Registered Rwanda · Rwanda FDA

LANTUS 10ML

Insulin Glargine

Rwanda FDA-HMP-MA-1471 Solution for injection 100 Units/ml alimentary tract and metabolism

What it does

Glargine is a long-acting insulin that helps control blood sugar levels in people with diabetes.

Commonly used for: diabetes (diabetes mellitus)

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Plain-language summary for general understanding - not medical advice. Always follow your pharmacist/doctor.

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Registration & product details

Registration no.
Rwanda FDA-HMP-MA-1471
Registration date
27/07/2024
Expiry date
26/07/2029
Status
Registered
Active ingredient
Insulin Glargine
Strength
100 Units/ml
Pack size
1 vial of 10ml
Therapeutic class
-
ATC class (WHO)
A10AB - Insulins and analogues for injection, fast-acting
RxNorm RxCUI
253182
Manufacturer / MAH
Sanofi-aventis
Country of origin
Germany
Manufacturer location
K703, Industriepark Höchst, 65929 Frankfurt am Main, Germany

Source: Rwanda Food and Drugs Authority · fetched 2026-03-11 22:07:10 · updated 2026-09-17 02:30:43

Drug Interactions

4
Check interactions

Pharmacodynamic Warnings

Insulin appears in TABLE 14: Antidiabetic drugs

Moderate (1)

Insulin - increases risk of hypoglycaemia

Metreleptin is predicted to increase the risk of hypoglycaemia when given with insulin. Monitor blood glucose and adjust dose.

Moderate Theoretical

Unknown (3)

Insulin - increases risk of hypoglycaemia

Fibrates are predicted to increase the risk of hypoglycaemia when given with insulin.

Unknown Theoretical

Insulin - increases risk of severe hypoglycaemia

Macrolides (clarithromycin) might increase the risk of severe hypoglycaemia when given with insulin.

Unknown Theoretical

Insulin - increases risk of severe hypoglycaemia

Clarithromycin might increase the risk of severe hypoglycaemia when given with insulin.

Unknown Theoretical

Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: exact

Disclaimer: This information is sourced from Rwanda Food and Drugs Authority (Rwanda). Always consult a qualified healthcare professional before using any medication.

About glargine

Glargine is a long-acting insulin that helps control blood sugar levels in people with diabetes.

What it treats

  • diabetes (diabetes mellitus)

How it works

Glargine works by allowing sugar to enter the cells, lowering the amount of sugar in the blood.

Who it's for

It is for adults and children with diabetes who need insulin to manage their blood sugar levels.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

About insulin

Insulin is a hormone used to control blood sugar levels in people with diabetes.

What it treats

  • diabetes (diabetes mellitus)

How it works

Insulin helps lower blood sugar by allowing sugar to enter the body's cells for energy.

Who it's for

This medication is for individuals with diabetes who need help managing their blood sugar levels.

Cautions

  • • Use with care if you are taking other diabetes medications.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

Clinical monograph: glargine

BNF-referenced

Insulin glargine is a long-acting insulin analogue used primarily for the management of diabetes mellitus. It is designed to provide a steady release of insulin to help maintain basal insulin levels throughout the day, mimicking the body's natural insulin production. Due to its modified structure, it has a prolonged duration of action and a flat pharmacokinetic profile, which minimizes the risk of hypoglycemia compared to shorter-acting insulins.

Indications

  • Type 1 diabetes mellitus
  • Type 2 diabetes mellitus
  • Diabetes management in adults and children

Dosage

Adults: The initial dose of insulin glargine is usually individualized based on the patient's blood glucose levels and metabolic needs. Typical starting doses may range from 10 to 20 units once daily, adjusted

Mechanism of action

Insulin glargine binds to the insulin receptor (IR), stimulating the intrinsic tyrosine kinase activity of the receptor's beta subunit. This leads to autophosphorylation of the receptor and phosphorylation of intracellular substrates, activating downstream signaling molecules such as PI3 kinase and Akt. These pathways promote glucose uptake via glucose transporter 4 (GLUT4), enhance glycogenesis, and inhibit catabolism, thereby regulating glucose metabolism. Upon subcutaneous injection, insulin glargine forms microprecipitates, allowing for a sustained release and a stable insulin concentration over 24 hours with no pronounced peak.

Pharmacodynamics

Insulin is a hormone synthesized by pancreatic beta cells, essential for glucose homeostasis. It facilitates the uptake of glucose in muscle and adipose tissues, promotes glycogenesis, and inhibits the breakdown of fat and glycogen. Insulin also stimulates protein synthesis and DNA replication, playing a crucial role in growth and metabolism. Insulin glargine's long-acting properties provide a stable insulin level, which is vital for managing blood glucose levels in diabetic patients.

Pharmacokinetics

Insulin glargine is formulated to be soluble at pH 4, with low solubility at physiological pH 7.4. After subcutaneous injection, it forms microprecipitates that release small amounts of insulin gradually, ensuring a constant concentration of the drug in the bloodstream over a 24-hour period. This results in a prolonged duration of action without peaks, contrasting with regular insulin which has a more rapid onset and shorter duration.

Contra-indications

  • Hypersensitivity to insulin glargine or any of its excipients
  • Severe hypoglycaemia
  • Diabetic ketoacidosis

Adverse effects

  • Hypoglycaemia
  • Injection site reactions
  • Weight gain
  • Allergic reactions
  • Lipodystrophy at injection sites

Interactions

  • Certain medications may affect blood glucose levels, including corticosteroids, oral contraceptives, and thyroid hormones
  • Beta-blockers may mask the signs of hypoglycaemia
  • Alcohol may potentiate or reduce the hypoglycaemic effect of insulin

Precautions

  • Caution in patients with renal or hepatic impairment
  • Monitor blood glucose levels regularly
  • Adjust dose during periods of stress, illness, or changes in activity
  • Educate patients on recognizing and treating hypoglycaemia

Pregnancy

Insulin glargine is generally regarded as safe for use during pregnancy, but blood glucose levels must be carefully monitored.

Breast-feeding

Insulin glargine can be used during breastfeeding, but blood glucose levels should be monitored closely.

Storage

Store in a refrigerator (2-8°C). Do not freeze. Once in use, can be stored at room temperature (up to 25°C) for up to 28 days.

Formulations

  • Insulin glargine 100 units/mL solution for injection

AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.

Clinical monograph: Insulin

BNF-referenced

Insulin is a peptide hormone produced by the beta cells of the pancreas that plays a crucial role in glucose metabolism. It facilitates the uptake of glucose into tissues, particularly muscle and adipose tissue, and inhibits hepatic glucose production. Insulin is used primarily in the management of diabetes mellitus, effectively lowering blood glucose levels and preventing hyperglycemia.

Indications

  • Diabetes mellitus (type 1 and type 2)
  • Diabetic ketoacidosis
  • Hyperglycemia due to other conditions
  • Management of blood glucose levels during surgery
  • Continuous subcutaneous insulin infusion therapy

Dosage

Children: For children aged 1-17 years, insulin is administered immediately before meals or when necessary shortly after meals, according to individual requirements. Specific dosing should be determined based on blood glucose monitoring and should be referred to the BNF for Children for precise guidance.

Adults: The dosage of insulin varies based on individual needs and is typically guided by blood glucose monitoring. It is recommended to consult local protocols for specific dosing instructions.

Mechanism of action

Insulin has a direct inhibitory effect on lipase, which is involved in the mobilization of fatty acids. In the absence of insulin, there is an abnormally high rate of conversion of protein to glucose, primarily in the liver. Insulin stimulates glycogen synthesis and enhances facilitated diffusion of glucose and the active transport of amino acids, although the exact mechanisms for these actions are not fully understood.

Pharmacodynamics

Insulin's primary pharmacodynamic effect is the reduction of blood glucose levels. It promotes the uptake of glucose by cells, increases glycogen synthesis in the liver, and inhibits gluconeogenesis. Insulin also influences lipid metabolism by inhibiting lipolysis and encouraging fat storage. Additionally, insulin enhances protein synthesis by promoting amino acid uptake into cells.

Pharmacokinetics

Insulin is administered by injection and is rapidly absorbed into the bloodstream. Its onset, peak, and duration of action depend on the formulation used (e.g., rapid-acting, short-acting). The half-life of insulin is typically around 5 to 10 minutes, but its effects can last several hours depending on the formulation. It is metabolized primarily in the liver and kidneys.

Contra-indications

  • Hypersensitivity to insulin or any of its excipients
  • Hypoglycemia

Adverse effects

  • Hypoglycemia
  • Injection site reactions
  • Weight gain
  • Allergic reactions
  • Edema
  • Lipodystrophy

Interactions

  • Metreleptin may increase the risk of hypoglycemia when used with insulin
  • Fibrates may increase the risk of hypoglycemia when used with insulin
  • Macrolides may increase the risk of severe hypoglycemia when used with insulin
  • Clarithromycin may increase the risk of severe hypoglycemia when used with insulin

Precautions

  • Monitor blood glucose levels regularly, especially when changing insulin preparations
  • Use caution in patients with renal impairment, as insulin clearance may be reduced
  • Patients should be advised about the risks of hypoglycemia and how to manage it
  • Should be used with caution in patients with cardiovascular disease

Pregnancy

Insulin is generally considered safe for use during pregnancy, but dosages may need to be adjusted.

Breast-feeding

Insulin is compatible with breastfeeding; insulin does not pass into breast milk in significant amounts.

Storage

Store unopened vials or pens in a refrigerator (2-8°C). Once opened, insulin can be stored at room temperature (below 25°C) for up to 28 days, depending on the formulation.

Formulations

  • Insulin human 500 units/ml solution for injection
  • Insulin human 100 units/ml solution for injection
  • Insulin porcine 100 units/ml solution for injection
BNF 85 (British National Formulary) p.813 BNF for Children 2019-2020 p.493 PubChem / pathway

AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.

Molecular reference: glargine

PubChem CID 118984454

Molecular formula: C267H404N72O78S6

Mechanism of action

Insulin glargine binds to the insulin receptor (IR), a heterotetrameric protein consisting of two extracellular alpha units and two transmembrane beta units. The binding of insulin to the alpha subunit of IR stimulates the tyrosine kinase activity intrinsic to the beta subunit of the receptor. The bound receptor autophosphorylates and phosphorylates numerous intracellular substrates such as insulin receptor substrates (IRS) proteins, Cbl, APS, Shc and Gab 1. Activation of these proteins leads to the activation of downstream signalling molecules including PI3 kinase and Akt. Akt regulates the activity of glucose transporter 4 (GLUT4) and protein kinase C (PKC), both of which play critical roles in metabolism. Insulin glargine is completely soluble at pH 4, the pH of administered solution, and has low solubility at physiological pH 7.4. Upon subcuteous injection, the solution is neutralized resulting in the formation of microprecipitates. Small amounts of insulin glargine are released from microprecipitates giving the drug a relatively constant concentration over time profile over 24 hours with no pronounced peak. This release mechanism allows the drug to mimic basal insulin levels within the body.

Pharmacodynamics

Insulin is a natural hormone produced by beta cells of the pancreas. In non-diabetic individuals, the pancreas produces a continuous supply of low levels of basal insulin along with spikes of insulin following meals. Increased insulin secretion following meals is responsible for the metabolic changes that occur as the body transitions from a postabsorptive to absorptive state. Insulin promotes cellular uptake of glucose, particularly in muscle and adipose tissues, promotes energy storage via glycogenesis, opposes catabolism of energy stores, increases DNA replication and protein synthesis by stimulating amino acid uptake by liver, muscle and adipose tissue, and modifies the activity of numerous enzymes involved in glycogen synthesis and glycolysis. Insulin also promotes growth and is required for the actions of growth hormone (e.g. protein synthesis, cell division, DNA synthesis). Insulin glargine is a long-acting insulin analogue with a flat and predictable action profile. It is used to mimic the basal levels of insulin in diabetic individuals.

Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.

Molecular reference: Insulin

PubChem CID 70678557

Molecular formula: C256H381N65O77S6

Mechanism of action

INSULIN HAS DIRECT INHIBITORY EFFECT ON LIPASE CONCERNED WITH MOBILIZATION OF FATTY ACIDS, WHILE GROWTH HORMONE, GLUCOCORTICOIDS, THYROID HORMONES & CATECHOLAMINES ENHANCE LIPOLYSIS. IN ABSENCE OF INSULIN THERE IS ABNORMALLY HIGH RATE OF CONVERSION OF PROTEIN TO GLUCOSE. ... PROTEINS & AMINO ACIDS ARE CONVERTED TO GLUCOSE @ ABNORMALLY HIGH RATE IN INSULIN DEFICIENCY. THE LIVER IS SITE OF CONVERSION. PROTEIN & AMINO ACIDS ARE MOBILIZED FROM PERIPHERAL TISSUES. INSULIN ACTS TO.../STIMULATE/ GLYCOGEN SYNTHESIS. MECHANISM OF IMPORTANT ACTIONS OF INSULIN TO ENHANCE FACILITATED DIFFUSION OF GLUCOSE & ACTIVE TRANSPORT OF AMINO ACIDS ARE NOT KNOWN.

Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.

This drug in other countries

The same active ingredient registered across other registries we cover - including different brands.