Pyrazinamide API Manufacturers
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Country of origin
Established in: 1952
MOQ: 100 kg
API manufacturing (Innovators, Generics and Highly Potent)
A tailor-made and flexible service approach
State-of-the-art analytical services including solid form and QbD laboratories
Established in: 1923
MOQ: 25 kg
Global supply chain resilience
Support of your new projects from start to commercial realisation
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Looking for Pyrazinamide API 98-96-4?
- Here you will find a list of producers, manufacturers and traders of Pyrazinamide. You can sort by 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:
- Aldinamide , Pirazinamida , Pirazinamide , Pyrazinamid , Pyrazinamida , Pyrazinamide , Pyrazinamidum , Pyrazine carboxamide , pyrazine-2-carboxamide , Pyrazineamide , Pyrazinecarboxamide , Pyrazinoic acid amide , Pyrizinamide
- Cas Number:
- DrugBank number:
- Unique Ingredient Identifier:
Why are people looking for Pyrazinamide? A pyrazine that is used therapeutically as an antitubercular agent.
More information such as the structure, indication or toxicity is available on Drugbank, click the ID above.
Pyrazinamide is a type of Anti-tuberclosis agents
Anti-tuberculosis agents are a vital subcategory of pharmaceutical active pharmaceutical ingredients (APIs) used in the treatment of tuberculosis (TB), a contagious bacterial infection caused by Mycobacterium tuberculosis. These agents play a crucial role in combating TB by inhibiting the growth and spread of the bacteria.
One of the most commonly used anti-tuberculosis agents is isoniazid, which works by disrupting the synthesis of mycolic acids, essential components of the bacterial cell wall. Another important agent is rifampicin, which inhibits the RNA polymerase enzyme, thus preventing the synthesis of bacterial RNA.
Ethambutol, another widely used agent, disrupts the formation of the bacterial cell wall by inhibiting the arabinosyltransferase enzyme. Pyrazinamide, the fourth main agent, interferes with the metabolism of the bacteria, thereby inhibiting their growth.
Combination therapy involving two or more of these anti-tuberculosis agents is typically employed to achieve the most effective treatment outcomes. This approach helps prevent the development of drug resistance and enhances the bactericidal activity against TB.
The development of anti-tuberculosis agents involves rigorous research, clinical trials, and regulatory approvals. Pharmaceutical companies employ advanced technologies and strict quality control measures to ensure the safety, efficacy, and stability of these APIs.
Overall, the availability of effective anti-tuberculosis agents is crucial in the fight against TB, a global health challenge. Ongoing research and development efforts aim to improve existing agents and develop new ones, with the ultimate goal of eradicating tuberculosis worldwide.
Pyrazinamide (Anti-tuberclosis agents), classified under Antibacterials
Antibacterials, a category of pharmaceutical active pharmaceutical ingredients (APIs), play a crucial role in combating bacterial infections. These APIs are chemical compounds that target and inhibit the growth or kill bacteria, helping to eliminate harmful bacterial pathogens from the body.
Antibacterials are essential for the treatment of various bacterial infections, including respiratory tract infections, urinary tract infections, skin and soft tissue infections, and more. They are commonly prescribed by healthcare professionals to combat both mild and severe bacterial infections.
Within the category of antibacterials, there are different classes and subclasses of APIs, each with distinct mechanisms of action and target bacteria. Some commonly used antibacterials include penicillins, cephalosporins, tetracyclines, macrolides, and fluoroquinolones. These APIs work by interfering with various aspects of bacterial cellular processes, such as cell wall synthesis, protein synthesis, DNA replication, or enzyme activity.
The development and production of antibacterial APIs require stringent quality control measures to ensure their safety, efficacy, and purity. Pharmaceutical manufacturers must adhere to Good Manufacturing Practices (GMP) and follow rigorous testing protocols to guarantee the quality and consistency of these APIs.
As bacterial resistance to antibiotics continues to be a significant concern, ongoing research and development efforts aim to discover and develop new antibacterial APIs. The evolution of antibacterials plays a crucial role in combating emerging bacterial strains and ensuring effective treatment options for infectious diseases.
In summary, antibacterials are a vital category of pharmaceutical APIs used to treat bacterial infections. They are designed to inhibit or kill bacteria, and their development requires strict adherence to quality control standards. By continually advancing research in this field, scientists and pharmaceutical companies can contribute to the ongoing battle against bacterial infections.
Pyrazinamide manufacturers | traders | suppliers
We have 4 companies offering Pyrazinamide produced in 2 different countries.
Get in contact with the supplier of your choice:
- Minakem from France, product country of origin Canada
- Otto Brandes GmbH from Germany, product country of origin India
- Lupin from India, product country of origin India
- Amsal Chem from India, product country of origin India
Let the supplier know whether you are looking for a product with a specific monograph such as EP (Ph. Eur.), USP, JP, BP or another quality. Or, whether you are looking for hydrochloride (HCl), anhydricum, base, micronisatum or a specific purity.
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