CXCL10 could drive longer duration of mechanical ventilation during COVID-19 ARDS

被引:0
作者
Mathieu Blot
Marine Jacquier
Ludwig-Serge Aho Glele
Guillaume Beltramo
Maxime Nguyen
Philippe Bonniaud
Sebastien Prin
Pascal Andreu
Belaid Bouhemad
Jean-Baptiste Bour
Christine Binquet
Lionel Piroth
Jean-Paul Pais de Barros
David Masson
Jean-Pierre Quenot
Pierre-Emmanuel Charles
机构
[1] Dijon Bourgogne University Hospital,Infectious Diseases Department
[2] INSERM,Department of Pneumology
[3] LNC UMR 1231,Anesthesiology and Critical Care Department
[4] FCS Bourgogne-Franche Comté,Laboratory of Virology
[5] LipSTIC LabEx,Lipidomic Analytic Unit
[6] Dijon Bourgogne University Hospital,Laboratory of Clinical Chemistry
[7] Dijon Bourgogne University Hospital,Department of Intensive Care
[8] Dijon Bourgogne University Hospital,Epidemiology and Hospital Hygiene Department
[9] INSERM,undefined
[10] CIC1432,undefined
[11] Clinical Epidemiology unit; Dijon Bourgogne University Hospital,undefined
[12] Clinical Investigation Center,undefined
[13] Clinical Epidemiology/Clinical trials unit,undefined
[14] University Bourgogne Franche-Comté,undefined
[15] Dijon Bourgogne University Hospital,undefined
[16] Dijon Bourgogne University Hospital,undefined
[17] Dijon Bourgogne University Hospital,undefined
来源
Critical Care | / 24卷
关键词
Acute respiratory distress syndrome; COVID-19; SARS-CoV-2; Mechanical ventilation; Immune response; Bronchoalveolar lavage; CXCL10; Mitochondrial DNA; Biomarker;
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