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Publications

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Filtres: Author is Mohamed Chahine  [Enlever les filtres]
2015
Gosselin-Badaroudine P, Moreau A, Delemotte L, Cens T, Collet C, Rousset M, Charnet P, Klein ML, Chahine M. Characterization of the honeybee AmNaV1 channel and tools to assess the toxicity of insecticides. Sci Rep. 2015;5:12475.
Thériault O, Poulin H, Beaulieu J-M, Chahine M. Differential modulation of Nav1.7 and Nav1.8 channels by antidepressant drugs. Eur J Pharmacol. 2015;764:395-403.
Mamou Z, Chahine M, Rhondali O, Dehina L, Chevalier P, Descotes J, Bui-Xuan B, Romestaing C, Timour Q. Effects of amlodipine and perindoprilate on the structure and function of mitochondria in ventricular cardiomyocytes during ischemia-reperfusion in the pig. Fundam Clin Pharmacol. 2015;29(1):21-30.
Chahine M. Gating pore current is a novel biophysical defect of Nav1.5 mutations associated with unusual cardiac arrhythmias and dilation. Future Cardiol. 2015;11(3):287-91.
Moreau A, Gosselin-Badaroudine P, Chahine M. Gating pore currents, a new pathological mechanism underlying cardiac arrhythmias associated with dilated cardiomyopathy. Channels (Austin). 2015;9(3):139-44.
Moreau A, Gosselin-Badaroudine P, Delemotte L, Klein ML, Chahine M. Gating pore currents are defects in common with two Nav1.5 mutations in patients with mixed arrhythmias and dilated cardiomyopathy. J Gen Physiol. 2015;145(2):93-106.
Cens T, Rousset M, Collet C, Charreton M, Garnery L, Le Conte Y, Chahine M, Sandoz J-C, Charnet P. Molecular characterization and functional expression of the Apis mellifera voltage-dependent Ca2+ channels. Insect Biochem Mol Biol. 2015;58:12-27.
O'Leary ME, Chahine M. MTSET modification of D4S6 cysteines stabilize the fast inactivated state of Nav1.5 sodium channels. Front Pharmacol. 2015;6:118.
Moreau A, Gosselin-Badaroudine P, Boutjdir M, Chahine M. Mutations in the Voltage Sensors of Domains I and II of Nav1.5 that are Associated with Arrhythmias and Dilated Cardiomyopathy Generate Gating Pore Currents. Front Pharmacol. 2015;6:301.
Moreau A, Chahine M. [Omega pore, an alternative ion channel permeation pathway involved in the development of several channelopathies]. Med Sci (Paris). 2015;31(8-9):735-41.

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