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Simultaneous detection of genotype and phenotype enables rapid and accurate antibiotic susceptibility determination

Multidrug resistant organisms (MDROs) are a serious threat to human health(1,2). Fast, accurate antibiotic susceptibility testing (AST) is a critical need in addressing escalating antibiotic resistance, since delays in identifying MDROs increase mortality(3,4) and use of broad-spectrum antibiotics,...

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Autores principales: Bhattacharyya, Roby P., Bandyopadhyay, Nirmalya, Ma, Peijun, Son, Sophie S., Liu, Jamin, He, Lorrie L., Wu, Lidan, Khafizov, Rustem, Boykin, Rich, Cerqueira, Gustavo C., Pironti, Alejandro, Rudy, Robert F., Patel, Milesh M., Yang, Rui, Skerry, Jennifer, Nazarian, Elizabeth, Musser, Kimberly A., Taylor, Jill, Pierce, Virginia M., Earl, Ashlee M., Cosimi, Lisa A., Shoresh, Noam, Beechem, Joseph, Livny, Jonathan, Hung, Deborah T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6930013/
https://www.ncbi.nlm.nih.gov/pubmed/31768064
http://dx.doi.org/10.1038/s41591-019-0650-9
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author Bhattacharyya, Roby P.
Bandyopadhyay, Nirmalya
Ma, Peijun
Son, Sophie S.
Liu, Jamin
He, Lorrie L.
Wu, Lidan
Khafizov, Rustem
Boykin, Rich
Cerqueira, Gustavo C.
Pironti, Alejandro
Rudy, Robert F.
Patel, Milesh M.
Yang, Rui
Skerry, Jennifer
Nazarian, Elizabeth
Musser, Kimberly A.
Taylor, Jill
Pierce, Virginia M.
Earl, Ashlee M.
Cosimi, Lisa A.
Shoresh, Noam
Beechem, Joseph
Livny, Jonathan
Hung, Deborah T.
author_facet Bhattacharyya, Roby P.
Bandyopadhyay, Nirmalya
Ma, Peijun
Son, Sophie S.
Liu, Jamin
He, Lorrie L.
Wu, Lidan
Khafizov, Rustem
Boykin, Rich
Cerqueira, Gustavo C.
Pironti, Alejandro
Rudy, Robert F.
Patel, Milesh M.
Yang, Rui
Skerry, Jennifer
Nazarian, Elizabeth
Musser, Kimberly A.
Taylor, Jill
Pierce, Virginia M.
Earl, Ashlee M.
Cosimi, Lisa A.
Shoresh, Noam
Beechem, Joseph
Livny, Jonathan
Hung, Deborah T.
author_sort Bhattacharyya, Roby P.
collection PubMed
description Multidrug resistant organisms (MDROs) are a serious threat to human health(1,2). Fast, accurate antibiotic susceptibility testing (AST) is a critical need in addressing escalating antibiotic resistance, since delays in identifying MDROs increase mortality(3,4) and use of broad-spectrum antibiotics, further selecting for resistant organisms. Yet current growth-based AST assays, such as broth microdilution(5), require several days before informing key clinical decisions. Rapid AST would transform the care of infected patients while ensuring that our antibiotic arsenal is deployed as efficiently as possible. Growth-based assays are fundamentally constrained in speed by doubling time of the pathogen, and genotypic assays are limited by the ever-growing diversity and complexity of bacterial antibiotic resistance mechanisms. Here, we describe a rapid assay for combined Genotypic and Phenotypic AST through RNA detection, GoPhAST-R, that classifies strains with 94–99% accuracy by coupling machine learning analysis of early antibiotic-induced transcriptional changes with simultaneous detection of key genetic resistance determinants to increase accuracy of resistance detection, facilitate molecular epidemiology, and enable early detection of emerging resistance mechanisms. This two-pronged approach provides phenotypic AST 24–36 hours faster than standard workflows, with <4 hour assay time on a pilot instrument for hybridization-based multiplexed RNA detection implemented directly from positive blood cultures.
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spelling pubmed-69300132020-05-25 Simultaneous detection of genotype and phenotype enables rapid and accurate antibiotic susceptibility determination Bhattacharyya, Roby P. Bandyopadhyay, Nirmalya Ma, Peijun Son, Sophie S. Liu, Jamin He, Lorrie L. Wu, Lidan Khafizov, Rustem Boykin, Rich Cerqueira, Gustavo C. Pironti, Alejandro Rudy, Robert F. Patel, Milesh M. Yang, Rui Skerry, Jennifer Nazarian, Elizabeth Musser, Kimberly A. Taylor, Jill Pierce, Virginia M. Earl, Ashlee M. Cosimi, Lisa A. Shoresh, Noam Beechem, Joseph Livny, Jonathan Hung, Deborah T. Nat Med Article Multidrug resistant organisms (MDROs) are a serious threat to human health(1,2). Fast, accurate antibiotic susceptibility testing (AST) is a critical need in addressing escalating antibiotic resistance, since delays in identifying MDROs increase mortality(3,4) and use of broad-spectrum antibiotics, further selecting for resistant organisms. Yet current growth-based AST assays, such as broth microdilution(5), require several days before informing key clinical decisions. Rapid AST would transform the care of infected patients while ensuring that our antibiotic arsenal is deployed as efficiently as possible. Growth-based assays are fundamentally constrained in speed by doubling time of the pathogen, and genotypic assays are limited by the ever-growing diversity and complexity of bacterial antibiotic resistance mechanisms. Here, we describe a rapid assay for combined Genotypic and Phenotypic AST through RNA detection, GoPhAST-R, that classifies strains with 94–99% accuracy by coupling machine learning analysis of early antibiotic-induced transcriptional changes with simultaneous detection of key genetic resistance determinants to increase accuracy of resistance detection, facilitate molecular epidemiology, and enable early detection of emerging resistance mechanisms. This two-pronged approach provides phenotypic AST 24–36 hours faster than standard workflows, with <4 hour assay time on a pilot instrument for hybridization-based multiplexed RNA detection implemented directly from positive blood cultures. 2019-11-25 2019-12 /pmc/articles/PMC6930013/ /pubmed/31768064 http://dx.doi.org/10.1038/s41591-019-0650-9 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Bhattacharyya, Roby P.
Bandyopadhyay, Nirmalya
Ma, Peijun
Son, Sophie S.
Liu, Jamin
He, Lorrie L.
Wu, Lidan
Khafizov, Rustem
Boykin, Rich
Cerqueira, Gustavo C.
Pironti, Alejandro
Rudy, Robert F.
Patel, Milesh M.
Yang, Rui
Skerry, Jennifer
Nazarian, Elizabeth
Musser, Kimberly A.
Taylor, Jill
Pierce, Virginia M.
Earl, Ashlee M.
Cosimi, Lisa A.
Shoresh, Noam
Beechem, Joseph
Livny, Jonathan
Hung, Deborah T.
Simultaneous detection of genotype and phenotype enables rapid and accurate antibiotic susceptibility determination
title Simultaneous detection of genotype and phenotype enables rapid and accurate antibiotic susceptibility determination
title_full Simultaneous detection of genotype and phenotype enables rapid and accurate antibiotic susceptibility determination
title_fullStr Simultaneous detection of genotype and phenotype enables rapid and accurate antibiotic susceptibility determination
title_full_unstemmed Simultaneous detection of genotype and phenotype enables rapid and accurate antibiotic susceptibility determination
title_short Simultaneous detection of genotype and phenotype enables rapid and accurate antibiotic susceptibility determination
title_sort simultaneous detection of genotype and phenotype enables rapid and accurate antibiotic susceptibility determination
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6930013/
https://www.ncbi.nlm.nih.gov/pubmed/31768064
http://dx.doi.org/10.1038/s41591-019-0650-9
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