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Home > Active Pharmaceutical Ingredients > Antibiotics (Find 11 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.

Bacitracin

(1405-87-4)
Bacitracin is a peptide antibiotic effective against gram-postive bacteria. Bacitracin is an inhibitor of peptidoglycan synthesis. Bacitracin disrupts bacterial cell wall synthesis by inhibiting dephosphorylation of lipid pyrophosphate. Bacitracin also strongly inhibits proline endopeptidase from human muscle.

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Bacitracin Zinc

(1405-89-6)
Bacitracin zinc is a dephosphorylation of the C55-isoprenyl pyrophosphate interference for inhibition of cleavage of Tyr from Met-enkephalin with IC50 of 10 μM.

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Benzathine penicillin

(1538-09-6)
Benzathine benzylpenicillin is used as a Penicillin antibacterial. Since penicillin G benzathine, N,N'-dibenzylethylenediaminedipenicillin G (Bicillin, Permapen), is the salt of a diamine,2 moles of penicillin are available from each molecule. It isvery insoluble in water, requiring about 3,000 mL to dissolve1 g. This property gives the compound great stabilityand prolonged duration of effect. At the pH of gastric juice,it is quite stable, and food intake does not interfere with itsabsorption.

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Brefeldin A

(20350-15-6)
Brefeldin A (BFA) is a natural fungal metabolite which has been used extensively to study intracellular transport by vesicles or endosomes. Early studies demonstrated that BFA reversibly interferes with protein trafficking and secretion mediated by the Golgi apparatus and endoplasmic reticulum. BFA directly and reversibly inhibits Sec7 domain-containing guanine-exchange factors which are necessary for ADP-ribosylation factor activation associated with vesicular transport (IC50 = ~10 μM). BFA is

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Bacampicillin

(50972-17-3)
Bacampicillin is a penicillin antibiotic, is a prodrug of ampicillin with improved oral bioavailability.

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Blasticidin S

(2079-00-7)
Blasticidin S is a nucleoside produced by several species of Streptomyces, first reported in the late 1950s. Blasticidin S is an antifungal agent with particularly potent activity against the rice pathogen, Piricularia oryzae, for which it was used commercially for some time in Japan. Blasticidin S inhibits protein synthesis and is active against bacteria, tumor cell lines and nematodes. More recently, blasticidin S has been used as a marker for strain manipulations. Blasticidin S provided by Bi

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Borrelidin

(7184-60-3)
Borrelidin is a secondary metabolite produced by Streptomyces and other bacteria. It displays potent antiangiogenic activity, preventing tube formation in rat aorta explants (IC50 = 0.8 nM) and inducing apoptosis in endothelial cells. Borrelidin also alters the splicing of VEGF mRNA, producing an antiangiogenic isoform of the growth factor. It has long been known as a powerful inhibitor of both eukaryotic and bacterial threonyl tRNA synthetase. Borrelidin is also an effective anti-malarial drug,

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Bacampicillin-hydrochloride

(37661-08-8)
Bacampicillin is a penicillin class of antibiotic. Bacampicillin is a prodrug of ampicillin (A634300) with improved oral bioavailability.

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Bialaphos

(35597-43-4)
ChEBI: A tripeptide comprising one L-phosphinothricyl and two L-alanyl units joined in sequence.

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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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