A small set of boronic acids acting as low nanomolar inhibitors of AmpC beta-lactamase were designed and synthesized in the effort to improve affinity, pharmacokinetic properties, and to provide a valid lead compound. X-ray crystallography revealed the binary complex of the best inhibitor bound to the enzyme, highlighting possibilities for its further rational derivatization and chemical optimization
Worldwide dissemination of pathogens resistant to almost all available antibiotics represent a real ...
Background: Group I p-lactamases are a major cause of antibiotic resistance to beta -lactams such as...
Recent decades have witnessed a dramatic increase of multidrug resistant (MDR) bacteria, compromisin...
A small set of boronic acids acting as low nanomolar inhibitors of AmpC beta-lactamase were designed...
A small set of boronic acids acting as low nanomolar inhibitors of AmpC beta-lactamase were designed...
Boronic acids have proved to be promising selective inhibitors of beta-lactamases, acting as transit...
beta-Lactamases are bacterial enzymes conferring resistance to beta-lactam antibiotics in clinicall...
β-Lactamases are bacterial enzymes conferring resistance to β-lactam antibiotics in clinically-relev...
With the aim of improving the ability of non-p-lactam inhibitors to inhibit AmpC-beta-tactamase, a s...
AmpC beta-lactamase is a hydrolytic enzyme conferring resistance to beta-lactam antibiotics in mult...
AmpC \u3b2-lactamase is a hydrolytic enzyme conferring resistance to \u3b2-lactam antibiotics in mul...
beta-lactamases are the most widespread resistance mechanism to beta-lactam antibiotics, such as the...
Bacterial expression of -lactamases is the most widespread resistance mechanism to -lactam antibio...
\u3b2-Lactamase-mediated resistance to \u3b2-lactam antibiotics threatens our antibiotic armamentari...
AbstractBackground: Group I β-lactamases are a major cause of antibiotic resistance to β-lactams suc...
Worldwide dissemination of pathogens resistant to almost all available antibiotics represent a real ...
Background: Group I p-lactamases are a major cause of antibiotic resistance to beta -lactams such as...
Recent decades have witnessed a dramatic increase of multidrug resistant (MDR) bacteria, compromisin...
A small set of boronic acids acting as low nanomolar inhibitors of AmpC beta-lactamase were designed...
A small set of boronic acids acting as low nanomolar inhibitors of AmpC beta-lactamase were designed...
Boronic acids have proved to be promising selective inhibitors of beta-lactamases, acting as transit...
beta-Lactamases are bacterial enzymes conferring resistance to beta-lactam antibiotics in clinicall...
β-Lactamases are bacterial enzymes conferring resistance to β-lactam antibiotics in clinically-relev...
With the aim of improving the ability of non-p-lactam inhibitors to inhibit AmpC-beta-tactamase, a s...
AmpC beta-lactamase is a hydrolytic enzyme conferring resistance to beta-lactam antibiotics in mult...
AmpC \u3b2-lactamase is a hydrolytic enzyme conferring resistance to \u3b2-lactam antibiotics in mul...
beta-lactamases are the most widespread resistance mechanism to beta-lactam antibiotics, such as the...
Bacterial expression of -lactamases is the most widespread resistance mechanism to -lactam antibio...
\u3b2-Lactamase-mediated resistance to \u3b2-lactam antibiotics threatens our antibiotic armamentari...
AbstractBackground: Group I β-lactamases are a major cause of antibiotic resistance to β-lactams suc...
Worldwide dissemination of pathogens resistant to almost all available antibiotics represent a real ...
Background: Group I p-lactamases are a major cause of antibiotic resistance to beta -lactams such as...
Recent decades have witnessed a dramatic increase of multidrug resistant (MDR) bacteria, compromisin...