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An in vitro diagnostic certified point of care single nucleotide test for IL28B polymorphisms

Numerous genetic polymorphisms have been identified as associated with disease or treatment outcome, but the routine implementation of genotyping into actionable medical care remains limited. Point-of-care (PoC) technologies enable rapid and real-time treatment decisions, with great potential for ex...

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Autores principales: Duffy, Darragh, Mottez, Estelle, Ainsworth, Shaun, Buivan, Tan-Phuc, Baudin, Aurelie, Vray, Muriel, Reed, Ben, Fontanet, Arnaud, Rohel, Alexandra, Petrov-Sanchez, Ventzislava, Abel, Laurent, Theodorou, Ioannis, Miele, Gino, Pol, Stanislas, Albert, Matthew L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5587232/
https://www.ncbi.nlm.nih.gov/pubmed/28877177
http://dx.doi.org/10.1371/journal.pone.0183084
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author Duffy, Darragh
Mottez, Estelle
Ainsworth, Shaun
Buivan, Tan-Phuc
Baudin, Aurelie
Vray, Muriel
Reed, Ben
Fontanet, Arnaud
Rohel, Alexandra
Petrov-Sanchez, Ventzislava
Abel, Laurent
Theodorou, Ioannis
Miele, Gino
Pol, Stanislas
Albert, Matthew L.
author_facet Duffy, Darragh
Mottez, Estelle
Ainsworth, Shaun
Buivan, Tan-Phuc
Baudin, Aurelie
Vray, Muriel
Reed, Ben
Fontanet, Arnaud
Rohel, Alexandra
Petrov-Sanchez, Ventzislava
Abel, Laurent
Theodorou, Ioannis
Miele, Gino
Pol, Stanislas
Albert, Matthew L.
author_sort Duffy, Darragh
collection PubMed
description Numerous genetic polymorphisms have been identified as associated with disease or treatment outcome, but the routine implementation of genotyping into actionable medical care remains limited. Point-of-care (PoC) technologies enable rapid and real-time treatment decisions, with great potential for extending molecular diagnostic approaches to settings with limited medical infrastructure (e.g., CLIA certified diagnostic laboratories). With respect to resource-limited settings, there is a need for simple devices to implement biomarker guided treatment strategies. One relevant example is chronic hepatitis C infection, for which several treatment options are now approved. Single nucleotide polymorphisms (SNPs) in the IL-28B / IFNL3 locus have been well described to predict both spontaneous clearance and response to interferon based therapies. We utilized the Genedrive(®) platform to develop an assay for the SNP rs12979860 variants (CC, CT and TT). The assay utilizes a hybrid thermal engine, permitting rapid heating and cooling, enabling an amplification based assay with genetic variants reported using endpoint differential melting cure analysis in less than 60 minutes. We validated this assay using non-invasive buccal swab sampling in a prospective study of 246 chronic HCV patients, achieving 100% sensitivity and 100% specificity (95% exact CI: 98.8–100%)) in 50 minutes as compared to conventional lab based PCR testing. Our results provide proof of concept that precision medicine is feasible in resource-limited settings, offering the first CE-IVD (in vitro diagnostics) validated PoC SNP test. We propose that IL-28B genotyping may be useful for directing patients towards lower cost therapies, and rationing use of costly direct antivirals for use in those individuals showing genetic risk.
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spelling pubmed-55872322017-09-15 An in vitro diagnostic certified point of care single nucleotide test for IL28B polymorphisms Duffy, Darragh Mottez, Estelle Ainsworth, Shaun Buivan, Tan-Phuc Baudin, Aurelie Vray, Muriel Reed, Ben Fontanet, Arnaud Rohel, Alexandra Petrov-Sanchez, Ventzislava Abel, Laurent Theodorou, Ioannis Miele, Gino Pol, Stanislas Albert, Matthew L. PLoS One Research Article Numerous genetic polymorphisms have been identified as associated with disease or treatment outcome, but the routine implementation of genotyping into actionable medical care remains limited. Point-of-care (PoC) technologies enable rapid and real-time treatment decisions, with great potential for extending molecular diagnostic approaches to settings with limited medical infrastructure (e.g., CLIA certified diagnostic laboratories). With respect to resource-limited settings, there is a need for simple devices to implement biomarker guided treatment strategies. One relevant example is chronic hepatitis C infection, for which several treatment options are now approved. Single nucleotide polymorphisms (SNPs) in the IL-28B / IFNL3 locus have been well described to predict both spontaneous clearance and response to interferon based therapies. We utilized the Genedrive(®) platform to develop an assay for the SNP rs12979860 variants (CC, CT and TT). The assay utilizes a hybrid thermal engine, permitting rapid heating and cooling, enabling an amplification based assay with genetic variants reported using endpoint differential melting cure analysis in less than 60 minutes. We validated this assay using non-invasive buccal swab sampling in a prospective study of 246 chronic HCV patients, achieving 100% sensitivity and 100% specificity (95% exact CI: 98.8–100%)) in 50 minutes as compared to conventional lab based PCR testing. Our results provide proof of concept that precision medicine is feasible in resource-limited settings, offering the first CE-IVD (in vitro diagnostics) validated PoC SNP test. We propose that IL-28B genotyping may be useful for directing patients towards lower cost therapies, and rationing use of costly direct antivirals for use in those individuals showing genetic risk. Public Library of Science 2017-09-06 /pmc/articles/PMC5587232/ /pubmed/28877177 http://dx.doi.org/10.1371/journal.pone.0183084 Text en © 2017 Duffy et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Duffy, Darragh
Mottez, Estelle
Ainsworth, Shaun
Buivan, Tan-Phuc
Baudin, Aurelie
Vray, Muriel
Reed, Ben
Fontanet, Arnaud
Rohel, Alexandra
Petrov-Sanchez, Ventzislava
Abel, Laurent
Theodorou, Ioannis
Miele, Gino
Pol, Stanislas
Albert, Matthew L.
An in vitro diagnostic certified point of care single nucleotide test for IL28B polymorphisms
title An in vitro diagnostic certified point of care single nucleotide test for IL28B polymorphisms
title_full An in vitro diagnostic certified point of care single nucleotide test for IL28B polymorphisms
title_fullStr An in vitro diagnostic certified point of care single nucleotide test for IL28B polymorphisms
title_full_unstemmed An in vitro diagnostic certified point of care single nucleotide test for IL28B polymorphisms
title_short An in vitro diagnostic certified point of care single nucleotide test for IL28B polymorphisms
title_sort in vitro diagnostic certified point of care single nucleotide test for il28b polymorphisms
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5587232/
https://www.ncbi.nlm.nih.gov/pubmed/28877177
http://dx.doi.org/10.1371/journal.pone.0183084
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