We employed whole cell patch-clamp recordings to establish the effect of Zn2+ on the gating the brain specific, T-type channel isoform CaV3.3 expressed in HEK-293 cells. Zn2+ (300 µM) modified the gating kinetics of this channel without influencing its steady-state properties. When inward Ca2+ currents were elicited by step depolarizations at voltages above the threshold for channel opening, current inactivation was significantly slowed down while current activation was moderately affected. In addition, Zn2+ slowed down channel deactivation but channel recovery from inactivation was only modestly changed. Zn2+ also decreased whole cell Ca2+ permeability to 45% of control values. In the presence of Zn2+, Ca2+ currents evoked by mock action p...
Excitotoxic Zn2+ and Ca2+ accumulation contributes to neuronal injury after ischemia or prolonged se...
Excitotoxic Zn2+ and Ca2+ accumulation contributes to neuronal injury after ischemia or prolonged se...
One of the pathological site effects in excitotoxic activation is Zn2+ overload to postsynaptic neur...
We employed whole cell patch-clamp recordings to establish the effect of Zn2+ on the gating the brai...
We employed whole cell patch-clamp recordings to establish the effect of Zn2+ on the gating the brai...
We employed whole cell patch-clamp recordings to establish the effect of Zn(2+) on the gating the br...
Whole-cell, patch-clamp recordings were carried out in acutely dissociated neurons from entorhinal c...
Abstract—The effects of Zn2 were evaluated on high-volt-age-activated Ca2 currents expressed by py...
Zn2+ has been suggested to act as an intracellular signaling molecule due to its regulatory effects ...
1. Whole-cell voltage clamp recordings were used to study the action of the transition ion zinc on t...
1. Whole-cell voltage clamp recordings were used to study the action of the transition ion zinc on t...
AbstractThe essential cation zinc (Zn2+) blocks voltage-dependent calcium channels in several cell t...
AbstractModulation of voltage-dependent transient K+ currents (A type K+ or KA current) by Zn2+ was ...
The effect of Zn2+ 100 microM-1 mM has been studied on the kinetics of the A-current in granule cell...
AbstractZinc accumulates in the synaptic vesicles of certain glutamatergic forebrain neurons and mod...
Excitotoxic Zn2+ and Ca2+ accumulation contributes to neuronal injury after ischemia or prolonged se...
Excitotoxic Zn2+ and Ca2+ accumulation contributes to neuronal injury after ischemia or prolonged se...
One of the pathological site effects in excitotoxic activation is Zn2+ overload to postsynaptic neur...
We employed whole cell patch-clamp recordings to establish the effect of Zn2+ on the gating the brai...
We employed whole cell patch-clamp recordings to establish the effect of Zn2+ on the gating the brai...
We employed whole cell patch-clamp recordings to establish the effect of Zn(2+) on the gating the br...
Whole-cell, patch-clamp recordings were carried out in acutely dissociated neurons from entorhinal c...
Abstract—The effects of Zn2 were evaluated on high-volt-age-activated Ca2 currents expressed by py...
Zn2+ has been suggested to act as an intracellular signaling molecule due to its regulatory effects ...
1. Whole-cell voltage clamp recordings were used to study the action of the transition ion zinc on t...
1. Whole-cell voltage clamp recordings were used to study the action of the transition ion zinc on t...
AbstractThe essential cation zinc (Zn2+) blocks voltage-dependent calcium channels in several cell t...
AbstractModulation of voltage-dependent transient K+ currents (A type K+ or KA current) by Zn2+ was ...
The effect of Zn2+ 100 microM-1 mM has been studied on the kinetics of the A-current in granule cell...
AbstractZinc accumulates in the synaptic vesicles of certain glutamatergic forebrain neurons and mod...
Excitotoxic Zn2+ and Ca2+ accumulation contributes to neuronal injury after ischemia or prolonged se...
Excitotoxic Zn2+ and Ca2+ accumulation contributes to neuronal injury after ischemia or prolonged se...
One of the pathological site effects in excitotoxic activation is Zn2+ overload to postsynaptic neur...