AbstractUsing whole-cell patch-clamp recording, we demonstrate that exposure of single rat brain capillary endothelial cells to different extracellular Mg2+ concentrations (0.3, 4.8 and 9.6 mM) affects the conductance of K+ and Ca2+ currents elicited under control conditions (1.2 mM). Extracellular Mg2+ concentrations ([Mg2+]o) of 4.8 and 9.6 mM reversibly depress outward K+ currents by about 30 ± 12% (n =10) and 3% ± 13%(n = 10), at all activating potentials, respectively. Using identical concentrations reversibly depressed the Ca2+ current by about 40 ± 16% (n = 8) and 46 ± 18% (n = 6), respectively. Using a low Mg2+ concentration of 0.3 mM, the K+ current activation was unexpectedly and mildly increased by about 15 ± 5% (n = 5), and the ...
Tail currents through Na+ channels have been measured in inside-out patches from Xenopus laevis oocy...
Extracellular magnesium salts are known to interfere with ionic channels in the cellular membranes. ...
Extracellular magnesium salts are known to interfere with ionic channels in the cellular membranes. ...
AbstractUsing whole-cell patch-clamp recording, we demonstrate that exposure of single rat brain cap...
OBJECTIVE: Intracellular magnesium ions (Mg2+i) are important in the regulation of a wide range of c...
Increasing the plasma concentration of Mg²⁺ above normal levels results in the dilation of cerebral...
Increasing the plasma concentration of Mg²⁺ above normal levels results in the dilation of cerebral...
We have studied the role of Mg2+ in the inactivation of inwardly rectifying K+ channels in vascular ...
We have studied the role of Mg2+ in the inactivation of inwardly rectifying K+ channels in vascular ...
We have studied the role of Mg2+ in the inactivation of inwardly rectifying K+ channels in vascular ...
Tail currents through Na+ channels have been measured in inside-out patches from Xenopus laevis oocy...
This study investigated the modulatory effect of magnesium (Mg++) on basal and agonist-stimulated in...
AbstractBiophysical properties of the Ca2+-activated nonselective cation channel expressed in brain ...
AbstractThis study aimed to investigate the intracellular Mg2+ regulation of the L-type Ca2+ channel...
Endothelial K+ and Ca2+ homeostasis plays an important role in the regulation of tissue supply and m...
Tail currents through Na+ channels have been measured in inside-out patches from Xenopus laevis oocy...
Extracellular magnesium salts are known to interfere with ionic channels in the cellular membranes. ...
Extracellular magnesium salts are known to interfere with ionic channels in the cellular membranes. ...
AbstractUsing whole-cell patch-clamp recording, we demonstrate that exposure of single rat brain cap...
OBJECTIVE: Intracellular magnesium ions (Mg2+i) are important in the regulation of a wide range of c...
Increasing the plasma concentration of Mg²⁺ above normal levels results in the dilation of cerebral...
Increasing the plasma concentration of Mg²⁺ above normal levels results in the dilation of cerebral...
We have studied the role of Mg2+ in the inactivation of inwardly rectifying K+ channels in vascular ...
We have studied the role of Mg2+ in the inactivation of inwardly rectifying K+ channels in vascular ...
We have studied the role of Mg2+ in the inactivation of inwardly rectifying K+ channels in vascular ...
Tail currents through Na+ channels have been measured in inside-out patches from Xenopus laevis oocy...
This study investigated the modulatory effect of magnesium (Mg++) on basal and agonist-stimulated in...
AbstractBiophysical properties of the Ca2+-activated nonselective cation channel expressed in brain ...
AbstractThis study aimed to investigate the intracellular Mg2+ regulation of the L-type Ca2+ channel...
Endothelial K+ and Ca2+ homeostasis plays an important role in the regulation of tissue supply and m...
Tail currents through Na+ channels have been measured in inside-out patches from Xenopus laevis oocy...
Extracellular magnesium salts are known to interfere with ionic channels in the cellular membranes. ...
Extracellular magnesium salts are known to interfere with ionic channels in the cellular membranes. ...