Excitotoxic Zn2+ and Ca2+ accumulation contributes to neuronal injury after ischemia or prolonged seizures. Synaptically released Zn2+ can enter postsynaptic neurons via routes including voltage sensitive Ca2+ channels (VSCC), and, more rapidly, through Ca2+ permeable AMPA channels. There are also intracellular Zn2+ binding proteins which can either buffer neuronal Zn2+ influx or release bound Zn2+ into the cytosol during pathologic conditions. Studies in culture highlight mitochondria as possible targets of Zn2+; cytosolic Zn2+ can enter mitochondria and induce effects including loss of mitochondrial membrane potential (ΔΨm), mitochondrial swelling, and reactive oxygen species (ROS) generation. While brief (5 min) neuronal depolarization (...
One of the pathological site effects in excitotoxic activation is Zn2+ overload to postsynaptic neur...
Elevated intracellular Zn2+ levels have been reported to induce neuronal death during acute CNS isch...
Elevated intracellular Zn2+ levels have been reported to induce neuronal death during acute CNS isch...
Excitotoxic Zn2+ and Ca2+ accumulation contributes to neuronal injury after ischemia or prolonged se...
Ischemic stroke is a major cause of death and disabilities worldwide, and it has been long hoped tha...
Excitotoxic Ca2+ accumulation contributes to ischemic neurodegeneration, and Ca2+ can enter the mito...
Excitotoxic Ca2+ accumulation contributes to ischemic neurodegeneration, and Ca2+ can enter the mito...
Excitotoxic Ca2+ accumulation contributes to ischemic neurodegeneration, and Ca2+ can enter the mito...
Ischemic stroke is a major cause of death and disabilities worldwide, and it has been long hoped tha...
Despite considerable evidence for contributions of both Zn2+ and Ca2+ in ischemic brain damage, the ...
Ischemic stroke is a major cause of death and disabilities worldwide, and it has been long hoped tha...
Excessive "excitotoxic" accumulation of Ca(2+) and Zn(2+) within neurons contributes to neurodegener...
Ca(2+) and Zn(2+) have both been implicated in the induction of acute ischemic neurodegeneration. We...
Excitotoxic mechanisms contribute to the degeneration of hippocampal pyramidal neurons after recurre...
Excitotoxic mechanisms contribute to the degeneration of hippocampal pyramidal neurons after recurre...
One of the pathological site effects in excitotoxic activation is Zn2+ overload to postsynaptic neur...
Elevated intracellular Zn2+ levels have been reported to induce neuronal death during acute CNS isch...
Elevated intracellular Zn2+ levels have been reported to induce neuronal death during acute CNS isch...
Excitotoxic Zn2+ and Ca2+ accumulation contributes to neuronal injury after ischemia or prolonged se...
Ischemic stroke is a major cause of death and disabilities worldwide, and it has been long hoped tha...
Excitotoxic Ca2+ accumulation contributes to ischemic neurodegeneration, and Ca2+ can enter the mito...
Excitotoxic Ca2+ accumulation contributes to ischemic neurodegeneration, and Ca2+ can enter the mito...
Excitotoxic Ca2+ accumulation contributes to ischemic neurodegeneration, and Ca2+ can enter the mito...
Ischemic stroke is a major cause of death and disabilities worldwide, and it has been long hoped tha...
Despite considerable evidence for contributions of both Zn2+ and Ca2+ in ischemic brain damage, the ...
Ischemic stroke is a major cause of death and disabilities worldwide, and it has been long hoped tha...
Excessive "excitotoxic" accumulation of Ca(2+) and Zn(2+) within neurons contributes to neurodegener...
Ca(2+) and Zn(2+) have both been implicated in the induction of acute ischemic neurodegeneration. We...
Excitotoxic mechanisms contribute to the degeneration of hippocampal pyramidal neurons after recurre...
Excitotoxic mechanisms contribute to the degeneration of hippocampal pyramidal neurons after recurre...
One of the pathological site effects in excitotoxic activation is Zn2+ overload to postsynaptic neur...
Elevated intracellular Zn2+ levels have been reported to induce neuronal death during acute CNS isch...
Elevated intracellular Zn2+ levels have been reported to induce neuronal death during acute CNS isch...