With the aim of improving the ability of non-p-lactam inhibitors to inhibit AmpC-beta-tactamase, a series of 3-aza-phenyl-boronic acid derivatives was obtained using in parallel synthesis. The molecules were tested against Escherichia coli AmpC-beta-lactamase. The best inhibitors, 3-(2-hydroxy-naphthalen-1-ylazo)-phenyl-boronic acid (12) and 3-(2,4-dihydroxy-naphthalen-1-ylazo)-phenyl-boronic acid (14), showed apparent inhibition constant values (K-i) of 0.3 and 0.45 muM and increased the potency of the semi-synthetic cephalosporin antibiotic, ceftazidime, lowering its minimum inhibitory concentration (MIC) value of 50%, against Gram-negative bacteria strains, producing high levels of AmpC-p-lactamase.
Aza-boronic acids as non-beta-lactam inhibitors of AmpC-beta-lactamase / Buzzoni, V.; Blazquez, J.; Ferrari, Stefania; Calo, S.; Venturelli, A.; Costi, Maria Paola. - In: BIOORGANIC & MEDICINAL CHEMISTRY LETTERS. - ISSN 0960-894X. - STAMPA. - 14:15(2004), pp. 3979-3983. [10.1016/j.bmcl.2004.05.054]
Aza-boronic acids as non-beta-lactam inhibitors of AmpC-beta-lactamase
FERRARI, Stefania;A. Venturelli;COSTI, Maria Paola
2004
Abstract
With the aim of improving the ability of non-p-lactam inhibitors to inhibit AmpC-beta-tactamase, a series of 3-aza-phenyl-boronic acid derivatives was obtained using in parallel synthesis. The molecules were tested against Escherichia coli AmpC-beta-lactamase. The best inhibitors, 3-(2-hydroxy-naphthalen-1-ylazo)-phenyl-boronic acid (12) and 3-(2,4-dihydroxy-naphthalen-1-ylazo)-phenyl-boronic acid (14), showed apparent inhibition constant values (K-i) of 0.3 and 0.45 muM and increased the potency of the semi-synthetic cephalosporin antibiotic, ceftazidime, lowering its minimum inhibitory concentration (MIC) value of 50%, against Gram-negative bacteria strains, producing high levels of AmpC-p-lactamase.File | Dimensione | Formato | |
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