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One or more keywords matched the following items that are connected to Xiong, Zhigang
Item TypeName
Academic Article Inhibition of acid sensing ion channel currents by lidocaine in cultured mouse cortical neurons.
Academic Article Local anesthetic lidocaine inhibits TRPM7 current and TRPM7-mediated zinc toxicity.
Academic Article Naturally occurring marine steroid 24-methylenecholestane-3?,5a,6?,19-tetraol functions as a novel neuroprotectant.
Academic Article Amiloride Analogs as ASIC1a Inhibitors.
Concept Cerebral Cortex
Academic Article Subunit-dependent high-affinity zinc inhibition of acid-sensing ion channels.
Academic Article Prolonged activation of ASIC1a and the time window for neuroprotection in cerebral ischaemia.
Academic Article Developmental change in the electrophysiological and pharmacological properties of acid-sensing ion channels in CNS neurons.
Academic Article Ubiquitin proteasome-mediated synaptic reorganization: a novel mechanism underlying rapid ischemic tolerance.
Academic Article Pathophysiologically relevant levels of hydrogen peroxide induce glutamate-independent neurodegeneration that involves activation of transient receptor potential melastatin 7 channels.
Academic Article Acid-sensing ion channels in acidosis-induced injury of human brain neurons.
Academic Article Modulation of acid-sensing ion channel currents, acid-induced increase of intracellular Ca2+, and acidosis-mediated neuronal injury by intracellular pH.
Academic Article Protein Kinase C Regulates ASIC1a Protein Expression and Channel Function via NF-kB Signaling Pathway.
Academic Article Silencing TRPM7 in mouse cortical astrocytes impairs cell proliferation and migration via ERK and JNK signaling pathways.
Academic Article The modulation of TRPM7 currents by nafamostat mesilate depends directly upon extracellular concentrations of divalent cations.
Academic Article Carboxypeptidase E knockout mice exhibit abnormal dendritic arborization and spine morphology in central nervous system neurons.
Academic Article ASIC1a-specific modulation of acid-sensing ion channels in mouse cortical neurons by redox reagents.
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  • Cerebral Cortex
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