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神经元钙通道拮抗剂:结构、功能及治疗意义。

Antagonists of neuronal calcium channels: structure, function, and therapeutic implications.

作者信息

Miljanich G P, Ramachandran J

机构信息

Neurex Corporation, Menlo Park, California 94025-1012, USA.

出版信息

Annu Rev Pharmacol Toxicol. 1995;35:707-34. doi: 10.1146/annurev.pa.35.040195.003423.

Abstract

This article reviews the structural and functional diversity of neuronal calcium channels and the therapeutic potential of antagonizing such channels. Through spatial and temporal control of intracellular calcium concentration, voltage-sensitive calcium channels regulate a host of neuronal processes, including neurotransmitter secretion, electrical activity, cytoskeletal function, cell metabolism and proliferation, and gene expression. Several genes elaborate a number of calcium channel isoforms or subtypes--each tailored to specific roles in neuronal function and possessing distinct biophysical properties, distribution, modulation, and pharmacological sensitivity. This diversity has raised the possibility that subtype-specific antagonists could provide novel treatments for some neuropathologies. In fact, neuroprotective and analgesic actions of N-type channel blockers in animals appear to confirm this supposition. These properties prompted human clinical studies evaluating these agents for prevention of neuronal degeneration following ischemic brain trauma and for relief of pain. Future medical applications for these blockers and antagonists of other channels subtypes are discussed.

摘要

本文综述了神经元钙通道的结构和功能多样性以及拮抗此类通道的治疗潜力。电压敏感性钙通道通过对细胞内钙浓度的时空控制,调节一系列神经元过程,包括神经递质分泌、电活动、细胞骨架功能、细胞代谢与增殖以及基因表达。多个基因产生多种钙通道亚型——每种亚型都针对神经元功能中的特定作用进行了调整,并具有独特的生物物理特性、分布、调节方式和药理敏感性。这种多样性增加了亚型特异性拮抗剂可为某些神经病理学提供新治疗方法的可能性。事实上,动物实验中N型通道阻滞剂的神经保护和镇痛作用似乎证实了这一推测。这些特性促使人们开展人体临床研究,评估这些药物用于预防缺血性脑损伤后神经元变性以及缓解疼痛的效果。本文还讨论了这些阻滞剂以及其他通道亚型拮抗剂未来的医学应用。

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