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Claire Masterson

Showing results (1-10 of 35) with videos related to

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Stem Cell Research & Therapy|August 27, 2014
The mesenchymal stromal cell magic bullet finds yet another targetClaire Masterson, Daniel O'Toole
The European Respiratory Journal|October 15, 2021
Understanding the impact of the lung microenvironment to enhance the therapeutic potential of mesenchymal stromal cells for acute respiratory distress syndromeClaire Masterson, Hector Gonzalez, John G Laffey
Current Opinion in Anaesthesiology|December 16, 2014
Permissive hypercapnia: what to rememberMaya Contreras, Claire Masterson, John G Laffey
Current Opinion in Critical Care|December 30, 2014
Hypercapnia: clinical relevance and mechanisms of actionClaire Masterson, Gail Otulakowski, Brian P Kavanagh
Current Opinion in Critical Care|December 10, 2015
Stem cell therapy for acute respiratory distress syndrome: a promising future?Shahd Horie, Claire Masterson, James Devaney, et al.
Anesthesiology|February 24, 2018
Mechanical Ventilation Induces Desensitization of Lung Axl Tyrosine Kinase ReceptorsGail Otulakowski, Doreen Engelberts, Martin Post, et al.
American Journal of Respiratory Cell and Molecular Biology|December 30, 2017
Hypercapnic Acidosis Regulates Mer Tyrosine Kinase Receptor Shedding and ActivityGail Otulakowski, Doreen Engelberts, Martin Post, et al.
Intensive Care Medicine Experimental|October 17, 2015
Mesenchymal stromal cells are more effective than the MSC secretome in diminishing injury and enhancing recovery following ventilator-induced lung injuryMairead Hayes, Gerard F Curley, Claire Masterson, et al.
Critical Care Medicine|November 20, 2015
Effects and Mechanisms by Which Hypercapnic Acidosis Inhibits Sepsis-Induced Canonical Nuclear Factor-κB Signaling in the LungClaire Masterson, Daniel O'Toole, Annemarie Leo, et al.
Intensive Care Medicine Experimental|March 23, 2016
Hypercapnic acidosis attenuates pulmonary epithelial stretch-induced injury via inhibition of the canonical NF-κB pathwayShahd Horie, Bilal Ansari, Claire Masterson, et al.
Pageof 4

Showing results (1-10 of 35) with videos related to

Sort By:
Pageof 4
Stem Cell Research & Therapy|August 27, 2014
The mesenchymal stromal cell magic bullet finds yet another targetClaire Masterson, Daniel O'Toole
The European Respiratory Journal|October 15, 2021
Understanding the impact of the lung microenvironment to enhance the therapeutic potential of mesenchymal stromal cells for acute respiratory distress syndromeClaire Masterson, Hector Gonzalez, John G Laffey
Current Opinion in Anaesthesiology|December 16, 2014
Permissive hypercapnia: what to rememberMaya Contreras, Claire Masterson, John G Laffey
Current Opinion in Critical Care|December 30, 2014
Hypercapnia: clinical relevance and mechanisms of actionClaire Masterson, Gail Otulakowski, Brian P Kavanagh
Current Opinion in Critical Care|December 10, 2015
Stem cell therapy for acute respiratory distress syndrome: a promising future?Shahd Horie, Claire Masterson, James Devaney, et al.
Anesthesiology|February 24, 2018
Mechanical Ventilation Induces Desensitization of Lung Axl Tyrosine Kinase ReceptorsGail Otulakowski, Doreen Engelberts, Martin Post, et al.
American Journal of Respiratory Cell and Molecular Biology|December 30, 2017
Hypercapnic Acidosis Regulates Mer Tyrosine Kinase Receptor Shedding and ActivityGail Otulakowski, Doreen Engelberts, Martin Post, et al.
Intensive Care Medicine Experimental|October 17, 2015
Mesenchymal stromal cells are more effective than the MSC secretome in diminishing injury and enhancing recovery following ventilator-induced lung injuryMairead Hayes, Gerard F Curley, Claire Masterson, et al.
Critical Care Medicine|November 20, 2015
Effects and Mechanisms by Which Hypercapnic Acidosis Inhibits Sepsis-Induced Canonical Nuclear Factor-κB Signaling in the LungClaire Masterson, Daniel O'Toole, Annemarie Leo, et al.
Intensive Care Medicine Experimental|March 23, 2016
Hypercapnic acidosis attenuates pulmonary epithelial stretch-induced injury via inhibition of the canonical NF-κB pathwayShahd Horie, Bilal Ansari, Claire Masterson, et al.
Pageof 4