-10 1 BLISTER PACK in 1 CARTON / 7 TABLET, FILM COATED in 1 BLISTER PACK — — 2018-03-09 — Discontinued by firm
25208-0202-11 25208-202-11 1000 TABLET, FILM COATED in 1 BOTTLE — — 2018-03-09 — Discontinued by firm
25208-0202-12 25208-202-12 10 BLISTER PACK in 1 CARTON / 10 TABLET, FILM COATED in 1 BLISTER PACK — — 2018-03-09 — Discontinued by firm
25208-0202-13 25208-202-13 30 TABLET, FILM COATED in 1 BOTTLE — — 2018-03-09 — Discontinued by firm
25208-0202-14 25208-202-14 100 TABLET, FILM COATED in 1 BOTTLE — — 2018-03-09 — Discontinued by firm
25208-0202-15 25208-202-15 500 TABLET, FILM COATED in 1 BOTTLE $7.39 / ea $3,694.30 2018-03-09 — Active

This pack has the lowest per-ea cost of the 2 priced pack sizes ($7.39 NADAC).

Pack size FAQ

What quantity is in this package?
This is a 90-count package — 90 tablet, film coated in 1 bottle.
How does this package differ from NDC 25208-0202-10?
Both are ZYPITAMAG Pitavastatin Magnesium 4 mg Tablet, Film Coated — the drug itself is identical. This page's package is the 90-count one, while NDC 25208-0202-10 is the 7 tablets package.
What NDC number is used to bill for this package of ZYPITAMAG Pitavastatin Magnesium 4 mg Tablet, Film Coated?
Use the 11-digit billing form listed in the identifiers section of this page. Pharmacy and medical claims use the 11-digit form; the FDA label may print a shorter form of the same code.

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

ProductLabelerPackNADAC/unitTEStatusPrice vs. this
Zypitamag 4 mgthis 25208-0202-09 Medicure 90 tablets $7.389 — Availability likely —
Zypitamag 4 mg 70771-1118-00 Zydus 1000 tablets — — FDA listed —
About this product: this is the brand-name version. We did not find an FDA-approved generic match for this exact strength, form and route.
Where does this data come from?
Equivalents are other NDCs of the same ingredient, form and route from the openFDA NDC Directory, ranked least-expensive-first by NADAC. Therapeutic-equivalence (AB) ratings come from the FDA Orange Book; biologics use the FDA Purple Book for biosimilar & interchangeable status.

Availability & generic status

🏛️
2017
First FDA approval
Jul 2017
📍
2026
Currently FDA-listed
9 years listed
🛡️
2031
Latest patent/protection listed
not a guaranteed launch date
🔒No FDA-approved generic found

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.

🛡️ Latest patent/protection date listed: FDA patent/protection data lists protections through Jan 2031. This may affect when a full generic version becomes widely available, but it is not a guaranteed launch date.
📅 FDA approved Jul 14, 2017 RLD RS ⏳ ~4.3 yr to latest listed protection

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.

Patents & exclusivity — FDA Orange Book
US 8829186 — drug substance
US 8829186 — drug substance
US 8829186 — drug substance
2017 2019 2021 2023 2025 2027 2029 2031
Today
LOE
Substance patent Formulation patent Method-of-use patent Exclusivity Pediatric +6mo
🏛️FDA exclusivity
FDA-granted marketing protection. It’s separate from patents and may be shorter than patent protection.
🧪Product / substance patents
Patents covering the active ingredient, product, formulation, or related drug features.
🎯Method-of-use patents
Patents covering specific approved uses. These can sometimes be carved out with a “skinny label,” but not always.
🛈 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.

Listed patents (3)
PatentTypeUse codeExpires
US 8829186 ↗ Drug substance — Jan 19, 2031
US 8829186 ↗ Drug substance — Jan 19, 2031
US 8829186 ↗ Drug substance — Jan 19, 2031
Common questions
Is there a generic version of ZYPITAMAG 4 MG TABLET?
No FDA-approved generic equivalent is currently listed in the FDA Orange Book for ZYPITAMAG 4 MG TABLET. Based on the patents and exclusivity currently listed, the Orange Book estimate is that full-label generic entry may be delayed until Jan 2031 — an estimate, not a guaranteed launch date.
The FDA approved a generic — why can’t I get it at my pharmacy yet?
FDA approval and pharmacy availability are two different things. The FDA can approve a generic years before it actually reaches pharmacies, because the brand company may still hold patents or have a settlement that delays the launch. A manufacturer also has to choose to make and sell it, and have supply ready. So a drug can be “FDA-approved generic exists” and still be brand-only at the counter today.
Why do different websites show different generic release dates?
Generic availability is not based on one single date. Some sources use the first exclusivity expiration, some use the last product patent, and others use the latest method-of-use patent. Patent challenges, settlements, licenses, and label carve-outs can also change the real-world launch date. This page shows the underlying Orange Book dates so you can see why estimates may differ.
What does “FDA listed” mean?
It means the product appears in the FDA’s official NDC directory. That’s a good sign a product exists and is intended for the U.S. market, but on its own it does not confirm a pharmacy can fill it today. Where we have recent retail pricing data (NADAC) for a product, we label it “Availability likely” instead.
What does a patent or protection date mean here?
It’s the latest date currently listed in the FDA Orange Book for a patent or exclusivity on the brand product. It can affect when a full generic version becomes widely available — but it is not a guaranteed generic launch date. Generics sometimes arrive earlier (through a settlement or patent challenge) or later (a manufacturer still has to make and sell one).
What does “current Orange Book estimate” mean?
It means we are using the latest patent and exclusivity dates currently listed in the FDA Orange Book. It is not a guaranteed launch date.
Can a generic come out before the last patent expires?
Sometimes. A generic company may challenge a patent, settle with the brand manufacturer, receive a license, or obtain approval with a narrower label that avoids a patented use. In other cases, the last listed protection may delay full-label generic competition.
Can a generic come out after the listed dates?
Yes. Even after patents or exclusivity expire, a generic still needs FDA approval and a manufacturer must choose to market it. Supply, litigation, business decisions, or regulatory issues can delay actual availability.
What is the difference between patents and exclusivity?
Patents are legal protections usually issued by the U.S. Patent and Trademark Office. FDA exclusivity is marketing protection granted by the FDA. They are separate, and either one can affect generic timing.
Why are there multiple patent dates?
One drug can have several patents covering different things: the active ingredient, a formulation, a manufacturing process, or a specific approved use. That is why a page may show several expiration dates instead of one simple generic date.
Built from FDA Orange Book patent and exclusivity data. Dates are refreshed from public FDA data when available; the marker is max(latest patent expiry, latest exclusivity expiry). Paragraph-IV settlements and first-filer 180-day exclusivity can shift the real date; a method-of-use patent may allow an earlier skinny-label generic for non-protected indications. Generic launch timing is an estimate, not a guarantee.
Where does this data come from?
Patents and exclusivity from the FDA Orange Book (small-molecule drugs), refreshed from public FDA data. Generic launch timing is an estimate, not a guarantee.

What it looks like

Color white
ShapeRound
Imprint878
Size9 mm
ScoringNot scored
One label can cover several strengths, so colors may be combined — always confirm a loose pill against the dispensed prescription label or a pharmacist.
Where does this data come from?
Physical description (imprint, shape, color, scoring, coating) from this product’s FDA Structured Product Labeling (SPL), mirrored from DailyMed / openFDA.

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.

💡 Tap an ingredient (hover on desktop) to see what it is and why it’s used.

  • UNII H0G9379FGK
    Calcium carbonate is a white mineral powder used as a filler and buffering agent in medicines. It helps give tablets their bulk and size while neutralizing stomach acid in some formulations.
  • UNII 2S7830E561
    Crospovidone is a synthetic polymer derived from povidone. It acts as a disintegrant, helping the tablet or capsule break apart quickly in the stomach so the active ingredient can be absorbed.
  • UNII 3NXW29V3WO
    Hypromellose is a plant-based thickener made from cellulose. It's used in medicines as a binder to hold ingredients together, a coating for tablets, and a thickener for liquids.
  • UNII EWQ57Q8I5X
    Lactose monohydrate is a natural sugar derived from milk. It serves as a filler and binder in tablets and capsules, helping create the proper size, texture, and consistency of the medicine.
  • UNII 70097M6I30
    Magnesium stearate is a salt made from magnesium and stearic acid, a fatty substance. It's used in tablets and capsules as a lubricant and glidant to help ingredients flow smoothly during manufacturing and prevent sticking.
  • UNII 3WJQ0SDW1A
    Polyethylene glycol is a synthetic liquid or solid polymer used in medicines as a solvent, lubricant, and humectant. It helps dissolve active ingredients, reduces friction during manufacturing, and retains moisture in the final product.
  • UNII 45P3261C7T
    Sodium carbonate is an alkaline mineral salt commonly used in medications as a buffer to help maintain pH balance and improve stability. It may also function as a disintegrant to help tablets break apart in the digestive system.
  • UNII 7SEV7J4R1U
    A powder made from a naturally occurring mineral. In medicines, talc works as a glidant and anti-caking agent, helping tablets and capsules flow smoothly during manufacturing and preventing clumping.
  • UNII 15FIX9V2JP
    Titanium dioxide is a bright white mineral powder commonly used as a colorant and opacifying agent. It makes pills and tablets white or lighter in color and helps make coatings non-transparent.

9 inactive ingredients listed in the exact product block matched to this NDC.

Where does this data come from?
Data sourced from official FDA Structured Product Labeling (SPL) via DailyMed — ingredient classCode="IACT" elements from the exact product block matched by this NDC. Label-section narrative from DailyMed / the openFDA label index is shown separately when available.

Inactive ingredient FAQ

Are inactive ingredients the same for every manufacturer?
No. Inactive ingredients can differ by manufacturer, dosage form, strength, and package / product version.
Why might an inactive ingredient be missing?
Some SPLs do not provide a complete structured inactive-ingredient list, and older or unusual labels may only include the information in narrative text.
Can inactive ingredients matter?
Yes. They can matter for allergies, intolerances, dyes, gluten / lactose concerns, preservatives, and formulation differences — but confirm with a pharmacist or the manufacturer when it’s clinically important.

Manufacturer & labeler

LabelerMedicure International Inc
Application holderMEDICURE INTERNATIONAL INC
FDA applicationNDA208379 (NDA)
Labeler code25208
First marketedMar 2018
Product typeHuman Prescription Drug
Portfolio6 products on file
The labeler markets the product; the application holder owns the FDA approval. They’re often the same company but can differ (e.g. a repackager or an authorized generic). A mailing address / phone appears here when the manufacturer includes it in the product’s FDA label (not all do).
Where does this data come from?
Labeler, application holder and registered establishment from the FDA openFDA NDC Directory and Drugs@FDA; address/contact from the product’s FDA label.

Full prescribing information FDA SPL

The complete FDA label for this product — the official prescribing information, verbatim, section by section. Very long sections are excerpted here and marked; the full text is on DailyMed (linked in the sources below). Jump with a chip, search within the label, or expand everything.
🎯 Indications and Usage 80 words ▾

1 INDICATIONS AND USAGE ZYPITAMAG is indicated as an adjunct to diet to reduce low-density lipoprotein cholesterol (LDL-C) in adults with primary hyperlipidemia. Pediatric use information is approved for Kowa Co Ltd LIVALO (pitavastatin) tablets. However, due to Kowa Co Ltd marketing exclusivity rights, this drug product is not labeled with that information.

ZYPITAMAG is a HMG-CoA reductase inhibitor (statin) indicated as an adjunct to diet to reduce low-density lipoprotein cholesterol (LDL-C) in adults with primary hyperlipidemia ( 1 ).

⏱️ Dosage and Administration ~3 min read ▾

2 DOSAGE AND ADMINISTRATION Take orally once daily with or without food at the same time each day. ( 2.1 ). For patients requiring a high-intensity statin or are unable to achieve their LDL-C goal receiving ZYPITAMAG 4 mg daily, prescribe alternative LDL-C-lowering treatment.

( 2.1 ) Assess LDL-C when clinically appropriate, as early as 4 weeks after initiation of ZYPITAMAG, and adjust the dosage if necessary. ( 2.1 ) Recommended dosage is 2 mg to 4 mg once daily. Maximum recommended dosage is 4 mg once daily.

( 2.2 ) Recommended starting dosage for patients with moderate and severe renal impairment and end-stage renal disease on hemodialysis is 1 mg once daily. ZYPITAMAG is not available in a 1 mg dose; use an alternative formulation of pitavastatin. Maximum recommended dosage is 2 mg once daily.

( 2.3 ) See full prescribing information for ZYPITAMAG dosage modifications due to drug interactions. ( 2.4 )

2.1Important Dosage and Administration Information Take ZYPITAMAG orally once daily with or without food at the same time each day. For patients that require a high-intensity statin or are unable to achieve their LDL-C goal receiving ZYPITAMAG 4 mg daily, prescribe alternative LDL-C-lowering treatment. Assess LDL-C when clinically appropriate, as early as 4 weeks after initiating ZYPITAMAG, and adjust the dosage if necessary.

2.2Recommended Dosage for Adults The recommended dosage range of ZYPITAMAG is 2 mg to 4 mg daily. The maximum recommended dosage is ZYPITAMAG 4 mg once daily.

2.3Recommended Dosage in Patients with Renal Impairment The recommended starting dosage for patients with moderate and severe renal impairment (estimated glomerular filtration rate 30 – 59 mL/minute/1.73 m 2 and 15 – 29 mL/minute/1.73 m 2 , respectively) and patients with end-stage renal disease receiving hemodialysis is pitavastatin 1 mg once daily. ZYPITAMAG is not available in a 1 mg dose; use an alternative formulation of pitavastatin for the 1 mg dose. The maximum recommended dose for these patients is ZYPITAMAG 2 mg once daily [see Use in Specific Populations ( 8.6 )] .

There are no dosage adjustment recommendations for patients with mild renal impairment.

2.4Dosage Adjustments Due to Drug Interactions In patients taking erythromycin, do not exceed pitavastatin 1 mg once daily [see Drug Interactions ( 7 )] . ZYPITAMAG is not available in a 1 mg dose; use an alternative formulation of pitavastatin for the 1 mg dose. In patients taking rifampin, do not exceed ZYPITAMAG 2 mg once daily [see Drug Interactions ( 7 )] .

Pediatric use information is approved for Kowa Co Ltd’s LIVALO (pitavastatin) tablets. However, due to Kowa Co Ltd’s marketing exclusivity rights, this drug product is not labeled with that information.

2.1Important Dosage and Administration Information Take ZYPITAMAG orally once daily with or without food at the same time each day. For patients that require a high-intensity statin or are unable to achieve their LDL-C goal receiving ZYPITAMAG 4 mg daily, prescribe alternative LDL-C-lowering treatment. Assess LDL-C when clinically appropriate, as early as 4 weeks after initiating ZYPITAMAG, and adjust the dosage if necessary.

2.2Recommended Dosage for Adults The recommended dosage range of ZYPITAMAG is 2 mg to 4 mg daily. The maximum recommended dosage is ZYPITAMAG 4 mg once daily.

2.3Recommended Dosage in Patients with Renal Impairment The recommended starting dosage for patients with moderate and severe renal impairment (estimated glomerular filtration rate 30 – 59 mL/minute/1.73 m 2 and 15 – 29 mL/minute/1.73 m 2 , respectively) and patients with end-stage renal disease receiving hemodialysis is pitavastatin 1 mg once daily. ZYPITAMAG is not available in a 1 mg dose; use an alternative formulation of pitavastatin for the 1 mg dose. The maximum recommended dose for these patients is ZYPITAMAG 2 mg once daily [see Use in Specific Populations ( 8.6 )] .

There are no dosage adjustment recommendations for patients with mild r… [Excerpted — this section continues on DailyMed.]

💊 Dosage Forms and Strengths 96 words ▾

3 DOSAGE FORMS AND STRENGTHS Tablets: 2 mg and 4 mg ( 3 ) Tablets: 2 mg: White to off-white, beveled-edge, round-shaped tablets debossed with “877” on one side and plain on the other side. 4 mg: White to off-white, beveled-edge, round-shaped tablets debossed with “878” on one side and plain on the other side.

Tablets: 2 mg: White to off-white, beveled-edge, round-shaped tablets debossed with “877” on one side and plain on the other side. 4 mg: White to off-white, beveled-edge, round-shaped tablets debossed with “878” on one side and plain on the other side.

⛔ Contraindications 89 words ▾

4 CONTRAINDICATIONS ZYPITAMAG is contraindicated in the following conditions: Concomitant use of cyclosporine [see Drug Interactions ( 7 )] . Acute liver failure or decompensated cirrhosis [see Warnings and Precautions ( 5.3 )] Hypersensitivity to pitavastatin or any excipients in ZYPITAMAG. Hypersensitivity reactions including angioedema, rash, pruritus, and urticaria have been reported with pitavastatin [see Adverse Reactions ( 6 )] .

Cyclosporine ( 4 , 7 ) Active liver failure or decompensated cirrhosis ( 4 , 5.3 ) Hypersensitivity to pitavastatin or any excipients in ZYPITAMAG ( 4 )

⚠️ Warnings and Cautions ~3 min read ▾

5 WARNINGS AND PRECAUTIONS Myopathy and Rhabdomyolysis: Risk factors include age 65 or greater, uncontrolled hypothyroidism, renal impairment, concomitant use with certain other drugs, and higher ZYPITAMAG dosage. Discontinue ZYPITAMAG if markedly elevated CK levels occur or myopathy is diagnosed or suspected. Temporarily discontinue ZYPITAMAG in patients experiencing an acute or serious condition at high risk of developing renal failure secondary to rhabdomyolysis.

Inform patients of the risk of myopathy and rhabdomyolysis when starting or increasing the ZYPITAMAG dosage. Instruct patients to promptly report unexplained muscle pain, tenderness or weakness particularly if accompanied by malaise or fever ( 5.1 , 7 , 8.5 , 8.6 ). Immune-Mediated Necrotizing Myopathy (IMNM): Rare reports of IMNM, an autoimmune myopathy, have been reported.

Discontinue ZYPITAMAG if IMNM is suspected. ( 5.2 ). Hepatic Dysfunction: Increases in serum transaminases have occurred, some persistent.

Rare reports of fatal and non-fatal hepatic failure have occurred. Consider testing liver enzyme before initiating therapy and as clinically indicated thereafter. If serious hepatic injury with clinical symptoms and/or hyperbilirubinemia or jaundice occurs, promptly discontinue ZYPITAMAG.

( 5.3 )

5.1Myopathy and Rhabdomyolysis ZYPITAMAG may cause myopathy (muscle pain, tenderness, or weakness associated with elevated creatine kinase [CK]) and rhabdomyolysis. Acute kidney injury secondary to myoglobinuria and rare fatalities have occurred as a result of rhabdomyolysis in patients treated with statins, including pitavastatin. Risk Factors for Myopathy Risk factors for myopathy include age 65 years or greater, uncontrolled hypothyroidism, renal impairment, concomitant use of certain drugs (including other lipid-lowering therapies), and higher ZYPITAMAG dosage [see Dosage and Administration ( 2.2 ), Drug Interactions ( 7 ), and Use in Specific Populations ( 8.5 , 8.6 )] .

Dosages of pitavastatin greater than 4 mg once daily were associated with an increased risk for severe myopathy in premarketing clinical studies. The maximum recommended dose of ZYPITAMAG is 4 mg once daily. Steps to Prevent or Reduce the Risk of Myopathy and Rhabdomyolysis ZYPITAMAG is contraindicated in patients taking cyclosporine and not recommended in patients taking gemfibrozil [see Contraindications ( 4 ) and Drug Interactions ( 7 )] .

There are pitavastatin dosage restrictions for patients taking erythromycin or rifampin [see Dosage and Administration ( 2.4 )] . The following drugs when used concomitantly with ZYPITAMAG may also increase the risk of myopathy and rhabdomyolysis: lipid-modifying dosages of niacin (>1 grams/day), fibrates, and colchicine [see Drug Interactions ( 7 )] . Discontinue ZYPITAMAG if markedly elevated CK levels occur or if myopathy is either diagnosed or suspected.

Muscle symptoms and CK elevations may resolve if ZYPITAMAG is discontinued. Temporarily discontinue ZYPITAMAG in patients experiencing an acute or serious condition at high risk of developing renal failure secondary to rhabdomyolysis (e.g., sepsis; shock; severe hypovolemia; major surgery; trauma; severe metabolic, endocrine, or electrolyte disorders; or uncontrolled epilepsy). Inform patients of the risk of myopathy and rhabdomyolysis when starting or increasing the ZYPITAMAG dosage.

Instruct patients to promptly report any unexplained muscle pain, tenderness or weakness, particularly if accompanied by malaise or fever.

5.2Immune-Mediated Necrotizing Myopathy There have been rare reports of immune-mediated necrotizing myopathy (IMNM), an autoimmune myopathy, associated with statin use, including reports of recurrence when the same or a different statin was administered. IMNM is characterized by proximal muscle weakness and elevated serum creatine kinase that persist despite discontinuation of statin treatment; positive anti-HMG CoA reductase antibody; muscle biopsy showing necrotizing myopathy; and… [Excerpted — this section continues on DailyMed.]

🤒 Adverse Reactions ~3 min read ▾

6 ADVERSE REACTIONS The following serious adverse reactions are discussed in other sections of the labeling: Myopathy and Rhabdomyolysis [see Warnings and Precautions ( 5.1 )]. Immune-Mediated Necrotizing Myopathy [see Warnings and Precautions ( 5.2 )] Hepatic Dysfunction [see Warnings and Precautions ( 5.3 )] Increases in HbA1c and Fasting Serum Glucose Levels [see Warnings and Precautions ( 5.4 )] . The most frequent adverse reactions (rate ≥ 2%) were myalgia, constipation, diarrhea, back pain, and pain in extremity.

( 6 ) To report SUSPECTED ADVERSE REACTIONS, contact Medicure at 1-800-509-0544 or FDA at 1-800-FDA-1088 or www.fda.gov/medwatch.

6.1Clinical Studies Experience Because clinical studies are conducted under widely varying conditions, adverse reaction rates observed in the clinical studies of one drug cannot be directly compared to rates in the clinical studies of another drug and may not reflect the rates observed in practice. Adverse Reactions in Adults with Primary Hyperlipidemia In 10 controlled clinical studies and 4 subsequent open-label extension studies, 3,291 adult patients with primary hyperlipidemia were administered pitavastatin 1 mg to 4 mg daily.

The mean continuous exposure of pitavastatin (1 mg to 4 mg) was 36.7 weeks (median 51.1 weeks). The mean age of the patients was 60.9 years (range; 18 years – 89 years) and 52% females. Approximately 93% of the patients were White 7% were Asian/Indian, 0.2% were African American and 0.3% were Hispanic and other.

In controlled clinical studies and their open-label extensions, 3.9% (1 mg), 3.3% (2 mg), and 3.7% (4 mg) of pitavastatin-treated patients were discontinued due to adverse reactions. The most common adverse reactions that led to treatment discontinuation were: elevated creatine phosphokinase (0.6% on 4 mg) and myalgia (0.5% on 4 mg). Adverse reactions reported in ≥ 2% of patients in controlled clinical studies and at a rate greater than or equal to placebo are shown in Table 1.

These studies had treatment duration of up to 12 weeks. Table 1. Adverse Reactions (≥ 2% and ≥ placebo) in Adult Patients with Primary Hyperlipidemia and Mixed Dyslipidemia in Studies up to 12 Weeks Adverse Reactions Placebo N=208 % Pitavastatin 1 mg N=309 % Pitavastatin 2 mg N=951 % Pitavastatin 4 mg N=1540 % Myalgia 1.4 1.9 2.8

3.1Constipation 1.9 3.6 1.5

2.2Diarrhea 1.9 2.6 1.5

1.9Back pain 2.9 3.9 1.8

1.4Pain in extremity 1.9 2.3 0.6

0.9Other adverse reactions reported from clinical studies were arthralgia, headache, influenza, and nasopharyngitis. Hypersensitivity reactions including rash, pruritus, and urticaria have been reported with pitavastatin. The following laboratory abnormalities have been reported: elevated creatine phosphokinase, transaminases, alkaline phosphatase, bilirubin, and glucose.

Adverse Reactions in Adult HIV-Infected Patients with Dyslipidemia In a double-blind, randomized, controlled, 52-week trial, 252 HIV-infected patients with dyslipidemia were treated with either pitavastatin 4 mg once daily (n=126) or another statin (n=126). All patients were taking antiretroviral therapy (excluding darunavir) and had HIV-1 RNA less than 200 copies/mL and CD4 count greater than 200 cell/μL for at least 3 months prior to randomization. The safety profile of pitavastatin was generally consistent with that observed in the clinical trials described above.

One patient (0.8%) treated with pitavastatin had a peak creatine phosphokinase value exceeding 10 times the upper limit of normal (ULN), which resolved spontaneously. Four patients (3%) treated with pitavastatin had at least one ALT value exceeding 3 times but less than 5 times the ULN, none of which led to drug discontinuation. Virologic failure was reported for four patients (3%) treated with pitavastatin, defined as a confirmed measurement of HIV-1 RNA exceeding 200 copies/mL that was also more than a 2-fold increase from baseline.

Pediatric use information is approved for Kowa Co Ltd’s LIVALO (pitavasta… [Excerpted — this section continues on DailyMed.]

🔄 Drug Interactions ~2 min read ▾

7 DRUG INTERACTIONS See full prescribing information for details regarding concomitant use of ZYPITAMAG with other drugs that increase the risk of myopathy and rhabdomyolysis. ( 2.4 , 7 ). Table 2 includes a list of drugs that increase the risk of myopathy and rhabdomyolysis when administered concomitantly with ZYPITAMAG and instructions for preventing or managing drug interactions [see Warnings and Precautions ( 5.1 ), Clinical Pharmacology ( 12.3 )] .

Table 2. Drug Interactions that Increase the Risk of Myopathy and Rhabdomyolysis with ZYPITAMAG Cyclosporine Clinical Impact: Cyclosporine significantly increases pitavastatin exposure and increases the risk of myopathy and rhabdomyolysis . Intervention: Concomitant use of cyclosporine with ZYPITAMAG is contraindicated [see Contraindications ( 4 )].

Gemfibrozil Clinical Impact: Gemfibrozil may cause myopathy when given alone. The risk of myopathy and rhabdomyolysis is increased with concomitant use of gemfibrozil with statins, including pitavastatin. Intervention: Avoid concomitant use of gemfibrozil with ZYPITAMAG.

Erythromycin Clinical Impact: Erythromycin significantly increases pitavastatin exposure and increases the risk of myopathy and rhabdomyolysis . Intervention: In patients taking erythromycin, do not exceed ZYPITAMAG 1 mg once daily [see Dosage and Administration ( 2.4 )]. Rifampin Clinical Impact: Rifampin significantly increases peak pitavastatin exposure and increases the risk of myopathy and rhabdomyolysis .

Intervention: In patients taking rifampin, do not exceed ZYPITAMAG 2 mg once daily [see Dosage and Administration ( 2.4 )]. Fibrates Clinical Impact: Fibrates may cause myopathy when given alone. The risk of myopathy and rhabdomyolysis is increased with concomitant use of fibrates with statins, including pitavastatin.

Intervention: Consider if the benefit of using fibrates concomitantly with ZYPITAMAG outweighs the increased risk of myopathy and rhabdomyolysis. Niacin Clinical Impact: The risk of myopathy and rhabdomyolysis may be increased with concomitant use of lipid-modifying doses (1 g/day) of niacin with pitavastatin. Intervention: Consider if the benefit of using lipid-modifying doses (>1 g/day) of niacin concomitantly with ZYPITAMAG outweighs the increased risk of myopathy and rhabdomyolysis.

Colchicine Clinical Impact: Cases of myopathy and rhabdomyolysis have been reported with concomitant use of colchicine with statins, including pitavastatin. Intervention: Consider the risk/benefit of concomitant use of colchicine with ZYPITAMAG.

👥 Use in Specific Populations ~3 min read ▾

8 USE IN SPECIFIC POPULATIONS Pregnancy: May cause fetal harm ( 8.1 ) Lactation: Breastfeeding not recommended during treatment with ZYPITAMAG ( 8.2 ) Pediatric use information is approved for Kowa Co Ltd’s LIVALO (pitavastatin) tablets. However, due to Kowa Co Ltd’s marketing exclusivity rights, this drug product is not labeled with that information.

8.1Pregnancy Risk Summary Discontinue ZYPITAMAG when pregnancy is recognized. Alternatively, consider the ongoing therapeutic needs of the individual patient. ZYPITAMAG decreases synthesis of cholesterol and possibly other biologically active substances derived from cholesterol; therefore, ZYPITAMAG may cause fetal harm when administered to pregnant patients based on the mechanism of action [see Clinical Pharmacology ( 12.1 )] .

In addition, treatment of hyperlipidemia is not generally necessary during pregnancy. Atherosclerosis is a chronic process and the discontinuation of lipid-lowering drugs during pregnancy should have little impact on the outcome of long-term therapy of primary hyperlipidemia for most patients. Available data from case series and prospective and retrospective observational cohort studies over decades of use with statins in pregnant women have not identified a drug-associated risk of major congenital malformations.

Published data from prospective and retrospective observational cohort studies with statin use in pregnant women are insufficient to determine if there is a drug-associated risk of miscarriage (see Data) . In animal reproduction studies, no embryo-fetal toxicity or congenital malformations were observed in pregnant rats or rabbits orally administered pitavastatin during the period of organogenesis at doses that resulted in 22 and 4 times, respectively, the human exposure at the maximum recommended human dose (MRHD) of 4 mg, based on AUC (see Data) .

The estimated background risk of major birth defects and 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. Data Human Data A Medicaid cohort linkage study of 1152 statin-exposed pregnant women compared to 886,996 controls did not find a significant teratogenic effect from maternal use of statins in the first trimester of pregnancy, after adjusting for potential confounders – including maternal age, diabetes mellitus, hypertension, obesity, and alcohol and tobacco use -using propensity score-based methods.

The relative risk of congenital malformations between the group with statin use and the group with no statin use in the first trimester was 1.07 (95% confidence interval 0.85 to 1.37) after controlling for confounders, particularly pre-existing diabetes mellitus. There were also no statistically significant increases in any of the organ-specific malformations assessed after accounting for confounders. In the majority of pregnancies, statin treatment was initiated prior to pregnancy and was discontinued at some point in the first trimester when pregnancy was identified.

Study limitations include reliance on physician coding to define the presence of a malformation, lack of control for certain confounders such as body mass index, use of prescription dispensing as verification for use of a statin, and a lack of information on non-live births. Animal Data Embryo-fetal developmental studies were conducted in pregnant rats administered 3 mg/kg/day, 10 mg/kg/day, 30 mg/kg/day pitavastatin by oral gavage during organogenesis (gestation day 7-17). No adverse effects were observed at 3 mg/kg/day, systemic exposures 22 times human systemic exposure at 4 mg/day based on AUC.

Embryo-fetal developmental studies were conducted in pregnant rabbits administered 0.1 mg/kg/day, 0.3 mg/kg/day, 1 mg/kg/day pitavastatin by oral gavage during the period of fetal organogenesis (gestation day 6-18). Maternal toxicity consisting of reduced body… [Excerpted — this section continues on DailyMed.]

🤰 Pregnancy ~3 min read ▾

8.1Pregnancy Risk Summary Discontinue ZYPITAMAG when pregnancy is recognized. Alternatively, consider the ongoing therapeutic needs of the individual patient. ZYPITAMAG decreases synthesis of cholesterol and possibly other biologically active substances derived from cholesterol; therefore, ZYPITAMAG may cause fetal harm when administered to pregnant patients based on the mechanism of action [see Clinical Pharmacology ( 12.1 )] .

In addition, treatment of hyperlipidemia is not generally necessary during pregnancy. Atherosclerosis is a chronic process and the discontinuation of lipid-lowering drugs during pregnancy should have little impact on the outcome of long-term therapy of primary hyperlipidemia for most patients. Available data from case series and prospective and retrospective observational cohort studies over decades of use with statins in pregnant women have not identified a drug-associated risk of major congenital malformations.

Published data from prospective and retrospective observational cohort studies with statin use in pregnant women are insufficient to determine if there is a drug-associated risk of miscarriage (see Data) . In animal reproduction studies, no embryo-fetal toxicity or congenital malformations were observed in pregnant rats or rabbits orally administered pitavastatin during the period of organogenesis at doses that resulted in 22 and 4 times, respectively, the human exposure at the maximum recommended human dose (MRHD) of 4 mg, based on AUC (see Data) .

The estimated background risk of major birth defects and 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. Data Human Data A Medicaid cohort linkage study of 1152 statin-exposed pregnant women compared to 886,996 controls did not find a significant teratogenic effect from maternal use of statins in the first trimester of pregnancy, after adjusting for potential confounders – including maternal age, diabetes mellitus, hypertension, obesity, and alcohol and tobacco use -using propensity score-based methods.

The relative risk of congenital malformations between the group with statin use and the group with no statin use in the first trimester was 1.07 (95% confidence interval 0.85 to 1.37) after controlling for confounders, particularly pre-existing diabetes mellitus. There were also no statistically significant increases in any of the organ-specific malformations assessed after accounting for confounders. In the majority of pregnancies, statin treatment was initiated prior to pregnancy and was discontinued at some point in the first trimester when pregnancy was identified.

Study limitations include reliance on physician coding to define the presence of a malformation, lack of control for certain confounders such as body mass index, use of prescription dispensing as verification for use of a statin, and a lack of information on non-live births. Animal Data Embryo-fetal developmental studies were conducted in pregnant rats administered 3 mg/kg/day, 10 mg/kg/day, 30 mg/kg/day pitavastatin by oral gavage during organogenesis (gestation day 7-17). No adverse effects were observed at 3 mg/kg/day, systemic exposures 22 times human systemic exposure at 4 mg/day based on AUC.

Embryo-fetal developmental studies were conducted in pregnant rabbits administered 0.1 mg/kg/day, 0.3 mg/kg/day, 1 mg/kg/day pitavastatin by oral gavage during the period of fetal organogenesis (gestation day 6-18). Maternal toxicity consisting of reduced body weight and abortion was observed at all doses tested (4 times human systemic exposure at 4 mg/day based on AUC). In perinatal/postnatal studies in pregnant rats given oral gavage doses of pitavastatin at 0.1 mg/kg/day, 0.3 mg/kg/day, 1 mg/kg/day, 3 mg/kg/day, 10 mg/kg/day, 30 mg/kg/day from organogenesis through weaning (gestation day 17 to lactation d… [Excerpted — this section continues on DailyMed.]

🧒 Pediatric Use 46 words ▾

8.4Pediatric Use The safety and effectiveness of ZYPITAMAG in pediatric patients have not been established. Pediatric use information is approved for Kowa Co Ltd LIVALO (pitavastatin) tablets. However, due to Kowa Co Ltd marketing exclusivity rights, this drug product is not labeled with that information.

🧓 Geriatric Use 97 words ▾

8.5Geriatric Use In controlled clinical studies, 1,209 (43%) patients were 65 years and older. No overall differences in safety or effectiveness were observed between these patients and younger patients. Advanced age (≥ 65 years) is a risk factor for pitavastatin-associated myopathy and rhabdomyolysis.

Dose selection for a geriatric patient should be cautious, recognizing the greater frequency of decreased hepatic, renal, or cardiac function, and of concomitant disease or other drug therapy and the higher risk of myopathy. Monitor geriatric patients receiving ZYPITAG for the increased risk of myopathy [see Warnings and Precautions ( 5.1 )] .

🆘 Overdosage 32 words ▾

10 OVERDOSAGE No specific treatment for pitavastatin overdose is known. Contact Poison Control (1-800-222-1222) for latest recommendations. Hemodialysis is unlikely to be of benefit due to high protein binding ratio of pitavastatin.

🧬 Clinical Pharmacology ~3 min read ▾

12 CLINICAL PHARMACOLOGY

12.1Mechanism of Action Pitavastatin is an inhibitor of 3-hydroxy-3-methylglutaryl-coenzyme A (HMG-CoA) reductase, the enzyme that catalyzes the conversion of HMG-CoA to mevalonate, a rate-limiting step in the biosynthetic pathway for cholesterol. As a result, the expression of LDL-receptors followed by the uptake of LDL from blood to liver is accelerated and then the plasma TC decreases. Sustained inhibition of cholesterol synthesis in the liver also decreases levels of very low density lipoproteins.

12.2Pharmacodynamics Cardiac Electrophysiology In a randomized, double-blind, placebo-controlled, 4-way parallel, active-comparator study with moxifloxacin in 174 healthy participants, pitavastatin was not associated with clinically meaningful prolongation of the QTc interval or heart rate at daily doses up to 16 mg (4 times the recommended maximum dose of 4 mg daily).

12.3Pharmacokinetics Absorption Pitavastatin peak plasma concentrations are achieved about 1 hour after oral administration. Both C max and AUC 0-inf increased in an approximately dose-proportional manner for single pitavastatin doses from 1 mg to 24 mg once daily. The absolute bioavailability of pitavastatin oral solution is 51%.

The C max and AUC of pitavastatin did not differ following evening or morning drug administration. In healthy volunteers receiving 4 mg pitavastatin, the percent change from baseline for LDL-C following evening dosing was slightly greater than that following morning dosing. Pitavastatin was absorbed in the small intestine but very little in the colon.

Effect of Food Administration of pitavastatin with a high fat meal (50% fat content) decreases pitavastatin C max by 43% but does not significantly reduce pitavastatin AUC. Distribution Pitavastatin is more than 99% protein bound in human plasma, mainly to albumin and alpha 1-acid glycoprotein, and the mean volume of distribution is approximately 148 L. Elimination Metabolism The principal route of pitavastatin metabolism is glucuronidation via liver uridine 5'-diphosphate glucuronosyltransferase (UGT) with subsequent formation of pitavastatin lactone.

There is only minimal metabolism by the cytochrome P450 system. Pitavastatin is marginally metabolized by CYP2C9 and to a lesser extent by CYP2C8. The major metabolite in human plasma is the lactone which is formed via an ester-type pitavastatin glucuronide conjugate by UGTs (UGT1A3 and UGT2B7).

Excretion A mean of 15% of radioactivity of orally administered, single 32 mg 14 C-labeled pitavastatin dose was excreted in urine, whereas a mean of 79% of the dose was excreted in feces within 7 days. The mean plasma elimination half-life is approximately 12 hours. Specific Populations Geriatric Patients In a pharmacokinetic study which compared healthy young and geriatric (≥65 years) volunteers, pitavastatin Cmax and AUC were 10 and 30% higher, respectively, in the geriatric patients [see Use in Specific Populations ( 8.5 )] .

Pediatric Patients Pediatric use information is approved for Kowa Co Ltd LIVALO (pitavastatin) tablets. However, due to Kowa Co Ltd marketing exclusivity rights, this drug product is not labeled with that information. Male and Female Patients In a pharmacokinetic study, which compared healthy male and female volunteers, pitavastatin C max and AUC were 60 and 54% higher, respectively in females.

Racial or Ethnic Groups In pharmacokinetic studies pitavastatin C max and AUC were 21 and 5% lower, respectively in Black or African American healthy volunteers compared with those of White healthy volunteers. In pharmacokinetic comparison between Whitevolunteers and Japanese volunteers, there were no significant differences in C max and AUC. Patients with Renal Impairment In adult patients with moderate renal impairment (estimated glomerular filtration rate of 30 mL/min/1.73 m 2 to 59 mL/min/1.73 m 2 ) and end stage renal disease receiving hemodialysis, pitavastatin AUC 0-inf is 102% and 86% higher than thos… [Excerpted — this section continues on DailyMed.]

🧬 Mechanism of Action 73 words ▾

12.1Mechanism of Action Pitavastatin is an inhibitor of 3-hydroxy-3-methylglutaryl-coenzyme A (HMG-CoA) reductase, the enzyme that catalyzes the conversion of HMG-CoA to mevalonate, a rate-limiting step in the biosynthetic pathway for cholesterol. As a result, the expression of LDL-receptors followed by the uptake of LDL from blood to liver is accelerated and then the plasma TC decreases. Sustained inhibition of cholesterol synthesis in the liver also decreases levels of very low density lipoproteins.

📦 How Supplied / Storage and Handling 116 words ▾

16 HOW SUPPLIED/STORAGE AND HANDLING ZYPITAMAG (pitavastatin) Tablets, 2 mg are white to off-white, beveled-edge, round-shaped tablets debossed with “877” on one side and plain on the other side and are supplied as follows: NDC 25208-201-09 in bottle of 90 tablets with child-resistant closure NDC 25208-201-15 in bottle of 500 tablets ZYPITAMAG (pitavastatin) Tablets, 4 mg are white to off-white, beveled-edge, round-shaped tablets debossed with “878” on one side and plain on the other side and are supplied as follows: NDC 25208-202-09 in bottle of 90 tablets with child-resistant closure NDC 25208-202-15 in bottle of 500 tablets Storage Store at 20°C to 25°C (68°F to 77°F) [See USP Controlled Room Temperature].

Protect from moisture and light.

📋 Description 142 words ▾

11 DESCRIPTION ZYPITAMAG (pitavastatin) tablets for oral use is an HMG-CoA reductase inhibitor. The chemical name for pitavastatin is (3R,5S)-7-[2-Cyclopropyl-4-(4-fluorophenyl) quinoline-3-yl]3,5-dihydroxy-6(E)-heptanoic acid hemi magnesium. The structural formula is: The molecular formula for pitavastatin is C 50 H 46 MgF 2 N 2 O 8 and the molecular weight is 865.21.

Pitavastatin is a white to off-white powder. It is freely soluble in acetone, ethyl acetate; soluble in dimethylsulfoxide and insoluble in dichloromethane and isopropyl alcohol. Pitavastatin is hygroscopic and slightly unstable in light.

Each film-coated tablet of ZYPITAMAG contains 2.053 mg or 4.106 mg of pitavastatin magnesium, which is equivalent to 2 mg or 4 mg, respectively of free base and the following inactive ingredients: calcium carbonate, crospovidone, hypromellose, lactose monohydrate, magnesium stearate and sodium carbonate anhydrous and film-coating containing the following inactive ingredients: hypromellose, polyethylene glycol, talc and titanium dioxide. Image

💬 Information for Patients ~1 min read ▾

17 PATIENT COUNSELING INFORMATION Myopathy and Rhabdomyolysis Advise patients that ZYPITAMAG may cause myopathy and rhabdomyolysis. Inform patients that the risk is increased when taking certain types of medication and they should discuss all medication, both prescription and over the counter, with their healthcare provider. Instruct patients to promptly report any unexplained muscle pain, tenderness or weakness particularly if accompanied by malaise or fever [see Warnings and Precautions ( 5.1 )] .

Hepatic Dysfunction Inform patients that ZYPITAMAG may cause liver enzyme elevations and possibly liver failure. Advise patients to promptly report fatigue, anorexia, right upper abdominal discomfort, dark urine or jaundice [see Warnings and Precautions ( 5.3 )] . Increases in HbA1c and Fasting Serum Glucose Levels Inform patients that increases in HbA1c and fasting serum glucose levels may occur with ZYPITAMAG.

Encourage patients to optimize lifestyle measures, including regular exercise, maintaining a healthy body weight, and making healthy food choices [see Warnings and Precautions ( 5.4 )] . Pregnancy Advise pregnant patients and patients who can become pregnant of the potential risk to a fetus. Advise patients to inform their healthcare provider of a known or suspected pregnancy to discuss if ZYPITAMAG should be discontinued [see Use in Specific Populations ( 8.1 )].

Lactation Advise patients that breastfeeding is not recommended during treatment with ZYPITAMAG [see Use in Specific Populations ( 8.2 )] . Please address medical inquiries to ([email protected]) Tel.: 1-800-509-0544. This product’s label may have been updated.

For current full prescribing information, please visit www.medicure.com

🧬 Pharmacokinetics ~3 min read ▾

12.3Pharmacokinetics Absorption Pitavastatin peak plasma concentrations are achieved about 1 hour after oral administration. Both C max and AUC 0-inf increased in an approximately dose-proportional manner for single pitavastatin doses from 1 mg to 24 mg once daily. The absolute bioavailability of pitavastatin oral solution is 51%.

The C max and AUC of pitavastatin did not differ following evening or morning drug administration. In healthy volunteers receiving 4 mg pitavastatin, the percent change from baseline for LDL-C following evening dosing was slightly greater than that following morning dosing. Pitavastatin was absorbed in the small intestine but very little in the colon.

Effect of Food Administration of pitavastatin with a high fat meal (50% fat content) decreases pitavastatin C max by 43% but does not significantly reduce pitavastatin AUC. Distribution Pitavastatin is more than 99% protein bound in human plasma, mainly to albumin and alpha 1-acid glycoprotein, and the mean volume of distribution is approximately 148 L. Elimination Metabolism The principal route of pitavastatin metabolism is glucuronidation via liver uridine 5'-diphosphate glucuronosyltransferase (UGT) with subsequent formation of pitavastatin lactone.

There is only minimal metabolism by the cytochrome P450 system. Pitavastatin is marginally metabolized by CYP2C9 and to a lesser extent by CYP2C8. The major metabolite in human plasma is the lactone which is formed via an ester-type pitavastatin glucuronide conjugate by UGTs (UGT1A3 and UGT2B7).

Excretion A mean of 15% of radioactivity of orally administered, single 32 mg 14 C-labeled pitavastatin dose was excreted in urine, whereas a mean of 79% of the dose was excreted in feces within 7 days. The mean plasma elimination half-life is approximately 12 hours. Specific Populations Geriatric Patients In a pharmacokinetic study which compared healthy young and geriatric (≥65 years) volunteers, pitavastatin Cmax and AUC were 10 and 30% higher, respectively, in the geriatric patients [see Use in Specific Populations ( 8.5 )] .

Pediatric Patients Pediatric use information is approved for Kowa Co Ltd LIVALO (pitavastatin) tablets. However, due to Kowa Co Ltd marketing exclusivity rights, this drug product is not labeled with that information. Male and Female Patients In a pharmacokinetic study, which compared healthy male and female volunteers, pitavastatin C max and AUC were 60 and 54% higher, respectively in females.

Racial or Ethnic Groups In pharmacokinetic studies pitavastatin C max and AUC were 21 and 5% lower, respectively in Black or African American healthy volunteers compared with those of White healthy volunteers. In pharmacokinetic comparison between Whitevolunteers and Japanese volunteers, there were no significant differences in C max and AUC. Patients with Renal Impairment In adult patients with moderate renal impairment (estimated glomerular filtration rate of 30 mL/min/1.73 m 2 to 59 mL/min/1.73 m 2 ) and end stage renal disease receiving hemodialysis, pitavastatin AUC 0-inf is 102% and 86% higher than those of healthy volunteers, respectively, while pitavastatin C max is 60% and 40% higher than those of healthy volunteers, respectively.

Patients received hemodialysis immediately before pitavastatin dosing and did not undergo hemodialysis during the pharmacokinetic study. Hemodialysis patients have 33% and 36% increases in the mean unbound fraction of pitavastatin as compared to healthy volunteers and patients with moderate renal impairment, respectively [see Use in Specific Populations ( 8.6 )] . In another pharmacokinetic study, adult patients with severe renal impairment (estimated glomerular filtration rate 15 mL/min/1.73 m 2 to 29 mL/min/1.73 m 2 ) not receiving hemodialysis were administered a single dose of pitavastatin 4 mg.

The AUC 0-inf and the C max were 36% and 18% higher, respectively, compared with those of healthy volunteers. For both patients with severe renal impairment and heal… [Excerpted — this section continues on DailyMed.]

🧬 Pharmacodynamics 51 words ▾

12.2Pharmacodynamics Cardiac Electrophysiology In a randomized, double-blind, placebo-controlled, 4-way parallel, active-comparator study with moxifloxacin in 174 healthy participants, pitavastatin was not associated with clinically meaningful prolongation of the QTc interval or heart rate at daily doses up to 16 mg (4 times the recommended maximum dose of 4 mg daily).

🔬 Clinical Studies ~3 min read ▾

14 CLINICAL STUDIES Primary Hyperlipidemia in Adults Study with Atorvastatin (Study 301) Pitavastatin was compared with atorvastatin calcium tablets (referred to as atorvastatin) in a randomized, multicenter, double-blind, double-dummy, active-controlled, non-inferiority study of 817 adult patients with primary hyperlipidemia or mixed dyslipidemia. Patients entered a 6- to 8-week wash-out/dietary lead-in period and then were randomized to a 12-week treatment with either pitavastatin or atorvastatin (Table 5). Non-inferiority of pitavastatin to a given dose of atorvastatin was considered to be demonstrated if the lower bound of the 95% CI for the mean treatment difference was greater than -6% for the mean percent change in LDL-C.

Lipid results are shown in Table 5. For the percent change from baseline to endpoint in LDL-C, pitavastatin was non-inferior to atorvastatin for the two pairwise comparisons: pitavastatin 2 mg vs. atorvastatin 10 mg and pitavastatin 4 mg vs. atorvastatin 20 mg. Mean treatment differences (95% CI) were 0% (-3%, 3%) and 1% (-2%, 4%), respectively.

Table 5 Lipid Response by Dose of Pitavastatin and Atorvastatin in Adult Patients with Primary Hyperlipidemia or Mixed Dyslipidemia in Study 301 (Mean % Change from Baseline at Week 12) Treatment N LDL-C Apo-B TC TG HDL-C non-HDL-C Pitavastatin 2 mg daily 315 -38 -30 -28 -14 4 -35 Pitavastatin 4 mg daily 298 -45 -35 -32 -19 5 -41 Atorvastatin 10 mg daily 102 -38 -29 -28 -18 3 -35 Atorvastatin 20 mg daily 102 -44 -36 -33 -22 2 -41 Study with Simvastatin (Study 302) Pitavastatin was compared with simvastatin tablets (referred to as simvastatin) in a randomized, multicenter, double-blind, double-dummy, active-controlled, non-inferiority study of 843 adult patients with primary hyperlipidemia or mixed dyslipidemia.

Patients entered a 6- to 8-week wash-out/dietary lead-in period and then were randomized to a 12-week treatment with either pitavastatin or simvastatin (Table 6). Non-inferiority of pitavastatin to a given dose of simvastatin was considered to be demonstrated if the lower bound of the 95% CI for the mean treatment difference was greater than -6% for the mean percent change in LDL-C. Lipid results are shown in Table 6.

For the percent change from baseline to endpoint in LDL-C, pitavastatin was non-inferior to simvastatin for the two pairwise comparisons: pitavastatin 2 mg vs. simvastatin 20 mg and pitavastatin 4 mg vs. simvastatin 40 mg. Mean treatment differences (95% CI) were 4% (1%, 7%) and 1% (-2%, 4%), respectively. Table 6 Lipid Response by Dose of Pitavastatin and Simvastatin in Adult Patients with Primary Hyperlipidemia or Mixed Dyslipidemia in Study 302 (Mean % Change from Baseline at Week 12) Treatment N LDL-C Apo-B TC TG HDL-C non-HDL-C Pitavastatin 2 mg daily 307 -39 -30 -28 -16 6 -36 Pitavastatin 4 mg daily 319 -44 -35 -32 -17 6 -41 Simvastatin 20 mg daily 107 -35 -27 -25 -16 6 -32 Simvastatin 40 mg daily 110 -43 -34 -31 -16 7 -39 Study with Pravastatin in Geriatric Patients (Study 306) Pitavastatin was compared with pravastatin sodium tablets (referred to as pravastatin) in a randomized, multicenter, double-blind, double-dummy, parallel group, active-controlled non-inferiority study of 942 geriatric patients (≥ 65 years) with primary hyperlipidemia or mixed dyslipidemia.

Patients entered a 6- to 8-week wash-out/dietary lead-in period, and then were randomized to a once daily dose of pitavastatin or pravastatin for 12 weeks (Table 7). Non-inferiority of pitavastatin to a given dose of pravastatin was assumed if the lower bound of the 95% CI for the treatment difference was greater than -6% for the mean percent change in LDL-C. Lipid results are shown in Table 7.

Pitavastatin significantly reduced LDL-C compared to pravastatin as demonstrated by the following pairwise dose comparisons: pitavastatin 1 mg vs. pravastatin 10 mg, pitavastatin 2 mg vs. pravastatin 20 mg and pitavastatin 4 mg vs. pravastatin 40 mg. Mean treatment differences (95% CI… [Excerpted — this section continues on DailyMed.]

🧪 Nonclinical Toxicology ~1 min read ▾

13 NONCLINICAL TOXICOLOGY

13.1Carcinogenesis, Mutagenesis, Impairment of Fertility In a 92 week carcinogenicity study in mice given pitavastatin, at the maximum tolerated dose of 75 mg/kg/day with systemic maximum exposures (AUC) 26 times the clinical maximum exposure at 4 mg daily, there was an absence of drug-related tumors. In a 92 week carcinogenicity study in rats given pitavastatin at 1 mg/kg/day, 5 mg/kg/day, 25 mg/kg/day by oral gavage there was a significant increase in the incidence of thyroid follicular cell tumors at 25 mg/kg/day, which represents 295 times human systemic exposures based on AUC at the 4 mg daily maximum human dose.

In a 26 week transgenic mouse (Tg rasH2) carcinogenicity study where animals were given pitavastatin at 30 mg/kg/day, 75 mg/kg/day, and 150 mg/kg/day by oral gavage, no clinically significant tumors were observed. Pitavastatin was not mutagenic in the Ames test with Salmonella typhimurium and Escherichia coli with and without metabolic activation, the micronucleus test following a single administration in mice and multiple administrations in rats, the unscheduled DNA synthesis test in rats, and a Comet assay in mice.

In the chromosomal aberration test, clastogenicity was observed at the highest doses tested which also elicited high levels of cytotoxicity. Pitavastatin had no adverse effects on male and female rat fertility at oral doses of 10 mg/kg/day and 30 mg/kg/day, respectively, at systemic exposures 56 and 354 times clinical exposure at 4 mg daily based on AUC. Pitavastatin treatment in rabbits resulted in mortality in males and females given 1 mg/kg/day (30 times clinical systemic exposure at 4 mg daily based on AUC) and higher during a fertility study.

Although the cause of death was not determined, rabbits had gross signs of renal toxicity (kidneys whitened) indicative of possible ischemia. Lower doses (15 times human systemic exposure) did not show significant toxicity in adult males and females. However, decreased implantations, increased resorptions, and decreased viability of fetuses were observed.

📄 Package Label / Principal Display Panel 56 words ▾

PACKAGE LABEL.PRINCIPAL DISPLAY PANEL NDC 25208-201-09 Zypitamag (Pitavastatin) Tablets, 2 mg 90 Tablets Rx only NDC 25208-201-15 Zypitamag (Pitavastatin) Tablets, 2 mg 500 Tablets in Bottle Rx only NDC 25208-202-09 Zypitamag (Pitavastatin) Tablets, 4 mg 90 Tablets Rx only NDC 25208-202-15 Zypitamag (Pitavastatin) Tablets, 4 mg 500 Tablets in Bottle Rx only image image image image

Source: FDA Structured Product Labeling, mirrored from DailyMed / openFDA. Prefer the government’s original formatting? View this label on DailyMed ↗

Medicare Part D spend CMS · PART D · 2026 (Q1)

Medicare Part D (outpatient prescription) spending for Zypitamag — the program that covers self-administered drugs. 1 manufacturer.
⚠️ Drug-level data: CMS publishes Part D spending by drug, not by NDC — these figures combine every manufacturer, strength and package size sold under the name Zypitamag. That’s a different level of aggregation than the Medicaid card above, which is specific to this exact 11-digit NDC (pack size included), so the two aren’t directly comparable.
Period
Total Part D spend
$722.4K
Claims incl. refills
1.7K
Beneficiaries
1.3K
Spend / beneficiary
$571.94
Spend / claim
$431.26
Trend by period
💵 About the dollar figures: spending is what Part D plans paid before confidential manufacturer rebates, so the program’s real net cost is lower. A blank patient count means fewer than 11 people — CMS hides counts that small to protect privacy. Source: CMS Medicare Quarterly Part D Spending by Drug (data.cms.gov), updated quarterly.

Reported adverse events (FAERS)

Read carefully: FAERS reports are voluntary and unverified. Counts are not incidence, do not establish causation, are subject to reporting bias, and cannot be used to compare one drug to another. Shown for signal context only. Reports for Pitavastatin Magnesium — the ingredient across all brands.

Top reported reactions

Headache7
Death5
Hospitalisation5
Pruritus5
Dyspnoea4
Arthralgia3
Cardiac Death3

Age at onset

Adult3
Elderly25

Reporter sex

57 reports
Male · 38%
Female · 62%

Serious outcomes

Death8
Reports over time (by year) — tap or hover for the count & year
2020 2022 2024 2026 23 0
Most recent year is provisional (FAERS lags ~3 months).
Where does this data come from?
Adverse-event reports from the FDA Adverse Event Reporting System (FAERS) via openFDA. FAERS reports are voluntary and unverified — counts are not incidence and don’t establish causation.
For educational and professional reference only — not medical advice. Pricing reflects published NADAC and CMS ASP (free public data) and may differ from your acquisition cost; always verify before billing or dispensing.