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Rubitecan API Manufacturers & Suppliers

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Looking for Rubitecan API 91421-42-0?

Description:
Here you will find a list of producers, manufacturers and distributors of Rubitecan. 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:
Rubitecan 
Synonyms:
1H-PYRANO(3',4':6,7)INDOLIZINO(1,2-B)QUINOLINE-3,14(4H,12H)-DIONE, 4-ETHYL-4-HYDROXY-10-NITRO-, (4S)- , 9-NC , 9-nitro-(20S)-camptothecin , 9-nitro-20-(S)-camptothecin , 9-nitro-20(S)-camptothecin , 9-nitrocamptothecin , 9NC , Rubitecán , Rubitécan , Rubitecanum  
Cas Number:
91421-42-0 
DrugBank number:
DB06159 
Unique Ingredient Identifier:
H19C446XXB

General Description:

Rubitecan is a chemical compound identified by the CAS number 91421-42-0. It is known for its distinct pharmacological properties and applications.

Indications:

This drug is primarily indicated for: Investigated for use/treatment in pancreatic cancer, leukemia (unspecified), melanoma, ovarian cancer, and cancer/tumors (unspecified). Its use in specific medical scenarios underscores its importance in the therapeutic landscape.

Mechanism of Action:

Rubitecan functions by: Rubitecan prevents DNA from unwinding during replication via DNA topoisomerase 1, therefore interfering with tumor growth. This mechanism highlights the drug's role in inhibiting or promoting specific biological pathways, contributing to its therapeutic effects.

Categories:

Rubitecan is categorized under the following therapeutic classes: Alkaloids, Antineoplastic Agents, Enzyme Inhibitors, Topoisomerase I Inhibitors, Topoisomerase Inhibitors. These classifications highlight the drug's diverse therapeutic applications and its importance in treating various conditions.

Rubitecan is a type of Antineoplastics


Antineoplastics are a crucial category of pharmaceutical active pharmaceutical ingredients (APIs) primarily used in the treatment of cancer. These powerful substances inhibit or destroy the growth of cancer cells, thus impeding the progression of malignancies.

Antineoplastics exert their therapeutic effects through various mechanisms. Some APIs interfere with DNA replication, inhibiting the division and proliferation of cancer cells. Others target specific proteins or enzymes involved in tumor growth, effectively blocking their function. Additionally, certain antineoplastic agents induce programmed cell death, known as apoptosis, in cancer cells.

These APIs find application in a wide range of cancer treatments, including chemotherapy, targeted therapy, immunotherapy, and hormone therapy. They are often administered in combination with other drugs to optimize therapeutic outcomes and minimize drug resistance.

Antineoplastics are typically synthesized through complex chemical processes, ensuring high purity and potency. Stringent quality control measures are implemented throughout manufacturing to meet regulatory standards and ensure patient safety.

Although antineoplastics offer significant benefits in treating cancer, they can also cause adverse effects due to their cytotoxic nature. Common side effects include bone marrow suppression, gastrointestinal disturbances, hair loss, and immune system suppression. Close monitoring and supportive care are essential to manage these side effects effectively.

In conclusion, antineoplastics are a vital category of pharmaceutical APIs used in the treatment of cancer. Through their diverse mechanisms of action, these compounds play a critical role in combating malignancies and improving patient outcomes.