High susceptibility of MDR and XDR Gram-negative pathogens to biphenyl-diacetylene-based difluoromethyl-allo-threonyl-hydroxamate LpxC inhibitors.

dc.contributor.author

Titecat, Marie

dc.contributor.author

Liang, Xiaofei

dc.contributor.author

Lee, Chul-Jin

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Charlet, Audrey

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Hocquet, Didier

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Lambert, Thierry

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Pagès, Jean-Marie

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Courcol, René

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Sebbane, Florent

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Toone, Eric J

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Zhou, Pei

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Lemaitre, Nadine

dc.coverage.spatial

England

dc.date.accessioned

2016-08-01T13:47:39Z

dc.date.issued

2016-10

dc.description.abstract

OBJECTIVES: Inhibitors of uridine diphosphate-3-O-(R-3-hydroxymyristoyl)-N-acetylglucosamine deacetylase (LpxC, which catalyses the first, irreversible step in lipid A biosynthesis) are a promising new class of antibiotics against Gram-negative bacteria. The objectives of the present study were to: (i) compare the antibiotic activities of three LpxC inhibitors (LPC-058, LPC-011 and LPC-087) and the reference inhibitor CHIR-090 against Gram-negative bacilli (including MDR and XDR isolates); and (ii) investigate the effect of combining these inhibitors with conventional antibiotics. METHODS: MICs were determined for 369 clinical isolates (234 Enterobacteriaceae and 135 non-fermentative Gram-negative bacilli). Time-kill assays with LPC-058 were performed on four MDR/XDR strains, including Escherichia coli producing CTX-M-15 ESBL and Klebsiella pneumoniae, Pseudomonas aeruginosa and Acinetobacter baumannii producing KPC-2, VIM-1 and OXA-23 carbapenemases, respectively. RESULTS: LPC-058 was the most potent antibiotic and displayed the broadest spectrum of antimicrobial activity, with MIC90 values for Enterobacteriaceae, P. aeruginosa, Burkholderia cepacia and A. baumannii of 0.12, 0.5, 1 and 1 mg/L, respectively. LPC-058 was bactericidal at 1× or 2× MIC against CTX-M-15, KPC-2 and VIM-1 carbapenemase-producing strains and bacteriostatic at ≤4× MIC against OXA-23 carbapenemase-producing A. baumannii. Combinations of LPC-058 with β-lactams, amikacin and ciprofloxacin were synergistic against these strains, albeit in a species-dependent manner. LPC-058's high efficacy was attributed to the presence of the difluoromethyl-allo-threonyl head group and a linear biphenyl-diacetylene tail group. CONCLUSIONS: These in vitro data highlight the therapeutic potential of the new LpxC inhibitor LPC-058 against MDR/XDR strains and set the stage for subsequent in vivo studies.

dc.identifier

http://www.ncbi.nlm.nih.gov/pubmed/27330072

dc.identifier

dkw210

dc.identifier.eissn

1460-2091

dc.identifier.uri

https://hdl.handle.net/10161/12518

dc.language

eng

dc.publisher

Oxford University Press (OUP)

dc.relation.ispartof

J Antimicrob Chemother

dc.relation.isversionof

10.1093/jac/dkw210

dc.title

High susceptibility of MDR and XDR Gram-negative pathogens to biphenyl-diacetylene-based difluoromethyl-allo-threonyl-hydroxamate LpxC inhibitors.

dc.type

Journal article

duke.contributor.orcid

Zhou, Pei|0000-0002-7823-3416

pubs.author-url

http://www.ncbi.nlm.nih.gov/pubmed/27330072

pubs.begin-page

2874

pubs.end-page

2882

pubs.issue

10

pubs.organisational-group

Basic Science Departments

pubs.organisational-group

Biochemistry

pubs.organisational-group

Chemistry

pubs.organisational-group

Duke

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Duke Cancer Institute

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Institutes and Centers

pubs.organisational-group

School of Medicine

pubs.organisational-group

Trinity College of Arts & Sciences

pubs.publication-status

Published

pubs.volume

71

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