β-Lactamase-mediated resistance is a growing threat to the continued use of β-lactam antibiotics. The use of the β-lactam-based serine-β-lactamase (SBL) inhibitors clavulanic acid, sulbactam, tazobactam, and, more recently, the non-β-lactam inhibitor avibactam has extended the utility of β-lactams against bacterial infections demonstrating resistance via these enzymes. These molecules are, however, ineffective against the metallo-β-lactamases (MBLs), which catalyse their hydrolysis. To date, there are no clinically available metallo-β-lactamase inhibitors. Co-production of MBLs and SBLs in resistant infections is, thus, of major clinical concern. The development of ‘dual-action' inhibitors, targeting both SBLs and MBLs, is of interest, but ...
Background: The β-lactam antibiotics represent the most successful drug class for treatment of bacte...
Production of β-lactamases (BLs) is the most widespread resistance mechanism adopted by bacteria to ...
Production of β-lactamases (BLs) is the most widespread resistance mechanism adopted by bacteria to ...
β-Lactamase-mediated resistance is a growing threat to the continued use of β-lactam antibiotics. Th...
Biotechnology and Biological Sciences Research Council (grant number 439 BB/J014427/1) Medical Re...
Resistance to β-lactam antibacterials, importantly via production of β-lactamases, threatens their w...
Background: The β-lactam antibiotics represent the most successful drug class for treatment of bacte...
β-Lactamases enable resistance to almost all β-lactam antibiotics. Pioneering work revealed that acy...
β-Lactams are the most successful antibacterials, yet their use is threatened by resistance, importa...
β-Lactams are the most successful antibacterials, yet their use is threatened by resistance, importa...
Background: The β-lactam antibiotics represent the most successful drug class for treatment of bacte...
β-Lactams are the most successful antibacterials, yet their use is threatened by resistance, importa...
β-Lactams are the most successful antibacterials, yet their use is threatened by resistance, importa...
Background: The β-lactam antibiotics represent the most successful drug class for treatment of bacte...
Background The β-lactam antibiotics represent the most successful drug class for treatment of bacter...
Background: The β-lactam antibiotics represent the most successful drug class for treatment of bacte...
Production of β-lactamases (BLs) is the most widespread resistance mechanism adopted by bacteria to ...
Production of β-lactamases (BLs) is the most widespread resistance mechanism adopted by bacteria to ...
β-Lactamase-mediated resistance is a growing threat to the continued use of β-lactam antibiotics. Th...
Biotechnology and Biological Sciences Research Council (grant number 439 BB/J014427/1) Medical Re...
Resistance to β-lactam antibacterials, importantly via production of β-lactamases, threatens their w...
Background: The β-lactam antibiotics represent the most successful drug class for treatment of bacte...
β-Lactamases enable resistance to almost all β-lactam antibiotics. Pioneering work revealed that acy...
β-Lactams are the most successful antibacterials, yet their use is threatened by resistance, importa...
β-Lactams are the most successful antibacterials, yet their use is threatened by resistance, importa...
Background: The β-lactam antibiotics represent the most successful drug class for treatment of bacte...
β-Lactams are the most successful antibacterials, yet their use is threatened by resistance, importa...
β-Lactams are the most successful antibacterials, yet their use is threatened by resistance, importa...
Background: The β-lactam antibiotics represent the most successful drug class for treatment of bacte...
Background The β-lactam antibiotics represent the most successful drug class for treatment of bacter...
Background: The β-lactam antibiotics represent the most successful drug class for treatment of bacte...
Production of β-lactamases (BLs) is the most widespread resistance mechanism adopted by bacteria to ...
Production of β-lactamases (BLs) is the most widespread resistance mechanism adopted by bacteria to ...