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Treosulfan
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Looking for Treosulfan API 299-75-2?
- Description:
- Here you will find a list of producers, manufacturers and distributors of Treosulfan. 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:
- Treosulfan
- Synonyms:
- DIHYDROXYBUSULFAN , OVASTAT , Treosulfan
- Cas Number:
- 299-75-2
- DrugBank number:
- DB11678
- Unique Ingredient Identifier:
- CO61ER3EPI
General Description:
Treosulfan, identified by CAS number 299-75-2, is a notable compound with significant therapeutic applications. Treosulfan is under investigation in Allogeneic Haematopoietic Stem Cell Transplantation. Treosulfan has been investigated for the treatment of Lymphoblastic Leukemia, Acute, Childhood.
Classification:
Treosulfan belongs to the class of organic compounds known as organosulfonic acid esters. These are esters of sulfonic acid, which have the general structure RS(=O)2OR' (R,R' = organyl, not H), classified under the direct parent group Organosulfonic acid esters. This compound is a part of the Organic compounds, falling under the Organic acids and derivatives superclass, and categorized within the Organic sulfonic acids and derivatives class, specifically within the Organosulfonic acids and derivatives subclass.
Categories:
Treosulfan is categorized under the following therapeutic classes: Alcohols, Alkanes, Alkanesulfonates, Alkanesulfonic Acids, Alkylating Drugs, Antineoplastic Agents, Antineoplastic Agents, Alkylating, Antineoplastic and Immunomodulating Agents, Butylene Glycols, Glycols, Hydrocarbons, Acyclic, Mesylates, Noxae, Sulfonic Acids, Sulfur Acids, Sulfur Compounds, Toxic Actions. These classifications highlight the drug's diverse therapeutic applications and its importance in treating various conditions.
Treosulfan is a type of Anticancer drugs
Anticancer drugs belong to the pharmaceutical API (Active Pharmaceutical Ingredient) category designed specifically to combat cancer cells. These powerful medications play a crucial role in cancer treatment and are developed to target and destroy cancerous cells, preventing their growth and spread.
Anticancer drugs are classified based on their mode of action and can include various types such as chemotherapy drugs, targeted therapy drugs, immunotherapy drugs, and hormonal therapy drugs. Chemotherapy drugs work by interfering with the cell division process, thereby inhibiting the growth of cancer cells. Targeted therapy drugs, on the other hand, are designed to attack specific molecules or genes involved in cancer growth, minimizing damage to healthy cells. Immunotherapy drugs stimulate the body's immune system to recognize and destroy cancer cells. Hormonal therapy drugs are used in cancers that are hormone-dependent, such as breast or prostate cancer, to block the hormones that fuel cancer cell growth.
These APIs are typically synthesized through complex chemical processes in state-of-the-art manufacturing facilities. Stringent quality control measures ensure the purity, potency, and safety of these drugs. Anticancer APIs undergo rigorous testing and adhere to stringent regulatory guidelines before being approved for clinical use.
Due to their critical role in cancer treatment, anticancer drugs are in high demand worldwide. Researchers and pharmaceutical companies continually strive to develop new and more effective APIs in this category to enhance treatment outcomes and minimize side effects. The ongoing advancements in the field of anticancer drug development offer hope for improved cancer therapies and better patient outcomes.