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A 9-mRNA signature measured from whole blood by a prototype PCR panel predicts 28-day mortality upon admission of critically ill COVID-19 patients

Immune responses affiliated with COVID-19 severity have been characterized and associated with deleterious outcomes. These approaches were mainly based on research tools not usable in routine clinical practice at the bedside. We observed that a multiplex transcriptomic panel prototype termed Immune...

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Autores principales: Tardiveau, Claire, Monneret, Guillaume, Lukaszewicz, Anne-Claire, Cheynet, Valérie, Cerrato, Elisabeth, Imhoff, Katia, Peronnet, Estelle, Bodinier, Maxime, Kreitmann, Louis, Blein, Sophie, Llitjos, Jean-François, Conti, Filippo, Gossez, Morgane, Buisson, Marielle, Yonis, Hodane, Cour, Martin, Argaud, Laurent, Delignette, Marie-Charlotte, Wallet, Florent, Dailler, Frederic, Monard, Céline, Brengel-Pesce, Karen, Venet, Fabienne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9665875/
https://www.ncbi.nlm.nih.gov/pubmed/36389738
http://dx.doi.org/10.3389/fimmu.2022.1022750
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author Tardiveau, Claire
Monneret, Guillaume
Lukaszewicz, Anne-Claire
Cheynet, Valérie
Cerrato, Elisabeth
Imhoff, Katia
Peronnet, Estelle
Bodinier, Maxime
Kreitmann, Louis
Blein, Sophie
Llitjos, Jean-François
Conti, Filippo
Gossez, Morgane
Buisson, Marielle
Yonis, Hodane
Cour, Martin
Argaud, Laurent
Delignette, Marie-Charlotte
Wallet, Florent
Dailler, Frederic
Monard, Céline
Brengel-Pesce, Karen
Venet, Fabienne
author_facet Tardiveau, Claire
Monneret, Guillaume
Lukaszewicz, Anne-Claire
Cheynet, Valérie
Cerrato, Elisabeth
Imhoff, Katia
Peronnet, Estelle
Bodinier, Maxime
Kreitmann, Louis
Blein, Sophie
Llitjos, Jean-François
Conti, Filippo
Gossez, Morgane
Buisson, Marielle
Yonis, Hodane
Cour, Martin
Argaud, Laurent
Delignette, Marie-Charlotte
Wallet, Florent
Dailler, Frederic
Monard, Céline
Brengel-Pesce, Karen
Venet, Fabienne
author_sort Tardiveau, Claire
collection PubMed
description Immune responses affiliated with COVID-19 severity have been characterized and associated with deleterious outcomes. These approaches were mainly based on research tools not usable in routine clinical practice at the bedside. We observed that a multiplex transcriptomic panel prototype termed Immune Profiling Panel (IPP) could capture the dysregulation of immune responses of ICU COVID-19 patients at admission. Nine transcripts were associated with mortality in univariate analysis and this 9-mRNA signature remained significantly associated with mortality in a multivariate analysis that included age, SOFA and Charlson scores. Using a machine learning model with these 9 mRNA, we could predict the 28-day survival status with an Area Under the Receiver Operating Curve (AUROC) of 0.764. Interestingly, adding patients’ age to the model resulted in increased performance to predict the 28-day mortality (AUROC reaching 0.839). This prototype IPP demonstrated that such a tool, upon clinical/analytical validation and clearance by regulatory agencies could be used in clinical routine settings to quickly identify patients with higher risk of death requiring thus early aggressive intensive care.
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spelling pubmed-96658752022-11-15 A 9-mRNA signature measured from whole blood by a prototype PCR panel predicts 28-day mortality upon admission of critically ill COVID-19 patients Tardiveau, Claire Monneret, Guillaume Lukaszewicz, Anne-Claire Cheynet, Valérie Cerrato, Elisabeth Imhoff, Katia Peronnet, Estelle Bodinier, Maxime Kreitmann, Louis Blein, Sophie Llitjos, Jean-François Conti, Filippo Gossez, Morgane Buisson, Marielle Yonis, Hodane Cour, Martin Argaud, Laurent Delignette, Marie-Charlotte Wallet, Florent Dailler, Frederic Monard, Céline Brengel-Pesce, Karen Venet, Fabienne Front Immunol Immunology Immune responses affiliated with COVID-19 severity have been characterized and associated with deleterious outcomes. These approaches were mainly based on research tools not usable in routine clinical practice at the bedside. We observed that a multiplex transcriptomic panel prototype termed Immune Profiling Panel (IPP) could capture the dysregulation of immune responses of ICU COVID-19 patients at admission. Nine transcripts were associated with mortality in univariate analysis and this 9-mRNA signature remained significantly associated with mortality in a multivariate analysis that included age, SOFA and Charlson scores. Using a machine learning model with these 9 mRNA, we could predict the 28-day survival status with an Area Under the Receiver Operating Curve (AUROC) of 0.764. Interestingly, adding patients’ age to the model resulted in increased performance to predict the 28-day mortality (AUROC reaching 0.839). This prototype IPP demonstrated that such a tool, upon clinical/analytical validation and clearance by regulatory agencies could be used in clinical routine settings to quickly identify patients with higher risk of death requiring thus early aggressive intensive care. Frontiers Media S.A. 2022-11-01 /pmc/articles/PMC9665875/ /pubmed/36389738 http://dx.doi.org/10.3389/fimmu.2022.1022750 Text en Copyright © 2022 Tardiveau, Monneret, Lukaszewicz, Cheynet, Cerrato, Imhoff, Peronnet, Bodinier, Kreitmann, Blein, Llitjos, Conti, Gossez, Buisson, Yonis, Cour, Argaud, Delignette, Wallet, Dailler, Monard, Brengel-Pesce, Venet and the RICO study group https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Tardiveau, Claire
Monneret, Guillaume
Lukaszewicz, Anne-Claire
Cheynet, Valérie
Cerrato, Elisabeth
Imhoff, Katia
Peronnet, Estelle
Bodinier, Maxime
Kreitmann, Louis
Blein, Sophie
Llitjos, Jean-François
Conti, Filippo
Gossez, Morgane
Buisson, Marielle
Yonis, Hodane
Cour, Martin
Argaud, Laurent
Delignette, Marie-Charlotte
Wallet, Florent
Dailler, Frederic
Monard, Céline
Brengel-Pesce, Karen
Venet, Fabienne
A 9-mRNA signature measured from whole blood by a prototype PCR panel predicts 28-day mortality upon admission of critically ill COVID-19 patients
title A 9-mRNA signature measured from whole blood by a prototype PCR panel predicts 28-day mortality upon admission of critically ill COVID-19 patients
title_full A 9-mRNA signature measured from whole blood by a prototype PCR panel predicts 28-day mortality upon admission of critically ill COVID-19 patients
title_fullStr A 9-mRNA signature measured from whole blood by a prototype PCR panel predicts 28-day mortality upon admission of critically ill COVID-19 patients
title_full_unstemmed A 9-mRNA signature measured from whole blood by a prototype PCR panel predicts 28-day mortality upon admission of critically ill COVID-19 patients
title_short A 9-mRNA signature measured from whole blood by a prototype PCR panel predicts 28-day mortality upon admission of critically ill COVID-19 patients
title_sort 9-mrna signature measured from whole blood by a prototype pcr panel predicts 28-day mortality upon admission of critically ill covid-19 patients
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9665875/
https://www.ncbi.nlm.nih.gov/pubmed/36389738
http://dx.doi.org/10.3389/fimmu.2022.1022750
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