Cunninghamella blakesleeana-mediated biotransformation of a contraceptive drug, desogestrel, and anti-MDR-Staphylococcus aureus activity of its metabolites
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Academic Press Inc.
Abstract
Staphylococcus aureus is one of the most infectious agents among staphylococcal bacteria. Currently many strains of S. aureus have developed resistance against available antibiotics. Therefore, the treatment of infections caused by them is a major challenge. During current study, desogestrel (1), a contraceptive drug, was found to be a potent growth inhibitor of drug resistant strains of S. aureus. Therefore, in search of new and effective agents against multi-drug resistant S. aureus strains, whole-cell bio-catalytic conversion of desogestrel (1) by Cunninghamella blakesleeana ATCC 8688A at pH 7.0 and 25 °C was carried out, yielding three new metabolites, 13-ethyl-11-methylene-18,19-dinor-17α-pregn-4-en-20-yn-6β,15β,17β-triol (2), 13-ethyl-11-methylene-18,19-dinor-17α-pregn-4-en-20-yn-3β,6β,17β-triol (3), and 13-ethyl-11-methylene-18,19-dinor-17α-pregn-20-yn-3α,5α,6β,17β-tetraol (4), along with a known metabolite, 13-ethyl-11-methylene-18,19-dinor-17α-pregn-4-en-20-yn-6β,17β-dihydroxy-3-one (5). Among them, compounds 1–2 showed a potent activity against S. aureus EMRSA-17, S. aureus NCTC 13277 (MRSA-252), and S. aureus NCTC 13143, and clinically isolated Pakistani strain of S. aureus in an in vitro Microplate Alamar Blue Assay (MABA). Vancomycin was used as the standard drug in this assay. In addition, compound 1 also showed a significant activity against vancomycin-resistant S. aureus (VRSA) ATCC 700699. Compounds 1–5 were also evaluated against 3T3 normal cell line (mouse fibroblast) where they all were identified as non-cytotoxic. The present study thus provides new leads for the development of anti-bacterial drugs against MDR S. aureus. © 2018 Elsevier Inc.
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6β,15β-dihydroxy-desogestrel, Anti-bacterial, Biotransformation, Cunninghamella blakesleeana, Cytotoxicity, Desogestrel, Drug resistant staphylococcus aureus, Anti-bacterial agents, Contraceptive agents, Cunninghamella, Dose-response relationship, drug, Methicillin-resistant staphylococcus aureus, Microbial sensitivity tests, Molecular structure, Structure-activity relationship, 13 ethyl 11 methylene 18,19 dinor 17alpha pregn 20 yn 3 alpha, 5 alpha, 6 beta, 17 beta tetraol, 13 ethyl 11 methylene 18,19 dinor 17alpha pregn 4 en 20 yn 3 beta, 6 beta,17 beta triol, 13 ethyl 11 methylene 18,19 dinor 17alpha pregn 4 en 20 yn 6 beta, 17 beta dihydroxy 3 one, 13 ethyl 11 methylene 18,19 dinor 17alpha pregn 4 en 20 yn 6 beta,15 beta,17 beta triol, Drug metabolite, Unclassified drug, Vancomycin, Antiinfective agent, Contraceptive agent, 3t3 cell line, Animal cell, Animal experiment, Animal model, Article, Bacterial strain, Controlled study, Drug transformation, Fibroblast, In vitro study, Mouse, Nonhuman, Ph, Priority journal, Resazurin assay, Staphylococcus aureus, Vancomycin resistant staphylococcus aureus, Chemical structure, Chemistry, Dose response, Drug effect, Metabolism, Methicillin resistant staphylococcus aureus, Microbial sensitivity test, Structure activity relation