PTC-672

Modify Date: 2024-08-21 11:59:30

PTC-672 Structure
PTC-672 structure
Common Name PTC-672
CAS Number 1962140-61-9 Molecular Weight 377.397
Density N/A Boiling Point N/A
Molecular Formula C18H23N3O6 Melting Point N/A
MSDS N/A Flash Point N/A

 Use of PTC-672


PTC-672 (PTC672) is a novel orally active inhibitor that exhibits a narrow spectrum of activity against Neisseria gonorrhoeae (N. gonorrhoeae, Ng) including MDR isolates (MIC, 0.05 to 0.4 ug/mL), directly inhibits class Ia ribonucleotide reductase (RNR).PTC-672 is inactive against the panel of Gram-negative pathogens and normal gut organism (MICs ranging from 12.5 to ≥62.5 ug/mL).PTC-672 demonstrates clear antibiotic activity preference toward all Neisseria species examined including MDR organisms and the Nm M2092 serogroup B (NMSB) reference strain.PTC-672 targets DNA synthesis and the class Ia RNR large subunit, but not DNA topoisomerases. PTC-672 showed 78% inhibition at 2.5 μM aginst Ng RNR activity, also inhibits Ec RNR, but does not inhibits human RNR at 100 uM.PTC-672 (30 mg/kg) demosntrates in vivo efficacy in a mouse model of gonorrhea.

 Names

Name PTC-672

 PTC-672 Biological Activity

Description PTC-672 (PTC672) is a novel orally active inhibitor that exhibits a narrow spectrum of activity against Neisseria gonorrhoeae (N. gonorrhoeae, Ng) including MDR isolates (MIC, 0.05 to 0.4 ug/mL), directly inhibits class Ia ribonucleotide reductase (RNR).PTC-672 is inactive against the panel of Gram-negative pathogens and normal gut organism (MICs ranging from 12.5 to ≥62.5 ug/mL).PTC-672 demonstrates clear antibiotic activity preference toward all Neisseria species examined including MDR organisms and the Nm M2092 serogroup B (NMSB) reference strain.PTC-672 targets DNA synthesis and the class Ia RNR large subunit, but not DNA topoisomerases. PTC-672 showed 78% inhibition at 2.5 μM aginst Ng RNR activity, also inhibits Ec RNR, but does not inhibits human RNR at 100 uM.PTC-672 (30 mg/kg) demosntrates in vivo efficacy in a mouse model of gonorrhea.
References 1. Jana Narasimhan, et al. Elife. 2022 Feb 9;11:e67447.

 Chemical & Physical Properties

Molecular Formula C18H23N3O6
Molecular Weight 377.397
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