Sdamlo amlodipine 10 mg/10mg Solution — NDC 81279-135-10 (Billing 81279-0135-10)
This is a package of Sdamlo amlodipine 10 mg/10mg Solution from Pangea Pharmaceuticals, LLC, marketed since Feb 2026 and currently FDA-listed. It is this product's only package size.
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): 088048
- GCN: 58128
- GPI-14 (Medi-Span): 34000003102140
- HICL (First Databank): 006494
- AHFS class code: 24:08.92.00
- RxCUI (RxNorm): 2726058
Where does this data come from?
- FDA openFDA NDC Directory · synced Oct 1, 2026
- FDA label on DailyMed · label index refreshed Oct 1, 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 Dihydropyridine Calcium Channel Blocker class.
Where does this data come from?
- RxClass (NLM) · catalog refreshed Oct 1, 2026
Clinical
- It lowers high blood pressure, which reduces your risk of strokes and heart attacks. It also treats certain kinds of angina (chest pain) and coronary artery disease. Your doctor wi...
- Take it by mouth, usually once a day, exactly as your prescriber directs. If you use Katerzia suspension, shake it first. It works gradually, so your dose may be adjusted over a we...
- Ankle or foot swelling is the most common, especially at higher doses. Some people feel tired, dizzy, flushed, or sleepy, or notice a pounding heartbeat. Call your doctor if these...
- Call if your chest pain worsens, you faint, you notice yellow skin or eyes, or you have swelling of the face or throat. Those need prompt attention.
Patient education
Supplement & herbal interactions
Some supplements/herbs that may interact with Amlodipine — tap one for details:
Amlodipine may be associated with lower levels of 2 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 1, 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 mL | Per package |
|---|---|---|
| Retail pharmacies payNADAC · weekly | Not in the retail survey — common for institutional, discontinued, or low-volume packs. | |
| 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 · quarterly | No Part D plan price is available for this NDC in our data. | |
Where does this data come from?
- CMS NADAC weekly file
- CMS ASP pricing files · refreshed Sep 20, 2026
- CMS Medicaid State Drug Utilization Data · refreshed Oct 2, 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 | Marketing start | Marketing end | Status |
|---|---|---|---|---|
| 81279-0135-10 You're viewing this Main listing | 10 BOTTLE in 1 CARTON / 10 mg in 1 BOTTLE | 2026-02-05 | — | Active |
Therapeutic equivalents
| Product | Labeler | Pack | NADAC/unit | TE | Status | Price vs. this |
|---|---|---|---|---|---|---|
| Sdamlo 10 mg/10mgthis 81279-0135-10 | Pangea | 10 bottles | — | — | FDA listed | — |
Where does this data come from?
- FDA openFDA NDC Directory · synced Oct 1, 2026
- FDA Orange Book · refreshed Sep 3, 2026
- CMS NADAC weekly file
Availability & generic status
We did not find an FDA-approved generic match for this exact strength, form and route.
Where does this data come from?
- FDA Orange Book · refreshed Sep 3, 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.
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 1, 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
Where does this data come from?
- FDA openFDA NDC Directory · synced Oct 1, 2026
- Drugs@FDA
Full prescribing information FDA SPL
🎯 Indications and Usage ▾
1 INDICATIONS AND USAGE Sdamlo is a calcium channel blocker and may be used alone or in combination with other antihypertensive and antianginal agents for the treatment of: Hypertension ( 1.1 ) Sdamlo is indicated for the treatment of hypertension, to lower blood pressure in adults and pediatric patients 6 years of age and older. Lowering blood pressure reduces the risk of fatal and nonfatal cardiovascular events, primarily strokes and myocardial infarctions. Coronary Artery Disease in adults ( 1.2 ) Chronic Stable Angina Vasospastic Angina (Prinzmetal's or Variant Angina) Angiographically Documented Coronary Artery Disease in patients without heart failure or an ejection fraction <40%
1.1Hypertension Sdamlo is indicated for the treatment of hypertension, to lower blood pressure in adults and pediatric patients 6 years of age and older. Lowering blood pressure reduces the risk of fatal and nonfatal cardiovascular events, primarily strokes and myocardial infarctions. These benefits have been seen in controlled trials of antihypertensive drugs from a wide variety of pharmacologic classes including amlodipine.
Control of high blood pressure should be part of comprehensive cardiovascular risk management, including, as appropriate, lipid control, diabetes management, antithrombotic therapy, smoking cessation, exercise, and limited sodium intake. Many patients will require more than one drug to achieve blood pressure goals. For specific advice on goals and management, see published guidelines, such as those of the National High Blood Pressure Education Program’s Joint National Committee on Prevention, Detection, Evaluation, and Treatment of High Blood Pressure (JNC).
Numerous antihypertensive drugs, from a variety of pharmacologic classes and with different mechanisms of action, have been shown in randomized controlled trials to reduce cardiovascular morbidity and mortality, and it can be concluded that it is blood pressure reduction, and not some other pharmacologic property of the drugs, that is largely responsible for those benefits. The largest and most consistent cardiovascular outcome benefit has been a reduction in the risk of stroke, but reductions in myocardial infarction and cardiovascular mortality also have been seen regularly.
Elevated systolic or diastolic pressure causes increased cardiovascular risk, and the absolute risk increase per mmHg is greater at higher blood pressures, so that even modest reductions of severe hypertension can provide substantial benefit. Relative risk reduction from blood pressure reduction is similar across populations with varying absolute risk, so the absolute benefit is greater in patients who are at higher risk independent of their hypertension (for example, patients with diabetes or hyperlipidemia), and such patients would be expected to benefit from more aggressive treatment to a lower blood pressure goal.
Some antihypertensive drugs have smaller blood pressure effects (as monotherapy) in black patients, and many antihypertensive drugs have additional approved indications and effects (e.g., on angina, heart failure, or diabetic kidney disease). These considerations may guide selection of therapy. Sdamlo may be used alone or in combination with other antihypertensive agents.
1.2Coronary Artery Disease (CAD) Chronic Stable Angina Sdamlo is indicated for the symptomatic treatment of chronic stable angina in adults. Sdamlo may be used alone or in combination with other antianginal agents. Vasospastic-Angina (Prinzmetal's or Variant Angina) Sdamlo is indicated for the treatment of confirmed or suspected vasospastic angina in adults.
Sdamlo may be used as monotherapy or in combination with other antianginal agents. Angiographically Documented CAD In adult patients with recently documented CAD by angiography and without heart failure or an ejection fraction <40%, Sdamlo is indicated to reduce the risk of hospitalization for angina and to reduce the risk of a coronary revascularization proce… [Excerpted — this section continues on DailyMed.]
⏱️ Dosage and Administration ▾
2 DOSAGE AND ADMINISTRATION Adult recommended starting dose: 5 mg orally once daily with maximum dose 10 mg orally once daily. ( 2.1 ) Small, fragile, or elderly patients, or patients with hepatic insufficiency may be started on 2.5 mg orally once daily. ( 2.1 ) Pediatric starting dose: 2.5 mg to 5 mg orally once daily. ( 2.2 ) Important Limitation: Doses in excess of 5 mg daily have not been studied in pediatric patients. ( 2.2 )
2.1Recommended Dosage in Adults Hypertension The usual initial antihypertensive oral dose of Sdamlo is 5 mg orally once daily, and the maximum dose is 10 mg orally once daily. Small, fragile, or elderly patients, or patients with hepatic insufficiency may be started on 2.5 mg orally once daily and this dose may be used when adding Sdamlo to other antihypertensive therapy. Adjust dosage according to blood pressure goals.
In general, wait 7 to 14 days between titration steps. Titrate more rapidly, however, if clinically warranted, provided the patient is assessed frequently. Angina The recommended dose for chronic stable or vasospastic angina is 5 mg to 10 mg orally once daily, with the lower dose suggested in the elderly and in patients with hepatic insufficiency.
Most patients will require 10 mg orally once daily for adequate effect. Coronary Artery Disease The recommended dose range for patients with coronary artery disease is 5 mg to 10 mg once daily. In clinical studies, the majority of patients required 10 mg orally once daily [see Clinical Studies (14.4) ] .
2.2Recommended Dosage in Pediatric Patients for Hypertension The recommended antihypertensive dose in pediatric patients ages 6 to 17 years is 2.5 mg to 5 mg orally once daily. Doses in excess of 5 mg orally once daily have not been studied in pediatric patients [see Clinical Pharmacology (12.4), Clinical Studies (14.1) ] .
2.3Preparation and Administration of Sdamlo for Oral Solution • Remove the cap and peel off the seal. • Use one tablespoon to measure 15 mL of room temperature water. Add the 15 ml water to the container. • Wait for 60 seconds to allow the content to fully dissolve. Shaking the container is not required. • Consume the entire content of the container immediately or within 60 minutes. • Rinse the container with similar amount of water 1 to 2 times and consume the rinses.
💊 Dosage Forms and Strengths ▾
3 DOSAGE FORMS AND STRENGTHS Sdamlo for Oral Solution 2.5 mg: each unit-dose bottle contains 2.5 mg of amlodipine as a white to off-white dry powder or powder cake. Sdamlo for Oral Solution 5 mg: each unit-dose bottle contains 5 mg of amlodipine as a white to off-white dry powder or powder cake. Sdamlo for Oral Solution 10 mg: each unit-dose bottle contains 10 mg of amlodipine as a white to off-white dry powder or powder cake.
For oral solution: 2.5 mg, 5 mg, and 10 mg ( 3 )
⛔ Contraindications ▾
4 CONTRAINDICATIONS Sdamlo is contraindicated in patients with known sensitivity to amlodipine. Known sensitivity to amlodipine ( 4 )
⚠️ Warnings and Cautions ▾
5 WARNINGS AND PRECAUTIONS Symptomatic hypotension is possible, particularly in patients with severe aortic stenosis. However, acute hypotension is unlikely. ( 5.1 ) Worsening angina and acute myocardial infarction can develop after starting or increasing the dose of Sdamlo, particularly in patients with severe obstructive coronary artery disease. ( 5.2 ) Titrate slowly in patients with severe hepatic impairment. ( 5.3 )
5.1Hypotension Symptomatic hypotension is possible, particularly in patients with severe aortic stenosis. Because of the gradual onset of action, acute hypotension is unlikely.
5.2Increased Angina or Myocardial Infarction Worsening angina and acute myocardial infarction can develop after starting or increasing the dose of Sdamlo, particularly in patients with severe obstructive coronary artery disease.
5.3Patients with Hepatic Failure Because amlodipine is extensively metabolized by the liver and the plasma elimination half-life (t 1/2 ) is 56 hours in patients with impaired hepatic function, titrate slowly when administering Sdamlo to patients with severe hepatic impairment.
🤒 Adverse Reactions ▾
6 ADVERSE REACTIONS Most common adverse reaction to amlodipine is edema which occurred in a dose related manner. Other adverse experiences not dose related but reported with an incidence >1.0% are fatigue, nausea, abdominal pain, and somnolence. ( 6 ) To report SUSPECTED ADVERSE REACTIONS, contact Pangea Pharmaceuticals at 1-855-892-8224 or FDA at 1-800-332-1088 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. Amlodipine has been evaluated for safety in more than 11,000 patients in U.S. and foreign clinical trials. In general, treatment with amlodipine was well-tolerated at doses up to 10 mg daily.
Most adverse reactions reported during therapy with amlodipine were of mild or moderate severity. In controlled clinical trials directly comparing amlodipine (N=1730) at doses up to 10 mg to placebo (N=1250), discontinuation of amlodipine because of adverse reactions was required in only about 1.5% of patients and was not significantly different from placebo (about 1%). The most commonly reported side effects more frequent than placebo are reflected in the table below.
The incidence (%) of side effects that occurred in a dose related manner are as follows: Amlodipine Placebo 2.5 mg N=275 5 mg N=296 10 mg N=268 N=520 Edema 1.8 3.0 10.8
0.6Dizziness 1.1 3.4 3.4
1.5Flushing 0.7 1.4 2.6
0.0Palpitation 0.7 1.4 4.5
0.6Other adverse reactions that were not clearly dose related but were reported with an incidence greater than 1.0% in placebo-controlled clinical trials include the following: Amlodipine (%) (N=1730) Placebo (%) (N=1250) Fatigue 4.5
2.8Nausea 2.9
1.9Abdominal Pain 1.6
0.3Somnolence 1.4
0.6For several adverse reactions, there was a greater incidence in women than men associated with amlodipine treatment as show in the following table: Amlodipine Placebo Male=% (N=1218) Female=% (N=512) Male=% (N=914) Female=% (N=336) Edema 5.6 14.6 1.4
5.1Flushing 1.5 4.5 0.3
0.9Palpitations 1.4 3.3 0.9
0.9Somnolence 1.3 1.6 0.8
0.3The safety of amlodipine at doses of 2.5 mg and 5 mg once daily was evaluated in a randomized placebo-controlled trial in 268 pediatric patients aged 6 to 17 years with hypertension [see Clinical Studies (14.1)]. Adverse reactions were similar to those in adults.
6.2Postmarketing Experience The following adverse reactions have been identified during post-approval use of amlodipine. Because these reactions are reported voluntarily from a population of uncertain size, it is not always possible to reliably estimate their frequency or establish a causal relationship to drug exposure. General: gynecomastia Hepatic: jaundice and hepatic enzyme elevations, some require hospitalization.
Neurologic: extrapyramidal disorder.
🔄 Drug Interactions ▾
7 DRUG INTERACTIONS Do not exceed doses greater than 20 mg daily of simvastatin. ( 7.2 )
7.1Impact of Other Drugs on Amlodipine CYP3A Inhibitors Co-administration with CYP3A inhibitors (moderate and strong) results in increased systemic exposure to amlodipine and may require dose reduction. Monitor for symptoms of hypotension and edema when amlodipine is co-administered with CYP3A inhibitors to determine the need for dose adjustment [see Clinical Pharmacology (12.3) ] . CYP3A Inducers No information is available on the quantitative effects of CYP3A inducers on amlodipine.
Blood pressure should be closely monitored when amlodipine is co-administered with CYP3A inducers. Sildenafil Monitor for hypotension when sildenafil is co-administered with amlodipine [see Clinical Pharmacology (12.2) ].
7.2Impact of Amlodipine on Other Drugs Simvastatin Co-administration of simvastatin with amlodipine increases the systemic exposure of simvastatin. Limit the dose of simvastatin in patients on amlodipine to 20 mg daily [see Clinical Pharmacology (12.3) ] . Immunosuppressants Amlodipine may increase the systemic exposure of cyclosporine or tacrolimus when co-administered.
Frequent monitoring of trough blood levels of cyclosporine and tacrolimus is recommended and adjust the dose when appropriate [see Clinical Pharmacology (12.3) ] .
👥 Use in Specific Populations ▾
8 USE IN SPECIFIC POPULATIONS Pediatric: Effect on patients less than 6 years old is not known. ( 8.4 ) Geriatric: Start dosing at the low end of the dose range. ( 8.5 ) See 17 for PATIENT COUNSELING INFORMATION.
8.1Pregnancy Risk Summary The limited available data based on post-marketing reports with amlodipine use in pregnant women are not sufficient to inform a drug-associated risk for major birth defects and miscarriage. There are risks to the mother and fetus associated with poorly controlled hypertension in pregnancy [see Clinical Considerations] . In animal reproduction studies, there was no evidence of adverse developmental effects when pregnant rats and rabbits were treated orally with amlodipine maleate during organogenesis at doses approximately 10 and 20-times the maximum recommended human dose (MRHD), respectively.
However, for rats, litter size was significantly decreased (by about 50%) and the number of intrauterine deaths was significantly increased (about 5-fold). Amlodipine has been shown to prolong both the gestation period and the duration of labor in rats at this dose [see Data] . The estimated background risk of major birth defects and miscarriage for the indicated population is unknown.
All pregnancies have a background risk of birth defect, loss or other adverse outcomes. In the U.S. general population, the estimated background risk of major birth defects and miscarriage in clinically recognized pregnancies is 2%–4% and 15%–20%, respectively. Clinical Considerations Disease-associated maternal and/or embryo/fetal risk Hypertension in pregnancy increases the maternal risk for pre-eclampsia, gestational diabetes, premature delivery, and delivery complications (e.g., need for cesarean section and post-partum hemorrhage).
Hypertension increases the fetal risk for intrauterine growth restriction and intrauterine death. Pregnant women with hypertension should be carefully monitored and managed accordingly. Data Animal Data No evidence of teratogenicity or other embryo/fetal toxicity was found when pregnant rats and rabbits were treated orally with amlodipine maleate at doses up to 10 mg amlodipine/kg/day (approximately 10 and 20 times the MRHD based on body surface area, respectively) during their respective periods of major organogenesis.
However, for rats, litter size was significantly decreased (by about 50%) and the number of intrauterine deaths was significantly increased (about 5-fold) in rats receiving amlodipine maleate at a dose equivalent to 10 mg amlodipine/kg/day for 14 days before mating and throughout mating and gestation. Amlodipine maleate has been shown to prolong both the gestation period and the duration of labor in rats at this dose.
8.2Lactation Risk Summary Limited available data from a published clinical lactation study reports that amlodipine is present in human milk at an estimated median relativeinfant dose of 4.2%. No adverse effects of amlodipine on the breastfed infant have been observed. There is no available information on the effects of amlodipine on milk production.
8.4Pediatric Use The safety and effectiveness of amlodipine for the treatment of hypertension have been established in pediatric patients aged 6 to 17 years. Use of amlodipine in this age group is supported by evidence from a randomized, placebo-controlled trial in pediatric patients 6 to 17 years of age with hypertension. [see Adverse Reactions (6.1) and Clinical Studies (14.1) ] . The safety and effectiveness of amlodipine have not been established in pediatric patients less than 6 years of age.
8.5Geriatric Use Clinical studies of amlodipine did not include sufficient numbers of subjects aged 65 and over to determine whether they respond differently from younger subjects. Other reported clinical experience has not identified differences in responses between the elderly and younger patients. In general, dose selection for an elderly patient should be cautious, usually starting at the low end of the dosing ran… [Excerpted — this section continues on DailyMed.]
🤰 Pregnancy ▾
8.1Pregnancy Risk Summary The limited available data based on post-marketing reports with amlodipine use in pregnant women are not sufficient to inform a drug-associated risk for major birth defects and miscarriage. There are risks to the mother and fetus associated with poorly controlled hypertension in pregnancy [see Clinical Considerations] . In animal reproduction studies, there was no evidence of adverse developmental effects when pregnant rats and rabbits were treated orally with amlodipine maleate during organogenesis at doses approximately 10 and 20-times the maximum recommended human dose (MRHD), respectively.
However, for rats, litter size was significantly decreased (by about 50%) and the number of intrauterine deaths was significantly increased (about 5-fold). Amlodipine has been shown to prolong both the gestation period and the duration of labor in rats at this dose [see Data] . The estimated background risk of major birth defects and miscarriage for the indicated population is unknown.
All pregnancies have a background risk of birth defect, loss or other adverse outcomes. In the U.S. general population, the estimated background risk of major birth defects and miscarriage in clinically recognized pregnancies is 2%–4% and 15%–20%, respectively. Clinical Considerations Disease-associated maternal and/or embryo/fetal risk Hypertension in pregnancy increases the maternal risk for pre-eclampsia, gestational diabetes, premature delivery, and delivery complications (e.g., need for cesarean section and post-partum hemorrhage).
Hypertension increases the fetal risk for intrauterine growth restriction and intrauterine death. Pregnant women with hypertension should be carefully monitored and managed accordingly. Data Animal Data No evidence of teratogenicity or other embryo/fetal toxicity was found when pregnant rats and rabbits were treated orally with amlodipine maleate at doses up to 10 mg amlodipine/kg/day (approximately 10 and 20 times the MRHD based on body surface area, respectively) during their respective periods of major organogenesis.
However, for rats, litter size was significantly decreased (by about 50%) and the number of intrauterine deaths was significantly increased (about 5-fold) in rats receiving amlodipine maleate at a dose equivalent to 10 mg amlodipine/kg/day for 14 days before mating and throughout mating and gestation. Amlodipine maleate has been shown to prolong both the gestation period and the duration of labor in rats at this dose.
🧒 Pediatric Use ▾
8.4Pediatric Use The safety and effectiveness of amlodipine for the treatment of hypertension have been established in pediatric patients aged 6 to 17 years. Use of amlodipine in this age group is supported by evidence from a randomized, placebo-controlled trial in pediatric patients 6 to 17 years of age with hypertension. [see Adverse Reactions (6.1) and Clinical Studies (14.1) ] . The safety and effectiveness of amlodipine have not been established in pediatric patients less than 6 years of age.
8.6Hepatic Impairment A lower initial dose may be required for patients with hepatic insufficiency [see Dosage and Administration (2.1) and Clinical Pharmacology (12.3) ] .
🧓 Geriatric Use ▾
8.5Geriatric Use Clinical studies of amlodipine did not include sufficient numbers of subjects aged 65 and over to determine whether they respond differently from younger subjects. Other reported clinical experience has not identified differences in responses between the elderly and younger patients. In general, dose selection for an elderly patient should be cautious, usually starting at the low end of the dosing range, reflecting the greater frequency of decreased hepatic, renal, or cardiac function, and of concomitant disease or other drug therapy.
Elderly patients have decreased clearance of amlodipine with a resulting increase of AUC of approximately 40–60%, and a lower initial dose may be required [see Dosage and Administration (2.1) ] .
🆘 Overdosage ▾
10 OVERDOSAGE Overdosage might be expected to cause excessive peripheral vasodilation with marked hypotension and possibly a reflex tachycardia. In humans, experience with intentional overdosage of amlodipine is limited. Single oral doses of amlodipine maleate equivalent to 40 mg amlodipine/kg and 100 mg amlodipine/kg in mice and rats, respectively, caused deaths.
Single oral amlodipine maleate doses equivalent to 4 or more mg amlodipine/kg or higher in dogs (11 or more times the maximum recommended human dose on a mg/m 2 basis) caused a marked peripheral vasodilation and hypotension. If massive overdose should occur, initiate active cardiac and respiratory monitoring. Frequent blood pressure measurements are essential.
Should hypotension occur, provide cardiovascular support including elevation of the extremities and the judicious administration of fluids. If hypotension remains unresponsive to these conservative measures, consider administration of vasopressors (such as phenylephrine) with attention to circulating volume and urine output. As amlodipine is highly protein bound, hemodialysis is not likely to be of benefit.
🧬 Clinical Pharmacology ▾
12 CLINICAL PHARMACOLOGY
12.1Mechanism of Action Amlodipine is a dihydropyridine calcium antagonist (calcium ion antagonist or slow-channel blocker) that inhibits the transmembrane influx of calcium ions into vascular smooth muscle and cardiac muscle. Experimental data suggest that amlodipine binds to both dihydropyridine and nondihydropyridine binding sites. The contractile processes of cardiac muscle and vascular smooth muscle are dependent upon the movement of extracellular calcium ions into these cells through specific ion channels.
Amlodipine inhibits calcium ion influx across cell membranes selectively, with a greater effect on vascular smooth muscle cells than on cardiac muscle cells. Negative inotropic effects can be detected in vitro but such effects have not been seen in intact animals at therapeutic doses. Serum calcium concentration is not affected by amlodipine.
Within the physiologic pH range, amlodipine is an ionized compound (pKa=8.6), and its kinetic interaction with the calcium channel receptor is characterized by a gradual rate of association and dissociation with the receptor binding site, resulting in a gradual onset of effect. Amlodipine is a peripheral arterial vasodilator that acts directly on vascular smooth muscle to cause a reduction in peripheral vascular resistance and reduction in blood pressure. The precise mechanisms by which amlodipine relieves angina have not been fully delineated, but are thought to include the following: Exertional Angina: In patients with exertional angina, amlodipine reduces the total peripheral resistance (afterload) against which the heart works and reduces the rate pressure product, and thus myocardial oxygen demand, at any given level of exercise.
Vasospastic Angina: amlodipine has been demonstrated to block constriction and restore blood flow in coronary arteries and arterioles in response to calcium, potassium epinephrine, serotonin, and thromboxane A2 analog in experimental animal models and in human coronary vessels in vitro. This inhibition of coronary spasm is responsible for the effectiveness of amlodipine in vasospastic (Prinzmetal’s or variant) angina.
12.2Pharmacodynamics Hemodynamics: Following administration of therapeutic doses to patients with hypertension, amlodipine produces vasodilation resulting in a reduction of supine and standing blood pressures. These decreases in blood pressure are not accompanied by a significant change in heart rate or plasma catecholamine levels with chronic dosing. Although the acute intravenous administration of amlodipine decreases arterial blood pressure and increases heart rate in hemodynamic studies of patients with chronic stable angina, chronic oral administration of amlodipine in clinical trials did not lead to clinically significant changes in heart rate or blood pressures in normotensive patients with angina.
With chronic once daily oral administration, antihypertensive effectiveness is maintained for at least 24 hours. Plasma concentrations correlate with effect in both young and elderly patients. The magnitude of reduction in blood pressure with amlodipine is also correlated with the height of pretreatment elevation; thus, individuals with moderate hypertension (diastolic pressure 105–114 mmHg) had about a 50% greater response than patients with mild hypertension (diastolic pressure 90–104 mmHg).
Normotensive subjects experienced no clinically significant change in blood pressures (+1/–2 mmHg). In hypertensive patients with normal renal function, therapeutic doses of amlodipine resulted in a decrease in renal vascular resistance and an increase in glomerular filtration rate and effective renal plasma flow without change in filtration fraction or proteinuria. As with other calcium channel blockers, hemodynamic measurements of cardiac function at rest and during exercise (or pacing) in patients with normal ventricular function treated with amlodipine have generally demonstrated a small increase in cardiac index wi… [Excerpted — this section continues on DailyMed.]
🧬 Mechanism of Action ▾
12.1Mechanism of Action Amlodipine is a dihydropyridine calcium antagonist (calcium ion antagonist or slow-channel blocker) that inhibits the transmembrane influx of calcium ions into vascular smooth muscle and cardiac muscle. Experimental data suggest that amlodipine binds to both dihydropyridine and nondihydropyridine binding sites. The contractile processes of cardiac muscle and vascular smooth muscle are dependent upon the movement of extracellular calcium ions into these cells through specific ion channels.
Amlodipine inhibits calcium ion influx across cell membranes selectively, with a greater effect on vascular smooth muscle cells than on cardiac muscle cells. Negative inotropic effects can be detected in vitro but such effects have not been seen in intact animals at therapeutic doses. Serum calcium concentration is not affected by amlodipine.
Within the physiologic pH range, amlodipine is an ionized compound (pKa=8.6), and its kinetic interaction with the calcium channel receptor is characterized by a gradual rate of association and dissociation with the receptor binding site, resulting in a gradual onset of effect. Amlodipine is a peripheral arterial vasodilator that acts directly on vascular smooth muscle to cause a reduction in peripheral vascular resistance and reduction in blood pressure. The precise mechanisms by which amlodipine relieves angina have not been fully delineated, but are thought to include the following: Exertional Angina: In patients with exertional angina, amlodipine reduces the total peripheral resistance (afterload) against which the heart works and reduces the rate pressure product, and thus myocardial oxygen demand, at any given level of exercise.
Vasospastic Angina: amlodipine has been demonstrated to block constriction and restore blood flow in coronary arteries and arterioles in response to calcium, potassium epinephrine, serotonin, and thromboxane A2 analog in experimental animal models and in human coronary vessels in vitro. This inhibition of coronary spasm is responsible for the effectiveness of amlodipine in vasospastic (Prinzmetal’s or variant) angina.
📦 How Supplied / Storage and Handling ▾
16 HOW SUPPLIED/STORAGE AND HANDLING 2.5 mg Sdamlo for Oral Solution Sdamlo for Oral Solution, 2.5 mg is supplied as a white to off-white powder or powder cake packaged in a sealed single-dose, single use high-density polyethylene (HDPE) bottle with a child-resistant cap. NDC 81279-133-10 Supplied in cartons of 10 single-dose bottles sealed in an aluminum pouch 5 mg Sdamlo for Oral Solution Sdamlo for Oral Solution, 5 mg is supplied as a white to off-white powder or powder cake packaged in a sealed single-dose, single use high-density polyethylene (HDPE) bottle with a child-resistant cap.
NDC 81279-134-10 Supplied in cartons of 10 single-dose bottles sealed in an aluminum pouch 10 mg Sdamlo for Oral Solution Sdamlo for Oral Solution, 10 mg is supplied as a white to off-white powder or powder cake packaged in a sealed single-dose, single use high-density polyethylene (HDPE) bottle with a child-resistant cap. NDC 81279-135-10 Supplied in cartons of 10 single-dose bottles sealed in an aluminum pouch Storage Store Sdamlo at controlled room temperature, 20°C to 25°C (68°F to 77°F) with excursions permitted to 15°C to 30°C (59°F to 86°F) [see USP Controlled Room Temperature].
Store and dispense in original packaging.
📋 Description ▾
11 DESCRIPTION Sdamlo contains the besylate salt of amlodipine, a long-acting calcium channel blocker. Amlodipine besylate is chemically described as 3-Ethyl-5-methyl (±)-2-[(2-aminoethoxy)methyl]-4-(2-chlorophenyl)-1,4-dihydro-6-methyl-3,5 pyridinedicarboxylate, monobenzenesulphonate. Its empirical formula is C 20 H 25 CIN 2 O 5 •C 6 H 6 O 3 S, and its structural formula is: Amlodipine besylate is a white crystalline powder with a molecular weight of 567.1.
It is slightly soluble in water and sparingly soluble in ethanol. Sdamlo is supplied as a white to off-white powder or powder cake packaged in a unit-dose, single-use container. Each vial of Sdamlo contains 2.5, 5, and 10 mg of amlodipine, provided as 3.47, 6.94, and 13.88 mg of amlodipine besylate, respectively, and the following inactive ingredients: mannitol and neotame.
Sdamlo is for oral administration after reconstitution with water [see Dosage and Administration (2.3) ] . Structure
🧬 Pharmacokinetics ▾
12.3Pharmacokinetics Absorption After oral administration of therapeutic doses of amlodipine, absorption produces peak plasma concentrations between 6 and 12 hours. Absolute bioavailability has been estimated to be between 64 and 90%. Effect of food Compared to fasted state administration, standard high-fat, high-calorie breakfast did not have an effect on the absorption of Sdamlo.
Distribution Ex vivo studies have shown that approximately 93% of the circulating drug is bound to plasma proteins in hypertensive patients. Elimination Metabolism Amlodipine is extensively (about 90%) converted to inactive metabolites via hepatic metabolism with 10% of the parent compound and 60% of the metabolites excreted in the urine. Excretion Elimination from the plasma is biphasic with a terminal elimination half-life of about 30–50 hours.
Steadystate plasma levels of amlodipine are reached after 7 to 8 days of consecutive daily dosing. Specific Populations Pediatric Patients Sixty-two hypertensive patients aged 6 to 17 years received doses of amlodipine between 1.25 mg and 20 mg. Weight-adjusted clearance and volume of distribution were similar to values in adults.
Renal Impairment The pharmacokinetics of amlodipine are not significantly influenced by renal impairment. Patients with renal failure may therefore receive the usual initial dose. Hepatic Impairment Elderly patients and patients with hepatic insufficiency have decreased clearance of amlodipine with a resulting increase in AUC of approximately 40–60%, and a lower initial dose may be required.
Drug Interaction In vitro data indicate that amlodipine has no effect on the human plasma protein binding of digoxin, phenytoin, warfarin, and indomethacin. Impact of other drugs on amlodipine Co-administered cimetidine, magnesium-and aluminum hydroxide antacids, sildenafil, and grapefruit juice have no impact on the exposure to amlodipine. CYP3A inhibitors : Co-administration of a 180 mg daily dose of diltiazem with 5 mg amlodipine in elderly hypertensive patients resulted in a 60% increase in amlodipine systemic exposure.
Erythromycin coadministration in healthy volunteers did not significantly change amlodipine systemic exposure. However, strong inhibitors of CYP3A (e.g., itraconazole, clarithromycin) may increase the plasma concentrations of amlodipine to a greater extent [see Drug Interactions (7.1) ] . Impact of amlodipine on other drugs Amlodipine is a weak inhibitor of CYP3A and may increase exposure to CYP3A substrates.
Co-administered amlodipine does not affect the exposure to atorvastatin, digoxin, ethanol and the warfarin prothrombin response time. Simvastatin : Co-administration of multiple doses of 10 mg of amlodipine with 80 mg simvastatin resulted in a 77% increase in exposure to simvastatin compared to simvastatin alone [see Drug Interactions (7.2) ] . Cyclosporine : A prospective study in renal transplant patients (N=11) showed on an average of 40% increase in trough cyclosporine levels when concomitantly treated with amlodipine [see Drug Interactions (7.2) ] .
Tacrolimus : A prospective study in healthy Chinese volunteers (N=9) with CYP3A5 expressers showed a 2.5-to 4-fold increase in tacrolimus exposure when concomitantly administered with amlodipine compared to tacrolimus alone. This finding was not observed in CYP3A5 non expressers (N= 6). However, a 3-fold increase in plasma exposure to tacrolimus in a renal transplant patient (CYP3A5 nonexpresser) upon initiation of amlodipine for the treatment of post-transplant hypertension resulting in reduction of tacrolimus dose has been reported.
Irrespective of the CYP3A5 genotype status, the possibility of an interaction cannot be excluded with these drugs [see Drug Interactions (7.2) ] .
🧬 Pharmacodynamics ▾
12.2Pharmacodynamics Hemodynamics: Following administration of therapeutic doses to patients with hypertension, amlodipine produces vasodilation resulting in a reduction of supine and standing blood pressures. These decreases in blood pressure are not accompanied by a significant change in heart rate or plasma catecholamine levels with chronic dosing. Although the acute intravenous administration of amlodipine decreases arterial blood pressure and increases heart rate in hemodynamic studies of patients with chronic stable angina, chronic oral administration of amlodipine in clinical trials did not lead to clinically significant changes in heart rate or blood pressures in normotensive patients with angina.
With chronic once daily oral administration, antihypertensive effectiveness is maintained for at least 24 hours. Plasma concentrations correlate with effect in both young and elderly patients. The magnitude of reduction in blood pressure with amlodipine is also correlated with the height of pretreatment elevation; thus, individuals with moderate hypertension (diastolic pressure 105–114 mmHg) had about a 50% greater response than patients with mild hypertension (diastolic pressure 90–104 mmHg).
Normotensive subjects experienced no clinically significant change in blood pressures (+1/–2 mmHg). In hypertensive patients with normal renal function, therapeutic doses of amlodipine resulted in a decrease in renal vascular resistance and an increase in glomerular filtration rate and effective renal plasma flow without change in filtration fraction or proteinuria. As with other calcium channel blockers, hemodynamic measurements of cardiac function at rest and during exercise (or pacing) in patients with normal ventricular function treated with amlodipine have generally demonstrated a small increase in cardiac index without significant influence on dP/dt or on left ventricular end diastolic pressure or volume.
In hemodynamic studies, amlodipine has not been associated with a negative inotropic effect when administered in the therapeutic dose range to intact animals and man, even when co-administered with beta-blockers to man. Similar findings, however, have been observed in normal or well-compensated patients with heart failure with agents possessing significant negative inotropic effects. Electrophysiologic Effects: amlodipine does not change sinoatrial nodal function or atrioventricular conduction in intact animals or man.
In patients with chronic stable angina, intravenous administration of 10 mg did not significantly alter A-H and H-V conduction and sinus node recovery time after pacing. Similar results were obtained in patients receiving amlodipine and concomitant beta-blockers. In clinical studies in which amlodipine was administered in combination with beta-blockers to patients with either hypertension or angina, no adverse effects on electrocardiographic parameters were observed.
In clinical trials with angina patients alone, amlodipine therapy did not alter electrocardiographic intervals or produce higher degrees of AV blocks. Drug Interactions Sildenafil: When amlodipine and sildenafil were used in combination, each agent independently exerted its own blood pressure lowering effect [see Drug Interactions (7.1) ] .
🔬 Clinical Studies ▾
14 CLINICAL STUDIES
14.1Effects in Hypertension Adult Patients The antihypertensive efficacy of amlodipine has been demonstrated in a total of 15 double-blind, placebo-controlled, randomized studies involving 800 patients on amlodipine and 538 on placebo. Once daily administration produced statistically significant placebo-corrected reductions in supine and standing blood pressures at 24 hours postdose, averaging about 12/6 mmHg in the standing position and 13/7 mmHg in the supine position in patients with mild to moderate hypertension.
Maintenance of the blood pressure effect over the 24-hour dosing interval was observed, with little difference in peak and trough effect. Tolerance was not demonstrated in patients studied for up to 1 year. The 3 parallel, fixed dose, dose response studies showed that the reduction in supine and standing blood pressures was dose-related within the recommended dosing range.
Effects on diastolic pressure were similar in young and older patients. The effect on systolic pressure was greater in older patients, perhaps because of greater baseline systolic pressure. Effects were similar in black patients and in white patients.
Pediatric Patients Two hundred sixty-eight hypertensive patients aged 6 to 17 years were randomized first to amlodipine 2.5 or 5 mg once daily for 4 weeks and then randomized again to the same dose or to placebo for another 4 weeks. Patients receiving 2.5 mg or 5 mg at the end of 8 weeks had significantly lower systolic blood pressure than those secondarily randomized to placebo. The magnitude of the treatment effect is difficult to interpret, but it is probably less than 5 mmHg systolic on the 5 mg dose and 3.3 mmHg systolic on the 2.5 mg dose.
14.2Effects in Chronic Stable Angina The effectiveness of 5–10 mg/day of amlodipine in exercise-induced angina has been evaluated in 8 placebo-controlled, double-blind clinical trials of up to 6 weeks duration involving 1038 patients (684 amlodipine, 354 placebo) with chronic stable angina. In 5 of the 8 studies, significant increases in exercise time (bicycle or treadmill) were seen with the 10 mg dose. Increases in symptom-limited exercise time averaged 12.8% (63 sec) for amlodipine 10 mg, and averaged 7.9% (38 sec) for amlodipine 5 mg.
Amlodipine 10 mg also increased time to 1 mm ST segment deviation in several studies and decreased angina attack rate. The sustained efficacy of amlodipine in angina patients has been demonstrated over long-term dosing. In patients with angina, there were no clinically significant reductions in blood pressures (4/1 mmHg) or changes in heart rate (+0.3 bpm).
14.3Effects in Vasospastic Angina In a double-blind, placebo-controlled clinical trial of 4 weeks duration in 50 patients, amlodipine therapy decreased attacks by approximately 4/week compared with a placebo decrease of approximately 1/week (p<0.01). Two of 23 amlodipine and 7 of 27 placebo patients discontinued from the study due to lack of clinical improvement.
14.4Effects in Documented Coronary Artery Disease In PREVENT, 825 patients with angiographically documented coronary artery disease were randomized to amlodipine (5–10 mg once daily) or placebo and followed for 3 years. Although the study did not show significance on the primary objective of change in coronary luminal diameter as assessed by quantitative coronary angiography, the data suggested a favorable outcome with respect to fewer hospitalizations for angina and revascularization procedures in patients with CAD.
CAMELOT enrolled 1318 patients with CAD recently documented by angiography, without left main coronary disease and without heart failure or an ejection fraction <40%. Patients (76% males, 89% Caucasian, 93% enrolled at US sites, 89% with a history of angina, 52% without PCI, 4% with PCI and no stent, and 44% with a stent) were randomized to double-blind treatment with either amlodipine (5–10 mg once daily) or placebo in addition to standard care that included aspirin (89%),… [Excerpted — this section continues on DailyMed.]
🧪 Nonclinical Toxicology ▾
13 NONCLINICAL TOXICOLOGY
13.1Carcinogenesis, Mutagenesis, Impairment of Fertility Rats and mice treated with amlodipine maleate in the diet for up to two years, at concentrations calculated to provide daily dosage levels of 0.5, 1.25, and 2.5 amlodipine mg/kg/day, showed no evidence of a carcinogenic effect of the drug. For the mouse, the highest dose was, on a mg/m 2 basis, similar to the maximum recommended human dose of 10 mg amlodipine/day. For the rat, the highest dose was, on a mg/m 2 basis, about twice the maximum recommended human dose based on a patient weight of 50 kg.
Mutagenicity studies conducted with amlodipine maleate revealed no drug related effects at either the gene or chromosome level. There was no effect on the fertility of rats treated orally with amlodipine maleate (males for 64 days and females for 14 days prior to mating) at doses up to 10 mg amlodipine/kg/day (8 times the maximum recommended human dose of 10 mg/day on a mg/m 2 basis).
📄 Carcinogenesis, Mutagenesis, Impairment of Fertility ▾
13.1Carcinogenesis, Mutagenesis, Impairment of Fertility Rats and mice treated with amlodipine maleate in the diet for up to two years, at concentrations calculated to provide daily dosage levels of 0.5, 1.25, and 2.5 amlodipine mg/kg/day, showed no evidence of a carcinogenic effect of the drug. For the mouse, the highest dose was, on a mg/m 2 basis, similar to the maximum recommended human dose of 10 mg amlodipine/day. For the rat, the highest dose was, on a mg/m 2 basis, about twice the maximum recommended human dose based on a patient weight of 50 kg.
Mutagenicity studies conducted with amlodipine maleate revealed no drug related effects at either the gene or chromosome level. There was no effect on the fertility of rats treated orally with amlodipine maleate (males for 64 days and females for 14 days prior to mating) at doses up to 10 mg amlodipine/kg/day (8 times the maximum recommended human dose of 10 mg/day on a mg/m 2 basis).
📖 Instructions for Use ▾
INSTRUCTIONS FOR USE SDAMLO (s-DAM-loh) (amlodipine) for oral solution This Instructions for Use contains information on how to take or give SDAMLO. Important Information You Need to Know Before Taking or Giving SDAMLO: Read this Instructions for Use before taking or giving SDAMLO. For oral use only (take by mouth).
SDAMLO comes as a powder that you must mix with drinking water to make a liquid (solution) before taking or giving it. The SDAMLO carton contains an aluminum pouch and a tray of 10 sealed bottles of single-dose SDAMLO. Do not open the pouch until you are ready to start taking or giving SDAMLO.
Do not use SDAMLO if the bottle seal is broken, damaged or missing. Do not remove the bottle seal until you are ready to mix SDAMLO. After mixing with 15 mL drinking water, take or give mixed SDAMLO right away.
Throw away SDAMLO if you do not take or give it within 60 minutes of mixing and get a new bottle. Supplier needed to take or give SDAMLO: Clean, room temperature drinking water A measuring cup or measuring spoon capable of measuring 1 tablespoon (15 mL) Step 1: Preparing to take or give SDAMLO: Wash and dry your hands. Remove the aluminum pouch from the carton, open the pouch, and remove a bottle from the tray.
(see Figure A and Figure B ) Figure A Figure B Remove the child resistant cap from the bottle. Remove the bottle seal by gently peeling off the seal. Do not remove the seal until you are ready to mix SDAMLO and take or give a dose.
(see Figure C and Figure D ) After the seal is removed, you should mix SDAMLO as soon as possible. Throw away SDAMLO if you do not mix it within 60 minutes once the seal is removed. Figure C Figure D Step 2: Mixing SDAMLO with water and taking or giving the liquid mixture: Add 1 tablespoon (15 mL) of room temperature drinking water directly into the bottle.
(see Figure E ) Figure E Wait for 60 seconds to allow the powder to fully dissolve. You do not need to shake the bottle. (see Figure F ) Figure F After 60 seconds has passed, take or give all of the liquid mixture in the bottle.
(see Figure G ) Figure G To make sure that you take or give all of the medicine, rinse the bottle with about the same amount of water. Take or give the liquid again. Repeat 1 to 2 times until the bottle is fully rinsed and all medication has been taken.
Storing SDAMLO: Store SDAMLO at room temperature between 68° F to 77° F (20° C to 25° C). Keep SDAMLO in the bottle that it comes in. Do not store mixed SDAMLO.
Throw away SDAMLO if you do not take or give it within 60 minutes of mixing. Keep SDAMLO and all medicines away from children. Disposing of SDAMLO: Throw away (discard) the empty bottle and any unused or expired SDAMLO in your household trash, unless otherwise instructed by your pharmacist or local regulations.
Manufactured for: Pangea Pharmaceuticals, Brielle, NJ 08730 Labeler code 81279 This Instruction for Use has been approved by the U.S. Food and Drug Administration. Revised 11/2025 Figure A Figure B Figure C Figure D Figure E Figure F Figure G
📄 Package Label / Principal Display Panel ▾
PACKAGE/LABEL PRINCIPAL DISPLAY PANEL - Sdamlo TM (amlodipine) for Oral Solution - 2.5 mg/bottle NDC 81279-133-99 Rx only Single-Dose Bottle Reconstitute with water prior to use Product contains 2.5 mg of amlodipine provided as 3.47 mg amlodipine besylate Bootle 2.5mg
PACKAGE/LABEL PRINCIPAL DISPLAY PANEL - Sdamlo TM (amlodipine) for Oral Solution - 2.5 mg/bottle NDC 81279-133-10 Rx only Package Contains 10 Single-Dose Bottles Reconstitute With Water Prior to Use Each bottle contains 2.5 mg of amlodipine provided as 3.47 mg amlodipine besylate Carton 2.5mg
PACKAGE/LABEL PRINCIPAL DISPLAY PANEL - Sdamlo TM (amlodipine) for Oral Solution - 5 mg/bottle NDC 81279-134-99 Rx only Single-Dose Bottle Reconstitute with water prior to use Product contains 5 mg of amlodipine provided as 6.947 mg amlodipine besylate Bottle 5mg
PACKAGE/LABEL PRINCIPAL DISPLAY PANEL - Sdamlo TM (amlodipine) for Oral Solution - 5 mg/bottle NDC 81279-134-10 Rx only Package Contains 10 Single-Dose Bottles Reconstitute With Water Prior to Use Each bottle contains 5 mg of amlodipine provided as 6.947 mg amlodipine besylate Carton 5mg
PACKAGE/LABEL PRINCIPAL DISPLAY PANEL - Sdamlo TM (amlodipine) for Oral Solution - 10 mg/bottle NDC 81279-135-99 Rx only Single-Dose Bottle Reconstitute with water prior to use Product contains 10 mg of amlodipine provided as 13.88 mg amlodipine besylate Bottle 10mg
PACKAGE/LABEL PRINCIPAL DISPLAY PANEL - Sdamlo TM (amlodipine) for Oral Solution - 10 mg/bottle NDC 81279-135-10 Rx only Package Contains 10 Single-Dose Bottles Reconstitute With Water Prior to Use Each bottle contains 10 mg of amlodipine provided as 13.88 mg amlodipine besylate Carton 10mg
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