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Fundamental & Clinical Pharmacology|February 25, 2012
Mitochondrial basis of the anti-arrhythmic action of lidocaine and modulation by the n-6 to n-3 PUFA ratio of cardiac phospholipidsLuc Demaison, Daniel Moreau, Fabienne Clauw, et al.The Biochemical Journal|December 8, 2004
Pharmacokinetics of 1-nitrosomelatonin and detection by EPR using iron dithiocarbamate complex in miceFabienne Peyrot, Catherine Grillon, Catherine Vergely, et al.International Journal of Molecular Sciences|August 27, 2021
GDF15 and Cardiac Cells: Current Concepts and New InsightsLuc Rochette, Geoffrey Dogon, Marianne Zeller, et al.Journal of Physiology and Biochemistry|March 3, 2019
About the controversies of the cardioprotective effect of n-3 polyunsaturated fatty acids (PUFAs) between animal studies and clinical meta-analyses: a review with several strategies to enhance the beneficial effects of n-3 PUFAsLuc Demaison, Thibault Leger, Catherine Vergely, et al.Archives of Cardiovascular Diseases|July 19, 2020
Role of humanin, a mitochondrial-derived peptide, in cardiovascular disordersLuc Rochette, Alexandre Meloux, Marianne Zeller, et al.Biochimica Et Biophysica Acta. Molecular Basis of Disease|April 19, 2020
Functional roles of GDF15 in modulating microenvironment to promote carcinogenesisLuc Rochette, Alexandre Méloux, Marianne Zeller, et al.Archives of Biochemistry and Biophysics|December 5, 2003
Identification and quantification of free radicals during myocardial ischemia and reperfusion using electron paramagnetic resonance spectroscopyCatherine Vergely, Véronique Maupoil, Gaelle Clermont, et al.Brain Sciences|August 26, 2023
Antitumoral Activity of Molecular Hydrogen and Proton in the Treatment of Glioblastoma: An Atypical Pharmacology?Luc Rochette, Geoffrey Dogon, Marianne Zeller, et al.Pharmacology & Therapeutics|September 5, 2017
The role of osteoprotegerin in the crosstalk between vessels and bone: Its potential utility as a marker of cardiometabolic diseasesLuc Rochette, Alexandre Meloux, Eve Rigal, et al.Free Radical Biology & Medicine|June 21, 2006
NADPH oxidases are in part responsible for increased cardiovascular superoxide production during agingAlexandra Oudot, Caroline Martin, David Busseuil, et al.Pageof 14