Greenberg D A
Ann Neurol. 1987 Apr;21(4):317-30. doi: 10.1002/ana.410210402.
Changes in free intracellular Ca2+ levels provide signals that allow nerve and muscle cells to respond to a host of external stimuli. A major mechanism for elevating the level of intracellular Ca2+ is the influx of extracellular Ca2+ through voltage-dependent channels in the cell membrane. Recent research has yielded new insights into the physiological properties, molecular structure, biochemical regulation, and functional heterogeneity of voltage-dependent Ca2+ channels. In addition, Ca2+ channel antagonist drugs have been developed that are valuable both as probes of channel structure and function and as therapeutic agents. Preliminary evidence suggests that these drugs may be useful in the treatment of diverse neurological disorders, including headache, subarachnoid hemorrhage, stroke, and epilepsy.
细胞内游离钙离子水平的变化会产生信号,使神经和肌肉细胞能够对一系列外部刺激做出反应。提高细胞内钙离子水平的一个主要机制是细胞外钙离子通过细胞膜上的电压依赖性通道流入细胞。最近的研究对电压依赖性钙离子通道的生理特性、分子结构、生化调节和功能异质性有了新的认识。此外,已经开发出钙离子通道拮抗剂药物,这些药物作为通道结构和功能的探针以及治疗剂都很有价值。初步证据表明,这些药物可能对治疗多种神经系统疾病有用,包括头痛、蛛网膜下腔出血、中风和癫痫。