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L-Type Calcium Channels Modulation by Estradiol
(Humana Press Inc., 2017)
Food restriction promotes downregulation of myocardial L-type Ca2+ channels
(Canadian Science Publishing, Nrc Research Press, 2009-06-01)
Food restriction (FR) has been shown to impair myocardial performance. However, the mechanisms behind these changes in myocardial function due to FR remain unknown. Since myocardial L-type Ca2+ channels may contribute to ...
Food restriction promotes downregulation of myocardial L-type Ca2+ channels
(Canadian Science Publishing, Nrc Research Press, 2009-06-01)
Food restriction (FR) has been shown to impair myocardial performance. However, the mechanisms behind these changes in myocardial function due to FR remain unknown. Since myocardial L-type Ca2+ channels may contribute to ...
Food restriction promotes downregulation of myocardial L-type Ca2+ channels
(Canadian Science Publishing, Nrc Research Press, 2014)
Diverse calcium channel types are present in the human placental syncytiotrophoblast basal membrane
(W B SAUNDERS CO LTD, 2006-12)
The functional expression of calcium channels has been scarcely studied in human placental syncytiotrophoblast. We have presently sought to characterize Ca2+ currents of the healthy syncytiotrophoblast basal membrane using ...
Differential effects of beta 1 and beta 2 subunits on BK channel activity
(ROCKEFELLER UNIV PRESS, 2005-04)
High conductance, calcium- and voltage-activated potassium (BK) channels are widely expressed in mammals. In some tissues, the biophysical properties of BK channels are highly affected by coexpression of regulatory (beta) ...
Functional heterogeneity of the four voltage sensors of a human l-type calcium channel
(NATIONAL ACADEMY OF SCIENCES, 2014)
L-Type Calcium Channels Modulation by Estradiol
(2017-09-01)
Voltage-gated calcium channels are key regulators of brain function, and their dysfunction has been associated with multiple conditions and neurodegenerative diseases because they couple membrane depolarization to the ...
Carotid body type-I cells under chronic sustained hypoxia: Focus on metabolism and membrane excitability
(Frontiers Media S.A., 2018)