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Founded in:
1962-12-27 -
Country:
China -
Address:
No. 48, North Industrial Avenue, Haizhu District, Guangzhou -
Tax NO.:
9144010119046020XE -
Registered Funds:
46.091897 yuan -
Website:
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Email:
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| MICRONOMICIN SULFATE |
This product is an aminoglycoside antibiotic. The antibacterial spectrum is similar to that of gentamicin. It has antibacterial effects on Gram-negative bacteria such as Escherichia coli, aerogenes, Klebsiella, Proteus mirabilis, some indole-positive Proteus, Pseudomonas aeruginosa, some Neisseria, some non-pigmented Serratia and Shigella. Among Gram-positive bacteria, Staphylococcus aureus (including β-lactamase-producing strains) is sensitive to this product; Streptococci (including Streptococcus pyogenes, Pneumococcus, Streptococcus faecalis, etc.) are all resistant to this product. Anaerobic bacteria (Bacteroides), Mycobacterium tuberculosis, Rickettsia, viruses and fungi are also resistant to this product. This product is stable to aminoglycoside acetyltransferase AAC (6') produced by bacteria, so it still has antibacterial activity against bacteria that are resistant to kanamycin, gentamicin, amikacin, ribosomycin, etc. due to the production of this enzyme. The minimum inhibitory concentration of this product is 0.1-6.25 mg/L. The mechanism of action of this product is to bind to the bacterial ribosome 30S subunit and inhibit the synthesis of bacterial protein.
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This product is an aminoglycoside antibiotic. The antibacterial spectrum is similar to that of gentamicin. It has antibacterial effects on Gram-negative bacteria such as Escherichia coli, aerogenes, Klebsiella, Proteus mirabilis, some indole-positive Proteus, Pseudomonas aeruginosa, some Neisseria, some non-pigmented Serratia and Shigella. Among Gram-positive bacteria, Staphylococcus aureus (including β-lactamase-producing strains) is sensitive to this product; Streptococci (including Streptococcus pyogenes, Pneumococcus, Streptococcus faecalis, etc.) are all resistant to this product. Anaerobic bacteria (Bacteroides), Mycobacterium tuberculosis, Rickettsia, viruses and fungi are also resistant to this product. This product is stable to aminoglycoside acetyltransferase AAC (6') produced by bacteria, so it still has antibacterial activity against bacteria that are resistant to kanamycin, gentamicin, amikacin, ribosomycin, etc. due to the production of this enzyme. The minimum inhibitory concentration of this product is 0.1-6.25 mg/L. The mechanism of action of this product is to bind to the bacterial ribosome 30S subunit and inhibit the synthesis of bacterial protein. |
66803-19-8 | 3 |
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Pyrazinamide |
It has a good antibacterial effect on human tuberculosis bacteria, and its bactericidal effect is strongest at pH 5-5.5. It is currently the best bactericidal drug for tuberculosis bacteria that grow slowly in phagocytes in an acidic environment. The antibacterial concentration in vivo is 12.5 mu; g/ml, and 50 mu; g/ml can kill tuberculosis bacteria. The concentration that inhibits tuberculosis bacteria inside cells is 10 times lower than that outside cells, and it has almost no antibacterial effect in neutral and alkaline environments. The mechanism of action may be related to pyrazinoic acid. After pyrazinamide penetrates into phagocytes and enters the tuberculosis bacteria, the amidase in the bacteria removes the amide group and converts it into pyrazinoic acid to exert an antibacterial effect. In addition, because pyrazinamide is similar to nicotinamide in chemical structure, it interferes with dehydrogenase by replacing nicotinamide, prevents dehydrogenation, and hinders the use of oxygen by tuberculosis bacteria, which affects the normal metabolism of bacteria and causes death.
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It has a good antibacterial effect on human tuberculosis bacteria, and its bactericidal effect is strongest at pH 5-5.5. It is currently the best bactericidal drug for tuberculosis bacteria that grow slowly in phagocytes in an acidic environment. The antibacterial concentration in vivo is 12.5 mu; g/ml, and 50 mu; g/ml can kill tuberculosis bacteria. The concentration that inhibits tuberculosis bacteria inside cells is 10 times lower than that outside cells, and it has almost no antibacterial effect in neutral and alkaline environments. The mechanism of action may be related to pyrazinoic acid. After pyrazinamide penetrates into phagocytes and enters the tuberculosis bacteria, the amidase in the bacteria removes the amide group and converts it into pyrazinoic acid to exert an antibacterial effect. In addition, because pyrazinamide is similar to nicotinamide in chemical structure, it interferes with dehydrogenase by replacing nicotinamide, prevents dehydrogenation, and hinders the use of oxygen by tuberculosis bacteria, which affects the normal metabolism of bacteria and causes death. |
98-96-4 | 21 |
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Lincomycin hydrochloride |
It has high antibacterial activity against common aerobic Gram-positive bacteria, such as Staphylococcus aureus (including those resistant to penicillin G), Staphylococcus epidermidis, beta-hemolytic Streptococcus, viridans Streptococcus and Streptococcus pneumoniae. It has good antibacterial effect on anaerobic bacteria, including Clostridium diphtheriae, and Clostridium perfringens. It has no activity against Gram-negative bacteria such as Enterococcus, meningococci, Neisseria gonorrhoeae, and Haemophilus influenzae, as well as fungi. There is no cross-resistance with penicillin, chloramphenicol, cephalosporins and tetracyclines, and there is partial cross-resistance with macrolides. It acts on the 50S subunit of the ribosome of sensitive bacteria, preventing the extension of the peptide chain, thereby inhibiting the protein synthesis of bacterial cells. It is generally an antibacterial agent, but at high concentrations, it also has a bactericidal effect on certain bacteria.
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It has high antibacterial activity against common aerobic Gram-positive bacteria, such as Staphylococcus aureus (including those resistant to penicillin G), Staphylococcus epidermidis, beta-hemolytic Streptococcus, viridans Streptococcus and Streptococcus pneumoniae. It has good antibacterial effect on anaerobic bacteria, including Clostridium diphtheriae, and Clostridium perfringens. It has no activity against Gram-negative bacteria such as Enterococcus, meningococci, Neisseria gonorrhoeae, and Haemophilus influenzae, as well as fungi. There is no cross-resistance with penicillin, chloramphenicol, cephalosporins and tetracyclines, and there is partial cross-resistance with macrolides. It acts on the 50S subunit of the ribosome of sensitive bacteria, preventing the extension of the peptide chain, thereby inhibiting the protein synthesis of bacterial cells. It is generally an antibacterial agent, but at high concentrations, it also has a bactericidal effect on certain bacteria. |
859-18-7 | 30 |
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Lincomycin hydrochloride |
It has high antibacterial activity against common aerobic Gram-positive bacteria, such as Staphylococcus aureus (including those resistant to penicillin G), Staphylococcus epidermidis, beta-hemolytic Streptococcus, viridans Streptococcus and Streptococcus pneumoniae. It has good antibacterial effect on anaerobic bacteria, including Clostridium diphtheriae, and Clostridium perfringens. It has no activity against Gram-negative bacteria such as Enterococcus, meningococci, Neisseria gonorrhoeae, and Haemophilus influenzae, as well as fungi. There is no cross-resistance with penicillin, chloramphenicol, cephalosporins and tetracyclines, and there is partial cross-resistance with macrolides. It acts on the 50S subunit of the ribosome of sensitive bacteria, preventing the extension of the peptide chain, thereby inhibiting the protein synthesis of bacterial cells. It is generally an antibacterial agent, but at high concentrations, it also has a bactericidal effect on certain bacteria.
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It has high antibacterial activity against common aerobic Gram-positive bacteria, such as Staphylococcus aureus (including those resistant to penicillin G), Staphylococcus epidermidis, beta-hemolytic Streptococcus, viridans Streptococcus and Streptococcus pneumoniae. It has good antibacterial effect on anaerobic bacteria, including Clostridium diphtheriae, and Clostridium perfringens. It has no activity against Gram-negative bacteria such as Enterococcus, meningococci, Neisseria gonorrhoeae, and Haemophilus influenzae, as well as fungi. There is no cross-resistance with penicillin, chloramphenicol, cephalosporins and tetracyclines, and there is partial cross-resistance with macrolides. It acts on the 50S subunit of the ribosome of sensitive bacteria, preventing the extension of the peptide chain, thereby inhibiting the protein synthesis of bacterial cells. It is generally an antibacterial agent, but at high concentrations, it also has a bactericidal effect on certain bacteria. |
859-18-7 | 30 |
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Lincomycin hydrochloride |
It has high antibacterial activity against common aerobic Gram-positive bacteria, such as Staphylococcus aureus (including those resistant to penicillin G), Staphylococcus epidermidis, beta-hemolytic Streptococcus, viridans Streptococcus and Streptococcus pneumoniae. It has good antibacterial effect on anaerobic bacteria, including Clostridium diphtheriae, and Clostridium perfringens. It has no activity against Gram-negative bacteria such as Enterococcus, meningococci, Neisseria gonorrhoeae, and Haemophilus influenzae, as well as fungi. There is no cross-resistance with penicillin, chloramphenicol, cephalosporins and tetracyclines, and there is partial cross-resistance with macrolides. It acts on the 50S subunit of the ribosome of sensitive bacteria, preventing the extension of the peptide chain, thereby inhibiting the protein synthesis of bacterial cells. It is generally an antibacterial agent, but at high concentrations, it also has a bactericidal effect on certain bacteria.
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It has high antibacterial activity against common aerobic Gram-positive bacteria, such as Staphylococcus aureus (including those resistant to penicillin G), Staphylococcus epidermidis, beta-hemolytic Streptococcus, viridans Streptococcus and Streptococcus pneumoniae. It has good antibacterial effect on anaerobic bacteria, including Clostridium diphtheriae, and Clostridium perfringens. It has no activity against Gram-negative bacteria such as Enterococcus, meningococci, Neisseria gonorrhoeae, and Haemophilus influenzae, as well as fungi. There is no cross-resistance with penicillin, chloramphenicol, cephalosporins and tetracyclines, and there is partial cross-resistance with macrolides. It acts on the 50S subunit of the ribosome of sensitive bacteria, preventing the extension of the peptide chain, thereby inhibiting the protein synthesis of bacterial cells. It is generally an antibacterial agent, but at high concentrations, it also has a bactericidal effect on certain bacteria. |
859-18-7 | 30 |