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Home > Active Pharmaceutical Ingredients > Antibiotics (Find 23 items)
Discover various raw materials for antibiotics with CAS numbers, properties, and SDS. Source raw materials for the best antibiotic for sinus infection or pneumonia treatment. Our certified suppliers provide detailed product information, ensuring quality and efficacy. Find detailed products information and access strong antibiotics raw materials for infection.

Rifamycin sodium

(14897-39-3)
Semi-synthetic antibiotic derived from Rifamycin S. Antibacterial. Potency >900 units (dry basis).

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Radicicol

(12772-57-5)
Radicicol is a resorcylic acid lactone, produced by several fungal species, that exhibits broad spectrum antifungal and antitumor activity. Radicicol has been the subject of extensive investigation and inhibits protein tyrosine kinase, induces the differentiation of HL-60 cells into macrophages, blocks cell cycle at G1 and G2, suppresses NIH 3T3 cell transformation by diverse oncogenes such as src, ras and mos, and also suppresses the expression of mitogen-inducible cyclooxygenase-2. As a cell d

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Ravuconazole

(170864-29-6)
Ergosterol biosynthesis inhibitor. Antifungal.

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Rifalazil

(129791-92-0)
Antibacterial (antimycobacterial).

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Rifampicin quinone

(13983-13-6)
Rifampicin Quinone is a metabolite of Rifampicin (R508000). Rifampicin Quinone acts as an immunosuppressant unlike Rifampicin.

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Rokitamycin

(74014-51-0)
Macrolide antibiotics have strong anti-Cui activity against Gram-positive bacteria, anaerobic bacteria and Mycoplasma. Used for various infections caused by sensitive bacteria, such as pneumonia, mycoplasma pneumonia, otitis media, equine inflammation, periodontitis, paranasal sinusitis, subcutaneous abscess, sweat gland inflammation, laryngitis, acute bronchitis, tonsillitis boil, Erysipelas, etc.

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Antibiotic refers to a class of secondary metabolites produced by microorganisms (including bacteria, fungi, actinomyces) or higher animals and plants that have anti-pathogens or other activities during their life, and can interfere with the development of other living cells chemical material. With the widespread use and even abuse of antibiotics, antibiotic resistance is posing a threat to global health. Therefore, the development of new antibiotics is imperative, and based on different mechanisms of new antiviotics are at different stages of research and development. The rapid development of biotechnology has promoted the development of antibody drugs and antibacterial peptide drugs, and has become a new force in the field of antibiotics. The development is expected to provide a new way for the prevention and control of pathogenic microorganisms while solving antibiotic resistance. The "ECHEMI Antibiotics" list mainly supplies APIs for such drugs.

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Antibiotics, powerful medications combating bacterial infections, are vital in treating a range of bacterial illnesses. They work by inhibiting bacterial growth or destroying bacteria altogether. Various types cater to specific infections like sinusitis or pneumonia, each with different timelines on how long do antibiotics take to work. When untreated, bacterial infections can lead to severe health issues and complications.

Causes of Bacterial Infections:
Bacterial infections arise due to exposure to harmful bacteria. Common causes include:
● Contaminated food or water
● Close contact with infected individuals
● Compromised immune systems

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