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Marie Demion

Showing results (11-20 of 30) with videos related to

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Atherosclerosis|September 28, 2024
Metabolites derived from radical oxidation of PUFA: NEO-PUFAs, promising molecules for health?Anna Abramova, Jamie Bride, Camille Oger, et al.
Biochemical and Biophysical Research Communications|December 27, 2005
A voltage-activated proton current in human cardiac fibroblastsAntoun El Chemaly, Romain Guinamard, Marie Demion, et al.
Journal of Cellular Physiology|March 27, 2019
Prolonged elevated levels of c-kit+ progenitor cells after a myocardial infarction by beta 2 adrenergic receptor primingAmanda Finan, Marie Demion, Pierre Sicard, et al.
Molecular Aspects of Medicine|March 25, 2018
Biological activities of non-enzymatic oxygenated metabolites of polyunsaturated fatty acids (NEO-PUFAs) derived from EPA and DHA: New anti-arrhythmic compounds?Jean-Marie Galano, Jérôme Roy, Thierry Durand, et al.
The Journal of Nutritional Biochemistry|October 12, 2020
Grape polyphenols and exercise training have distinct molecular effects on cardiac hypertrophy in a model of obese insulin-resistant ratsKaren Lambert, Marie Demion, Jean-Christophe Lagacé, et al.
Biology|April 23, 2022
The Effect of Hypothermia and Osmotic Shock on the Electrocardiogram of Adult ZebrafishElodie Arel, Laura Rolland, Jérôme Thireau, et al.
Biochimie|June 27, 2015
Non-enzymatic cyclic oxygenated metabolites of omega-3 polyunsaturated fatty acid: Bioactive drugs?Jérôme Roy, Jean-Yves Le Guennec, Jean-Marie Galano, et al.
Nature Immunology|September 2, 2008
The calcium-activated nonselective cation channel TRPM4 is essential for the migration but not the maturation of dendritic cellsGaëtan Barbet, Marie Demion, Ivan C Moura, et al.
Plos One|December 23, 2014
Trpm4 gene invalidation leads to cardiac hypertrophy and electrophysiological alterationsMarie Demion, Jérôme Thireau, Mélanie Gueffier, et al.
Journal of Muscle Research and Cell Motility|February 23, 2017
The TRPM4 channel is functionally important for the beneficial cardiac remodeling induced by endurance trainingMélanie Gueffier, Justin Zintz, Karen Lambert, et al.
Pageof 3

Showing results (11-20 of 30) with videos related to

Sort By:
Pageof 3
Atherosclerosis|September 28, 2024
Metabolites derived from radical oxidation of PUFA: NEO-PUFAs, promising molecules for health?Anna Abramova, Jamie Bride, Camille Oger, et al.
Biochemical and Biophysical Research Communications|December 27, 2005
A voltage-activated proton current in human cardiac fibroblastsAntoun El Chemaly, Romain Guinamard, Marie Demion, et al.
Journal of Cellular Physiology|March 27, 2019
Prolonged elevated levels of c-kit+ progenitor cells after a myocardial infarction by beta 2 adrenergic receptor primingAmanda Finan, Marie Demion, Pierre Sicard, et al.
Molecular Aspects of Medicine|March 25, 2018
Biological activities of non-enzymatic oxygenated metabolites of polyunsaturated fatty acids (NEO-PUFAs) derived from EPA and DHA: New anti-arrhythmic compounds?Jean-Marie Galano, Jérôme Roy, Thierry Durand, et al.
The Journal of Nutritional Biochemistry|October 12, 2020
Grape polyphenols and exercise training have distinct molecular effects on cardiac hypertrophy in a model of obese insulin-resistant ratsKaren Lambert, Marie Demion, Jean-Christophe Lagacé, et al.
Biology|April 23, 2022
The Effect of Hypothermia and Osmotic Shock on the Electrocardiogram of Adult ZebrafishElodie Arel, Laura Rolland, Jérôme Thireau, et al.
Biochimie|June 27, 2015
Non-enzymatic cyclic oxygenated metabolites of omega-3 polyunsaturated fatty acid: Bioactive drugs?Jérôme Roy, Jean-Yves Le Guennec, Jean-Marie Galano, et al.
Nature Immunology|September 2, 2008
The calcium-activated nonselective cation channel TRPM4 is essential for the migration but not the maturation of dendritic cellsGaëtan Barbet, Marie Demion, Ivan C Moura, et al.
Plos One|December 23, 2014
Trpm4 gene invalidation leads to cardiac hypertrophy and electrophysiological alterationsMarie Demion, Jérôme Thireau, Mélanie Gueffier, et al.
Journal of Muscle Research and Cell Motility|February 23, 2017
The TRPM4 channel is functionally important for the beneficial cardiac remodeling induced by endurance trainingMélanie Gueffier, Justin Zintz, Karen Lambert, et al.
Pageof 3