Title of article :
A Degradation Product From Hydrolysate of Imipenem with Imis Broad-Spectrum Inhibits Metallo-β-Lactamases
Author/Authors :
Ge, Ying Northwest University, Kirkland, USA , Xu, Li-Wei Northwest University, Kirkland, USA , Zhen, Jian-Bin Northwest University, Kirkland, USA , Chen, Cheng Northwest University, Kirkland, USA , Lv, Miao Northwest University, Kirkland, USA , Su, Jian-Peng Northwest University, Kirkland, USA , Yang, Ke-Wu Northwest University, Kirkland, USA , Liu, Chengcheng Xi’an Jiao Tong University Health Science Center, Xi’an, China
Pages :
7
From page :
1
To page :
7
Abstract :
Background: Infections caused by metallo-β-lactamases (MβLs)-producing antibiotic-resistant bacteria pose a severe threat to pub-lic health. The synergistic use of current antibiotics in combination with MβL inhibitors is a promising therapeutic mode against these antibiotic-resistant bacteria. Objectives: The study aimed to probe the inhibition of MβLs and obtain the active component, P1, in the degradation product after imipenem was hydrolyzed by ImiS. Methods: The hydrolysis of two carbapenems with MβL ImiS was monitored by UV-Vis in real-time, and the degradation product from the leaving group produced after imipenem was hydrolyzed (but not for faropenem) was purified by HPLC to give one compo-nent, P1. Results: Kinetic assays revealed that P1 exhibited a broad-spectrum inhibition against VIM-2, NDM-1, ImiS, and L1, from three sub-classes of MβLs, with IC50 values of 8 - 32, 13.8 - 29.3, and 14.2 - 19.2 µM, using imipenem, cefazolin, and nitrocefin as substrates, respectively. Also, P1 showed synergistic antibacterial eÿcacy against drug-resistant Escherichia coli producing VIM-2, NDM-1, ImiS, and L1, in combination with antibiotics, restoring 16 to 32-fold and 32 to 128-fold eÿcacies of imipenem and cefazolin, respectively. Spectroscopic and Ellman’s reagent analyses suggested that P1, a mercaptoethyl-form imidamide, is a mechanism-based inhibitor, while faropenem has no substrate inhibition, due to the lack of a leaving group. Conclusions: This work reveals that the hydrolysate of imipenem, a carbapenem with a good leaving group, can be used in screen-ing for broad-spectrum inhibitors of MβLs.
Farsi abstract :
فاقد چكيده فارسي
Keywords :
Antibiotic Resistance , Metallo-β-lactamase , Inhibitor , Synergistic Antibacterial Eÿcacy
Journal title :
Jundishapur Journal of Microbiology (JJM)
Serial Year :
2020
Record number :
2525734
Link To Document :
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