Interplay between β-lactamases and new β-lactamase inhibitors

Resistance to β-lactam antibiotics in Gram-negative bacteria is commonly associated with production of β-lactamases, including extended-spectrum β-lactamases (ESBLs) and carbapenemases belonging to different molecular classes: those with a catalytically active serine and those with at least one acti...

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Veröffentlicht in:Nature reviews. Microbiology 2019-05, Vol.17 (5), p.295-306
Hauptverfasser: Bush, Karen, Bradford, Patricia A.
Format: Artikel
Sprache:eng
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Zusammenfassung:Resistance to β-lactam antibiotics in Gram-negative bacteria is commonly associated with production of β-lactamases, including extended-spectrum β-lactamases (ESBLs) and carbapenemases belonging to different molecular classes: those with a catalytically active serine and those with at least one active-site Zn 2+ to facilitate hydrolysis. To counteract the hydrolytic activity of these enzymes, combinations of a β-lactam with a β-lactamase inhibitor (BLI) have been clinically successful. However, some β-lactam–BLI combinations have lost their effectiveness against prevalent Gram-negative pathogens that produce ESBLs, carbapenemases or multiple β-lactamases in the same organism. In this Review, descriptions are provided for medically relevant β-lactamase families and various BLI combinations that have been developed or are under development. Recently approved inhibitor combinations include the inhibitors avibactam and vaborbactam of the diazabicyclooctanone and boronic acid inhibitor classes, respectively, as new scaffolds for future inhibitor design. In this Review, Bush and Bradford describe medically relevant β-lactamase families and various combinations of a β-lactam with a β-lactamase inhibitor that have been developed, or that are being developed, to counteract these enzymes.
ISSN:1740-1526
1740-1534
DOI:10.1038/s41579-019-0159-8