Metallo-β-lactamase inhibitors: A continuing challenge for combating antibiotic resistance

Citations

WEB OF SCIENCE

34
Citations

SCOPUS

37

초록

β-lactam antibiotics are the most successful and commonly used antibacterial agents, but the emergence of resistance to these drugs has become a global health threat. The expression of β-lactamase enzymes produced by pathogens, which hydrolyze the amide bond of the β-lactam ring, is the major mechanism for bacterial resistance to β-lactams. In particular, among class A, B, C and D β-lactamases, metallo-β-lactamases (MBLs, class B β-lactamases) are considered crucial contributors to resistance in gram-negative bacteria. To combat β-lactamase-mediated resistance, great efforts have been made to develop β-lactamase inhibitors that restore the activity of β-lactams. Some β-lactamase inhibitors, such as diazabicyclooctanes (DBOs) and boronic acid derivatives, have also been approved by the FDA. Inhibitors used in the clinic can inactivate mostly serine-β-lactamases (SBLs, class A, C, and D β-lactamases) but have not been effective against MBLs until now. In order to develop new inhibitors particularly for MBLs, various attempts have been suggested. Based on structural and mechanical studies of MBL enzymes, several MBL inhibitor candidates, including taniborbactam in phase 3 and xeruborbactam in phase 1, have been introduced in recent years. However, designing potent inhibitors that are effective against all subclasses of MBLs is still extremely challenging. This review summarizes not only the types of β-lactamase and mechanisms by which β-lactam antibiotics are inactivated, but also the research finding on β-lactamase inhibitors targeting these enzymes. These detailed information on β-lactamases and their inhibitors could give valuable information for novel β-lactamase inhibitors design. © 2023

키워드

Antibiotic resistance; Mechanism of action based on structure; β-Lactam antibiotics; β-Lactamase inhibitors; β-Lactamases; STANDARD NUMBERING SCHEME; PENICILLIN-BINDING PROTEINS; CRYSTAL-STRUCTURE; CLASS-A; STENOTROPHOMONAS-MALTOPHILIA; PSEUDOMONAS-AERUGINOSA; MECHANISM; SPECTRUM; COMPLEX; EVOLUTION
제목
Metallo-β-lactamase inhibitors: A continuing challenge for combating antibiotic resistance
저자
Kang, Su-Jin; Kim, Do-Hee; Lee, Bong-Jin
DOI
10.1016/j.bpc.2024.107228
발행일
2024-06
유형
Article
저널명
Biophysical Chemistry
권
309