Catalog No.
Product Name
Application
Product Information
Citations
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Antibiotic
Napsamycin A is an antibiotic that primarily exhibits antibacterial activity against Pseudomonas aeruginosa and other Pseudomonas species. Its efficacy is limited against a range of Gram-positive and other Gram-negative bacteria. This compound is valuable for research applications focused on bacterial infections and the study of antibiotic resistance mechanisms. -
Antibiotic
Dactylocycline B is an antibiotic that exhibits potent activity against gram-positive bacteria, including strains resistant to tetracycline. Its unique mode of action interferes with bacterial protein synthesis, making it a valuable tool in studying antibiotic resistance and bacterial pathogenesis. Dactylocycline B may also aid in the development of novel therapeutic strategies against challenging bacterial infections. -
Antibiotic
Inosamycin A is a broad-spectrum antibiotic that functions by inhibiting bacterial protein synthesis. It exhibits significant antibacterial activity against a variety of gram-positive and gram-negative pathogens. This compound is valuable for research applications in microbial resistance studies and the development of novel antimicrobial therapies. -
Antibiotic
Auramycin B is an anthracycline antibiotic primarily targeting Gram-positive bacteria. It demonstrates significant antibacterial activity and has also been shown to exhibit antitumor effects against P388 and L1210 leukemia cell lines in murine models. This compound is valuable for research applications focused on antibiotic efficacy and cancer therapeutics. -
Antibiotic
PKZ18 is an antibiotic that specifically targets glycyl-tRNA synthetase mRNA, inhibiting both transcription and translation in bacterial cells. It demonstrates potent antibacterial activity against Gram-positive bacteria, with minimum inhibitory concentration (MIC) values ranging from 32 to 64 μg/mL. By selectively binding to stem I specifier loops, PKZ18 effectively reduces T-box transcriptional read-through of related genes, thus disrupting the essential codon-anticodon interaction necessary for tRNA binding. This mechanism also enhances its robustness against resistance development. -
Antibiotic
Granaticin methyl ester is a quinone antibiotic targeting bacterial cell viability. This compound exhibits significant antibacterial activity against both Gram-positive and Gram-negative bacteria, making it a valuable tool in microbiological research. Its efficacy in combating bacterial infections highlights its potential for further exploration in therapeutic applications. -
Antibiotic
Avidinorubicin is an antibiotic derived from Streptomyces avidinii, demonstrating efficacy against a range of Gram-positive and Gram-negative bacterial strains. In addition to its antibacterial properties, Avidinorubicin has been shown to inhibit thrombin-induced platelet aggregation, exhibiting an IC50 of 7.9 μM. This compound is suitable for research applications focused on antibiotic development and the study of platelet biology. -
Antibiotic
Thiotropocin is a tropothione antibiotic that exhibits antibacterial activity against a range of Gram-positive and Gram-negative bacteria, as well as some phytopathogens and mycoplasma. It induces morphological changes in Proteus mirabilis and Escherichia coli, making it a valuable tool for studying bacterial behavior and resistance mechanisms. This compound is applicable in research focused on antibiotic efficacy and bacterial pathogenesis. -
Antibiotic
Pyloricidin C is an antibiotic targeting Helicobacter pylori, originally isolated from Bacillus sp. HC-70. This compound exhibits potent antibacterial activity, making it a valuable tool for research focused on H. pylori-related infections and resistance mechanisms. Its unique mode of action contributes to its potential applications in the development of novel antimicrobial therapies. -
Antibiotic
Pyrromycin is an antibiotic that specifically targets Gram-positive bacteria by inhibiting protein synthesis. It demonstrates potent antibacterial activity, making it suitable for research applications in microbiology and pharmacology. This compound is valuable for studying bacterial resistance mechanisms and evaluating potential therapeutic options against Gram-positive infections. -
Antibiotic
Pyralomicin 2b is an antibiotic that exerts its antimicrobial effects by inhibiting bacterial growth. It demonstrates significant antibacterial activity against various Gram-positive and Gram-negative bacteria, making it a valuable tool in research related to infectious diseases and antibiotic resistance. Its mechanism of action can be explored further in pharmacological studies and drug development efforts. -
Antibiotic
Sakyomicin C is a benzoquinone antibiotic that targets bacterial cell function. It exhibits potent activity against Gram-positive bacteria and mycobacteria, making it a valuable reagent for research in antimicrobial resistance and the development of new antibiotic therapies. Its unique mechanism of action and broad-spectrum efficacy support its use in studies focused on bacterial pathogenesis and treatment approaches. -
Antibiotic
Bottromycin A2 is a natural antibiotic that inhibits bacterial protein synthesis by targeting the ribosomal machinery. It demonstrates significant activity against methicillin-resistant Staphylococcus aureus (MRSA) and vancomycin-resistant Enterococci (VRE). This compound is valuable for research applications focused on combating antibiotic resistance and understanding the mechanisms of action in bacterial infections. -
Antibiotic
Plicacetin is a crystalline antibiotic derived from the fermentation broth of Streptomyces actinomycetes. It exhibits antibacterial properties through its ability to inhibit protein synthesis, making it relevant for research in antimicrobial resistance and therapeutic development. Its structural similarity to other antibiotics, such as Amicetin, positions it as a valuable compound for further exploration of antibiotic mechanisms and efficacy in bacterial infections. -
Antibiotic
Dechloromycorrhizin A is an antibiotic that primarily targets bacteria and has demonstrated weak activity against Gram-positive bacteria, yeasts, and mildew. Additionally, it exhibits potent nematocidal activity, making it useful in research applications focused on plant diseases and nematode management. Its unique properties render it a valuable reagent for studies in microbiology and plant pathology. -
Aminoglycoside Antibiotic
Kasugamycin sulfate is an aminoglycoside antibiotic that targets the 30S and 70S ribosomal subunits, specifically inhibiting canonical translation initiation. By mimicking mRNA nucleotides, it disrupts tRNA binding, exerting effective anti-infective activity. Additionally, kasugamycin sulfate enhances the sensitivity of mycobacteria to rifampicin in vitro and in various mouse infection models, making it a valuable tool in microbial resistance research and antibiotic development studies. -
Antibiotic
Mureidomycin E is an antibiotic that targets bacterial cell wall synthesis. It exhibits potent activity against Pseudomonas aeruginosa, a common pathogen associated with various infections. This compound is valuable in research applications focused on developing new antibacterial agents and studying mechanisms of antibiotic resistance. -
Antibiotic
Leucomycin A8 is an antibiotic derived from Streptomyces kitasatoensis, exhibiting significant antibacterial activity against a range of Gram-positive bacteria. This compound is primarily employed in infection research, contributing to studies on antimicrobial resistance and the development of new therapeutic agents. Its unique mechanism of action makes it a valuable tool for exploring bacterial protein synthesis inhibition. -
Antibiotic
DA 1131 is an anionic Carbapenem antibiotic that exhibits a broad spectrum of antibacterial activity against both gram-positive and gram-negative organisms. Its unique structure renders DA 1131 resistant to degradation by various types of β-lactamases, making it a valuable tool in the study of antibiotic resistance and the treatment of bacterial infections. This compound is particularly useful in pharmacological research aimed at developing effective therapies against resistant bacterial strains. -
Antibiotic
Cefetamet sodium is a cephalosporin antibiotic that acts primarily by binding to bacterial penicillin-binding proteins (PBPs), disrupting cell wall synthesis. This compound exhibits substantial antibacterial activity against both Gram-negative bacteria, including Enterobacteriaceae, Neisseria species, and Haemophilus influenzae, and Gram-positive bacteria such as Streptococcus. Additionally, Cefetamet sodium is effective in lysing Treponema pallidum. It is utilized in research focused on infections of the respiratory tract, urinary tract, and ear, nose, and throat, as well as in studies related to syphilis. -
Antibiotic
Mycinamicin III is an ester peptide antibiotic that demonstrates activity against Gram-positive bacteria. Its mechanism of action involves inhibiting protein synthesis, making it valuable for research applications in studying bacterial resistance and antibiotic efficacy. Mycinamicin III is useful in the development of new antibacterial agents and for investigating microbial interactions. -
Antibiotic
Lactaroviolin is an aromatic derivative antibiotic that primarily targets bacterial cell growth. It exhibits inhibitory activity against Mycobacterium tuberculosis, although its efficacy may be modest. This compound serves as a valuable tool for research in the development of novel antimicrobial strategies and understanding antibiotic resistance mechanisms in mycobacterial species. -
Antibiotic
Pneumocandin A3 is a lipopeptide antibiotic that primarily targets fungal cell wall biosynthesis. It exhibits potent anti-Candida activity, effectively inhibiting 1,3-β-glucan synthesis in vitro, with an IC50 range of 0.07-0.5 μg/mL. This compound is vital for research applications focused on antifungal drug development and the investigation of fungal resistance mechanisms. -
Antibiotic
Spectinomycin sulfate is an aminocyclitol aminoglycoside antibiotic that targets bacterial protein synthesis, derived from Streptomyces spectabilis. It exhibits bacteriostatic activity, making it effective against various bacterial infections. This compound is primarily utilized in microbiological research and clinical applications to study antibiotic resistance and the mechanisms of bacterial cell growth inhibition. -
Antibiotic
SCH 34343 is a penem antibiotic that demonstrates potent antibacterial activity against Streptococcus pneumoniae, with a minimum inhibitory concentration (MIC50) of ≤ 0.015 mg/L. It exhibits similar efficacy against viridans streptococci and multiple groups of streptococci, including A, B, C, and G, with MIC50 values ranging from 0.03 to 0.06 mg/L. This compound is suitable for antibacterial research, providing valuable insights into antibiotic efficacy and resistance mechanisms. -
Antitumor Antibiotic
Pluraflavin A is an antitumor antibiotic that primarily functions by inhibiting the transcription of the glucose-6-phosphatase gene. This compound exhibits significant anti-proliferative activity against tumor cells, making it a valuable tool for cancer research. Its mechanism of action positions it as a candidate for studies focused on tumor biology and potential therapeutic interventions. -
Antibiotic
Guamecycline is a semisynthetic tetracycline that targets bacterial ribosomes to inhibit protein synthesis. It exhibits a broad spectrum of antibacterial activity comparable to that of tetracycline. This compound is utilized in research applications involving microbial resistance studies, particularly in understanding the mechanisms of antibiotic efficacy and in developing novel antimicrobial therapies. -
Antibiotic
11-Deacetoxywortmannin is an antibiotic that targets fungal pathogens, derived from Aspergillus janus and Penicillium funiculosum. It exhibits potent antifungal and anti-inflammatory properties, making it valuable in research focused on managing fungal infections and inflammatory conditions. Additionally, its anti-edema effects contribute to its potential therapeutic applications in various biomedical studies. -
Antibiotic
Monamycin H1 is an ester peptide antibiotic that primarily targets Gram-positive bacteria. It exhibits potent antimicrobial activity, making it a valuable resource for research applications focused on bacterial infections and resistance mechanisms. Monamycin H1 can be utilized in studies investigating antibiotic efficacy and developmental pharmacology. -
Antibiotic
1-Deamino-1-hydroxygentamicin C1a is an aminoglycoside antibiotic that exhibits potent activity against both Gram-positive and Gram-negative bacteria. This compound functions by inhibiting bacterial protein synthesis, making it a valuable tool for studying bacterial resistance mechanisms and antibiotic efficacy. Its antimicrobial properties make it suitable for research applications focusing on infectious diseases and antibiotic development. -
Antibiotic
Viomycin is a potent antibiotic specifically targeting Mycobacteria. It acts by rapidly inhibiting polypeptide chain elongation during protein synthesis in bacterial ribosomes, particularly within purified Escherichia coli polysomes. Viomycin is primarily utilized in research focused on mycobacterial infections and the mechanisms of antibiotic resistance. -
Antibiotic
Mureidomycin D is an antibiotic that exhibits potent activity against Pseudomonas aeruginosa. This compound targets bacterial cell wall synthesis, disrupting the growth of pathogenic strains. Mureidomycin D is utilized in research applications focused on combating antibiotic-resistant infections and studying the mechanisms of bacterial resistance. -
Antibiotic
Endophenazine D is a phenazine antibiotic that exerts its antimicrobial effects through interference with DNA synthesis and cellular respiration. This compound demonstrates significant activity against a range of bacterial strains, making it an important tool in microbiological research. Its applications include studying antibiotic resistance mechanisms and evaluating potential therapeutic strategies in infectious disease models. -
Antibiotic
Cefluprenam is a β-lactam antibiotic that targets bacterial cell wall synthesis, exhibiting broad-spectrum antibacterial activity. This compound is effective against a range of Gram-positive and Gram-negative organisms, making it suitable for research in antibiotic resistance and bacterial infection studies. Cefluprenam serves as a valuable tool in microbiological applications aimed at understanding and combating bacterial pathogens. -
Antibiotic
Lipohexin is a peptide antibiotic that targets Gram-positive bacteria. It exhibits significant antibacterial activity, as evidenced by its competitive inhibition of human placental proline endopeptidase, with an IC50 of 3.5 μM. Additionally, Lipohexin inhibits proline endopeptidase from Flavobacterium meningoseptica, with an IC50 of 25 μM, making it a valuable reagent for research in antibiotic development and enzyme inhibition studies. -
Antibiotic
Arylomycin B7 is a lipohexapeptide antibiotic that targets Gram-positive bacteria. It exhibits potent antibacterial activity by inhibiting bacterial protein synthesis. This compound is valuable for research into antibiotic mechanisms and the development of new therapeutic agents against resistant pathogens. -
Antibiotic
Dynemicin O is an antibiotic that exerts potent activity against Gram-positive bacteria. Its mechanism involves disruption of bacterial DNA synthesis, making it a valuable tool for studying bacterial resistance and efficacy in antibiotic development. Researchers can utilize Dynemicin O in microbiological studies to better understand the therapeutic potential and limitations of antimicrobial agents. -
Antibiotic
Napsamycin B is an antibiotic known for its selective antibacterial activity against Pseudomonas aeruginosa and various other Pseudomonas species. While it demonstrates limited effectiveness against other Gram-positive and Gram-negative bacteria, Napsamycin B's specificity makes it a valuable reagent for studying Pseudomonas infections and exploring antibiotic mechanisms in related research applications. -
Antibiotic
3-O-Demethyl-2'-N-glylfortimicin B is an aminoglycoside antibiotic that primarily targets bacterial ribosomes, inhibiting protein synthesis. This compound exhibits broad-spectrum antibacterial activity, making it valuable in research applications aimed at studying bacterial resistance mechanisms and the pharmacodynamics of aminoglycoside antibiotics. Its unique structural modifications further enhance its stability and efficacy against various pathogenic strains. -
Antibiotic
Argimicin B is an antibiotic derived from Sphingomonas sp., exhibiting potent algicidal activity against various toxic cyanobacteria. With a minimum inhibitory concentration (MIC) in the low micromolar range, it serves as an effective agent for studying cyanobacterial blooms and their ecological impacts. Its unique mode of action makes Argimicin B a valuable tool in environmental microbiology and phytoplankton research applications. -
Antibiotic
Dynemicin P is a potent antibiotic primarily targeting bacterial cell wall synthesis. It exhibits significant antibacterial activity, making it valuable for research applications focused on studying gram-positive bacterial infections. Its unique mechanism of action provides insights into antibiotic resistance and the development of new therapeutic strategies. -
Antibiotic
Pacidamycin D is an antibiotic that specifically targets Pseudomonas aeruginosa. It exhibits antimicrobial activity with a minimum inhibitory concentration (MIC) ranging from 4 to 16 μg/mL against this strain. However, it shows no efficacy against other Gram-negative and Gram-positive bacteria, including drug-resistant variants of Pseudomonas aeruginosa. This compound is useful for research applications focused on bacterial resistance mechanisms and the development of targeted antibiotic therapies. -
Antibiotic
1-Deamino-1-hydroxygentamicin C2 is an aminoglycoside antibiotic that targets bacterial ribosomes to inhibit protein synthesis. This compound exhibits antibacterial activity against both Gram-positive and Gram-negative bacteria, making it valuable in microbiological research. It is utilized in studies investigating antibiotic resistance and evaluating therapeutic efficacy in bacterial infections. -
Antibiotic Adjuvant
Antibiotic Adjuvant 3 is a potent colistin-potentiating agent that enhances the efficacy of antibiotics against resistant strains. This compound demonstrates a minimum re-sensitizing concentration of 0.25 μg/mL against Escherichia coli AR-0493, while maintaining low toxicity in mammalian systems. It is particularly valuable in research applications focused on combating antibiotic resistance and improving therapeutic outcomes. -
Antibiotic
Cefmenoxime sodium is a semisynthetic cephalosporin antibiotic that targets bacterial cell wall synthesis. It exhibits antibacterial activity against a broad spectrum of both gram-positive and gram-negative bacteria. This compound is primarily utilized in microbiological studies and therapeutic applications to combat bacterial infections. -
Antibiotic
Leucomycin U is a macrolide antibiotic targeting bacterial protein synthesis. This compound exhibits potent activity against Gram-positive bacteria and also shows efficacy against spirochetes, Rickettsia, and Chlamydia. It is suitable for use in microbial research and the study of bacterial resistance mechanisms. -
Antibiotic
Mannosyl glucosaminide is an aminoglycoside antibiotic that targets bacterial ribosomes, disrupting protein synthesis. It exhibits antibacterial activity against various strains, including mycobacteria and yeast, making it valuable for research in antimicrobial treatments. This compound can be applied in studies investigating the mechanisms of antibiotic resistance and the development of new therapeutic strategies. -
Antitumor Antibiotic
Dioxolamycin is an antitumor antibiotic that selectively targets cancer cell activity, particularly in L-1210 cells. It demonstrates significant cytotoxic effects, making it a valuable tool in cancer research and the development of novel therapeutic strategies. Its mechanism of action involves interfering with cellular processes essential for tumor growth and survival, positioning it as a critical compound in the study of antitumor agents. -
Antibiotic
Katanosin A is a peptide antibiotic that targets Gram-positive bacteria. It exhibits potent antimicrobial activity, making it a valuable tool for research in the study of antibiotic resistance mechanisms and the development of new antimicrobial therapies. Katanosin A is particularly useful in exploring the efficacy of peptide-based antibiotics in clinical applications. -
Antibiotic
Epithienamycin D is a carbapenem antibiotic that exhibits broad-spectrum antibacterial activity. It is effective against both Gram-positive and Gram-negative bacteria, making it a valuable tool in microbiological research. This compound can be utilized in studies focused on antibiotic resistance and the development of new antimicrobial therapies.

