From Bench-Top to Bedside: A prospective In vitro Antibiotic Combination Testing (iACT) service to guide the selection of rationally optimized antimicrobial combinations against Extensively Drug Resistant (XDR) Gram Negative Bacteria (GNB)
10.1371/journal.pone.0158740
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sg-nus-scholar.10635-1657442023-10-31T08:13:50Z From Bench-Top to Bedside: A prospective In vitro Antibiotic Combination Testing (iACT) service to guide the selection of rationally optimized antimicrobial combinations against Extensively Drug Resistant (XDR) Gram Negative Bacteria (GNB) Cai Y. Chua N.G. Lim T.-P. Teo J.Q.-M. Lee W. Kurup A. Koh T.-H. Tan T.-T. Kwa A.L. DUKE-NUS MEDICAL SCHOOL antibiotic resistance Article bloodstream infection clinical feature controlled study drug screening drug selectivity extensively drug resistant gram negative bacteria feasibility study Gram negative bacterium in vitro antibiotic combination testing mortality nonhuman outcome assessment pneumonia prescription process optimization retrospective study Singapore combination drug therapy demography dose response drug effects female Gram-Negative Bacterial Infections hospital mortality human male microbial sensitivity test microbiology middle aged multidrug resistance prospective study translational research antiinfective agent Anti-Bacterial Agents Demography Dose-Response Relationship, Drug Drug Resistance, Multiple, Bacterial Drug Therapy, Combination Female Gram-Negative Bacterial Infections Hospital Mortality Humans Male Microbial Sensitivity Tests Middle Aged Prospective Studies Translational Medical Research 10.1371/journal.pone.0158740 PLoS ONE 11 7 e0158740 2020-03-19T07:47:42Z 2020-03-19T07:47:42Z 2016 Article Cai Y., Chua N.G., Lim T.-P., Teo J.Q.-M., Lee W., Kurup A., Koh T.-H., Tan T.-T., Kwa A.L. (2016). From Bench-Top to Bedside: A prospective In vitro Antibiotic Combination Testing (iACT) service to guide the selection of rationally optimized antimicrobial combinations against Extensively Drug Resistant (XDR) Gram Negative Bacteria (GNB). PLoS ONE 11 (7) : e0158740. ScholarBank@NUS Repository. https://doi.org/10.1371/journal.pone.0158740 19326203 https://scholarbank.nus.edu.sg/handle/10635/165744 Public Library of Science Unpaywall 20200320 |
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antibiotic resistance Article bloodstream infection clinical feature controlled study drug screening drug selectivity extensively drug resistant gram negative bacteria feasibility study Gram negative bacterium in vitro antibiotic combination testing mortality nonhuman outcome assessment pneumonia prescription process optimization retrospective study Singapore combination drug therapy demography dose response drug effects female Gram-Negative Bacterial Infections hospital mortality human male microbial sensitivity test microbiology middle aged multidrug resistance prospective study translational research antiinfective agent Anti-Bacterial Agents Demography Dose-Response Relationship, Drug Drug Resistance, Multiple, Bacterial Drug Therapy, Combination Female Gram-Negative Bacterial Infections Hospital Mortality Humans Male Microbial Sensitivity Tests Middle Aged Prospective Studies Translational Medical Research |
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antibiotic resistance Article bloodstream infection clinical feature controlled study drug screening drug selectivity extensively drug resistant gram negative bacteria feasibility study Gram negative bacterium in vitro antibiotic combination testing mortality nonhuman outcome assessment pneumonia prescription process optimization retrospective study Singapore combination drug therapy demography dose response drug effects female Gram-Negative Bacterial Infections hospital mortality human male microbial sensitivity test microbiology middle aged multidrug resistance prospective study translational research antiinfective agent Anti-Bacterial Agents Demography Dose-Response Relationship, Drug Drug Resistance, Multiple, Bacterial Drug Therapy, Combination Female Gram-Negative Bacterial Infections Hospital Mortality Humans Male Microbial Sensitivity Tests Middle Aged Prospective Studies Translational Medical Research Cai Y. Chua N.G. Lim T.-P. Teo J.Q.-M. Lee W. Kurup A. Koh T.-H. Tan T.-T. Kwa A.L. From Bench-Top to Bedside: A prospective In vitro Antibiotic Combination Testing (iACT) service to guide the selection of rationally optimized antimicrobial combinations against Extensively Drug Resistant (XDR) Gram Negative Bacteria (GNB) |
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10.1371/journal.pone.0158740 |
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DUKE-NUS MEDICAL SCHOOL |
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DUKE-NUS MEDICAL SCHOOL Cai Y. Chua N.G. Lim T.-P. Teo J.Q.-M. Lee W. Kurup A. Koh T.-H. Tan T.-T. Kwa A.L. |
format |
Article |
author |
Cai Y. Chua N.G. Lim T.-P. Teo J.Q.-M. Lee W. Kurup A. Koh T.-H. Tan T.-T. Kwa A.L. |
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Cai Y. |
title |
From Bench-Top to Bedside: A prospective In vitro Antibiotic Combination Testing (iACT) service to guide the selection of rationally optimized antimicrobial combinations against Extensively Drug Resistant (XDR) Gram Negative Bacteria (GNB) |
title_short |
From Bench-Top to Bedside: A prospective In vitro Antibiotic Combination Testing (iACT) service to guide the selection of rationally optimized antimicrobial combinations against Extensively Drug Resistant (XDR) Gram Negative Bacteria (GNB) |
title_full |
From Bench-Top to Bedside: A prospective In vitro Antibiotic Combination Testing (iACT) service to guide the selection of rationally optimized antimicrobial combinations against Extensively Drug Resistant (XDR) Gram Negative Bacteria (GNB) |
title_fullStr |
From Bench-Top to Bedside: A prospective In vitro Antibiotic Combination Testing (iACT) service to guide the selection of rationally optimized antimicrobial combinations against Extensively Drug Resistant (XDR) Gram Negative Bacteria (GNB) |
title_full_unstemmed |
From Bench-Top to Bedside: A prospective In vitro Antibiotic Combination Testing (iACT) service to guide the selection of rationally optimized antimicrobial combinations against Extensively Drug Resistant (XDR) Gram Negative Bacteria (GNB) |
title_sort |
from bench-top to bedside: a prospective in vitro antibiotic combination testing (iact) service to guide the selection of rationally optimized antimicrobial combinations against extensively drug resistant (xdr) gram negative bacteria (gnb) |
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Public Library of Science |
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2020 |
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https://scholarbank.nus.edu.sg/handle/10635/165744 |
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1781791967631376384 |