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Zytron API Manufacturers & Suppliers

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Looking for Zytron API 299-85-4?

Description:
Here you will find a list of producers, manufacturers and distributors of Zytron. 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:
Zytron 
Synonyms:
DMPA , O-(2,4-dichlorophenyl)-O-methyl-isopropylphosphoramidothioate  
Cas Number:
299-85-4 
DrugBank number:
DB11768 
Unique Ingredient Identifier:
IK51552IFH

General Description:

Zytron, identified by CAS number 299-85-4, is a notable compound with significant therapeutic applications. Zytron (DMPA) is under investigation for the treatment and health services research of HIV, Lactation, Contraception, Postpartum Depression, and Immune Cells (Mucosal and Systemic). DMPA has been investigated for the prevention, treatment, and basic science of Weight and Microbiota.

Classification:

Zytron belongs to the class of organic compounds known as dichlorobenzenes. These are compounds containing a benzene with exactly two chlorine atoms attached to it, classified under the direct parent group Dichlorobenzenes. This compound is a part of the Organic compounds, falling under the Benzenoids superclass, and categorized within the Benzene and substituted derivatives class, specifically within the Halobenzenes subclass.

Categories:

Zytron is categorized under the following therapeutic classes: Amines, Organophosphorus Compounds, Sulfur Compounds. These classifications highlight the drug's diverse therapeutic applications and its importance in treating various conditions.

Zytron is a type of Anti-HIV


The Anti-HIV category of pharmaceutical APIs comprises a range of active pharmaceutical ingredients (APIs) specifically designed to combat the human immunodeficiency virus (HIV). These APIs play a critical role in the development and production of antiretroviral drugs, which are used to treat HIV infections and prevent the progression to acquired immunodeficiency syndrome (AIDS).

Anti-HIV APIs work by targeting various stages of the HIV life cycle, inhibiting viral replication and reducing the viral load in the body. Some commonly used APIs in this category include nucleoside reverse transcriptase inhibitors (NRTIs), non-nucleoside reverse transcriptase inhibitors (NNRTIs), protease inhibitors (PIs), and integrase inhibitors (INIs).

NRTIs, such as tenofovir and emtricitabine, act by blocking the reverse transcriptase enzyme, an essential component in the replication of the virus. NNRTIs, such as efavirenz and nevirapine, bind to the reverse transcriptase enzyme, preventing its proper functioning. PIs, like ritonavir and atazanavir, inhibit the protease enzyme, crucial for viral maturation and assembly. INIs, such as raltegravir and dolutegravir, target the integrase enzyme, impeding viral integration into the host's DNA.

These APIs are carefully synthesized and undergo rigorous quality testing to ensure their safety, efficacy, and compliance with regulatory standards. Pharmaceutical companies utilize these APIs as key building blocks to formulate antiretroviral medications, which are then prescribed to individuals living with HIV/AIDS worldwide.

Overall, the Anti-HIV API category plays a vital role in the ongoing battle against HIV/AIDS, offering effective treatment options and improved quality of life for patients affected by this challenging condition.