Literature DB >> 21792399

Examination of a synthetic benzophenone membrane-targeted antibiotic.

Sunil K Vooturi1, Mahender B Dewal, Steven M Firestine.   

Abstract

The enormous success of antibiotics is seriously threatened by the development of resistance to most of the drugs available on the market. Thus, novel antibiotics are needed that are less prone to bacterial resistance and are directed toward novel biological targets. Antimicrobial peptides (AMPs) have attracted considerable attention due to their unique mode of action and broad spectrum activity. However, these agents suffer from liability to proteases and the high cost of manufacturing has impeded their development. Previously, we have reported on a novel class of benzophenone-based antibiotics and early studies suggested that these agents might target the bacterial membrane. In this study, we present our work on the mechanism of action of these novel membrane targeted antibiotics. These compounds have good affinities to polyanionic components of the cell wall such as lipoteichoic acid (LTA) and lipopolysaccharide (LPS). We found that these agents release potassium ions from treated bacteria; thus, resulting in disruption of the bacterial membrane potential. Benzophenone-based membrane targeted antibiotics (BPMTAs) cause membrane disruption in synthetic lipid vesicles that mimic Gram-positive or Gram-negative bacteria. The compounds display no hemolytic activity up to a concentration that is 100 times the MIC values and they are capable of curing mice of a lethal MRSA infection. Repeated attempts to develop a mutant resistant to these agents has failed. Taken together, BPMTAs represent a promising new class of membrane-targeted antibacterial agents.

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Year:  2011        PMID: 21792399     DOI: 10.1039/c1ob05643c

Source DB:  PubMed          Journal:  Org Biomol Chem        ISSN: 1477-0520            Impact factor:   3.876


  3 in total

Review 1.  Benzophenone: a ubiquitous scaffold in medicinal chemistry.

Authors:  Khemchand Surana; Bharatkumar Chaudhary; Monika Diwaker; Satyasheel Sharma
Journal:  Medchemcomm       Date:  2018-08-23       Impact factor: 3.597

2.  Surface PEGylation of Mesoporous Silica Nanorods (MSNR): Effect on loading, release, and delivery of mitoxantrone in hypoxic cancer cells.

Authors:  Amit Wani; Galbokka H Layan Savithra; Ayat Abyad; Shrey Kanvinde; Jing Li; Stephanie Brock; David Oupický
Journal:  Sci Rep       Date:  2017-05-23       Impact factor: 4.379

Review 3.  The Mycobacterial Membrane: A Novel Target Space for Anti-tubercular Drugs.

Authors:  Huan Chen; Samuel A Nyantakyi; Ming Li; Pooja Gopal; Dinah B Aziz; Tianming Yang; Wilfried Moreira; Martin Gengenbacher; Thomas Dick; Mei L Go
Journal:  Front Microbiol       Date:  2018-07-19       Impact factor: 5.640

  3 in total

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