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Computational analysis of structure-based interactions and ligand properties can predict efflux effects on antibiotics
Journal article

Computational analysis of structure-based interactions and ligand properties can predict efflux effects on antibiotics

A. Sarkar, K.C. Anderson and G.E. Kellogg
European Journal of Medicinal Chemistry, Vol.52, pp.98-110
2012

Abstract

β-Lactam antibiotics 3D-QSAR Docking and scoring Efflux pumps HINT Hydropathic interactions adicillin amoxicillin ampicillin azlocillin aztreonam beta lactam antibiotic carbenicillin cefaloridine cefalotin cefamandole cefazolin cefepime cefmetazole cefoperazone cefotaxime cefoxitin cefpirome cefsulodin ceftazidime ceftriaxone cefuroxime cephalosporin C cloxacillin mezlocillin nafcillin oxacillin penicillin G piperacillin sulbenicillin unindexed drug antibiotic resistance article bacterial cell drug binding drug protein binding drug structure drug transport ligand binding lipid membrane mathematical model minimum inhibitory concentration nonhuman prediction quantitative structure activity relation Anti-Bacterial Agents beta-Lactams Computational Biology Drug Resistance, Bacterial Hydrophobic and Hydrophilic Interactions Ligands Membrane Transport Proteins Microbial Sensitivity Tests Models, Molecular Protein Binding Protein Conformation Quantitative Structure-Activity Relationship Regression Analysis Thermodynamics
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https://www.scopus.com/inward/record.uri?eid=2-s2.0-84860350752&doi=10.1016%2fj.ejmech.2012.03.008&partnerID=40&md5=7129e169ec699d037ddb1e32d7b95495View

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