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Insulin Human API Manufacturers
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Date | Seller | Exporter country | Buyer | Importer country | Product | Quantity (KG) | Price per KG | Latest transactions |
---|---|---|---|---|---|---|---|---|
30-Aug-2024 | (Hidden) | India | M S LIFE T... | United States | INSULIN HU... | 8.55 | $ @36$-7! | Check all data |
30-Aug-2024 | (Hidden) | India | M S LIFE T... | United States | INSULIN HU... | 1.48 | $ @36$-7! | |
30-Aug-2024 | (Hidden) | India | M S LIFE T... | United States | INSULIN HU... | 9 | $ @36$-7! |
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Looking for Insulin Human API 11061-68-0?
- Description:
- Here you will find a list of producers, manufacturers and distributors of Insulin Human. You can filter on certificates such as GMP, FDA, CEP, Written Confirmation and more. Send inquiries for free and get in direct contact with the supplier of your choice.
- API | Excipient name:
- Insulin Human
- Synonyms:
- Inhaled insulin , Insulin (human) , Insulin human [rDNA origin] , Insulin Human Regular , Insulin Recombinant Human , Insulin Recombinant Purified Human , Insulin regular , Regular Insulin , human
- Cas Number:
- 11061-68-0
- DrugBank number:
- DB00030
- Unique Ingredient Identifier:
- 1Y17CTI5SR
About Insulin Human
Learn more about Insulin human. Human Insulin, also known as Regular Insulin, is a short-acting form of insulin used for the treatment of hyperglycemia caused by Type 1 and Type 2 Diabetes. Human insulin is produced by recombinant DNA technology and is identical to endogenously produced insulin. Typically prescribed for the management of diabetes mellitus, insulin is a peptide hormone produced by beta cells of the pancreas that promotes glucose metabolism.
Insulin is released from the pancreas following a meal to promote the uptake of glucose from the blood into internal organs and tissues such as the liver, fat cells, and skeletal muscle. Absorption of glucose into cells allows for its transformation into glycogen or fat for storage. Insulin also inhibits hepatic glucose production, enhances protein synthesis, and inhibits lipolysis and proteolysis among many other functions. Insulin is an important treatment in the management of Type 1 Diabetes (T1D) which is caused by an autoimmune reaction that destroys the beta cells of the pancreas, resulting in the body not being able to produce or synthesize the insulin needed to manage circulating blood sugar levels.
As a result, people with T1D rely primarily on exogenous forms of insulin to lower glucose levels in the blood. Insulin is also used in the treatment of Type 2 Diabetes (T2D), another form of diabetes mellitus that is a slowly progressing metabolic disorder caused by a combination of genetic and lifestyle factors that promote chronically elevated blood sugar levels. Without treatment or improvement in non-pharmacological measures such as diet and exercise to lower blood glucose, high blood sugar eventually causes cellular resistance to endogenous insulin, and in the long term, damage to pancreatic islet cells.
You can ask the supplier about all relevant certificates for the product such as CoA, Safety Data Sheet and DMF.
Insulin Human is a type of Insulin
Insulin is a vital pharmaceutical Active Pharmaceutical Ingredient (API) that plays a crucial role in managing diabetes. It is a hormone produced by the pancreas and is responsible for regulating blood sugar levels in the body. Insulin is used extensively in the treatment of diabetes, a chronic condition characterized by insufficient insulin production or impaired insulin action.
As an API, insulin is available in various forms, including human insulin and analog insulin. Human insulin is derived from recombinant DNA technology, where it is synthesized using genetically engineered bacteria or yeast. Analog insulin, on the other hand, is a modified version of human insulin that is designed to mimic the body's natural insulin action more closely.
Insulin APIs are utilized in the production of pharmaceutical formulations such as insulin injections, insulin pens, and insulin pumps. These formulations are essential for individuals with diabetes who require regular insulin administration to maintain proper blood sugar control.
The development and production of insulin APIs require stringent quality control measures to ensure their safety and efficacy. Manufacturing processes must adhere to Good Manufacturing Practices (GMP) to guarantee the purity, potency, and consistency of the API. Additionally, regulatory bodies such as the Food and Drug Administration (FDA) closely monitor the production and distribution of insulin APIs to maintain high standards of quality and patient safety.
In summary, insulin APIs are critical components in the management of diabetes. They are manufactured using advanced biotechnological methods and are utilized in the production of various insulin formulations. Rigorous quality control and regulatory compliance are essential to ensure the effectiveness and safety of insulin APIs for patients with diabetes.
Insulin Human (Insulin), classified under Anti-diabetics
Anti-diabetics, belonging to the pharmaceutical API (Active Pharmaceutical Ingredient) category, are a group of compounds designed to manage and treat diabetes mellitus, a chronic metabolic disorder characterized by high blood sugar levels. These medications play a vital role in controlling diabetes and preventing complications associated with the disease.
Anti-diabetics encompass a wide range of drug classes, including biguanides, sulfonylureas, thiazolidinediones, dipeptidyl peptidase-4 (DPP-4) inhibitors, sodium-glucose cotransporter-2 (SGLT2) inhibitors, and glucagon-like peptide-1 (GLP-1) receptor agonists. Each class works through different mechanisms to regulate blood sugar levels and improve insulin sensitivity.
Biguanides, such as metformin, reduce glucose production by the liver and enhance insulin sensitivity in peripheral tissues. Sulfonylureas, like glipizide, stimulate insulin secretion from pancreatic beta cells. Thiazolidinediones, including pioglitazone, improve insulin sensitivity in muscle and adipose tissues. DPP-4 inhibitors, such as sitagliptin, increase insulin release and inhibit glucagon secretion. SGLT2 inhibitors, like dapagliflozin, decrease renal glucose reabsorption, leading to increased urinary glucose excretion. GLP-1 receptor agonists, such as exenatide, enhance insulin secretion, suppress glucagon release, slow gastric emptying, and promote satiety.
These anti-diabetic APIs serve as the foundational ingredients for the formulation of various oral tablets, capsules, and injectable medications used in the treatment of diabetes. By targeting different aspects of glucose regulation, they help patients achieve and maintain optimal blood sugar levels, thus reducing the risk of diabetic complications, such as cardiovascular disease, neuropathy, and nephropathy.
It is crucial for healthcare professionals to prescribe and administer these anti-diabetic medications appropriately, considering factors like the patient's medical history, co-existing conditions, and potential drug interactions. Regular monitoring of blood glucose levels and close medical supervision are necessary to ensure effective diabetes management.
In conclusion, anti-diabetics form a critical category of pharmaceutical APIs used for the treatment of diabetes. These compounds, encompassing various drug classes, work through distinct mechanisms to regulate blood sugar levels and improve insulin sensitivity. By facilitating glucose control, anti-diabetic APIs help mitigate the risk of complications associated with diabetes mellitus, ultimately promoting better health outcomes for patients.
Insulin Human manufacturers | traders | suppliers
We have 3 companies offering Insulin Human produced in 2 different countries.
Get in contact with the supplier of your choice:
- Biocon from India, product country of origin India
- Eli Lilly And Company from United States, product country of origin United States
- Medilux Labs from India, product country of origin India
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