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首页> 外文期刊>Japanese Journal of Pharmacology >Current perspectives in the pharmacological studies of store-operated Ca2+ entry blockers.
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Current perspectives in the pharmacological studies of store-operated Ca2+ entry blockers.

机译:商店运营的Ca2 +进入阻滞剂的药理研究的最新观点。

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摘要

The store-operated Ca2+ entry (SOCE) pathway has aroused much interest recently not only because of its unusual nature as retrograde signaling, but also due to its wide occurrence and its possible role in physiological and pathophysiological situations. A number of synthetic or naturally occurring drugs recently used to block this Ca2+ entry pathway are briefly reviewed. Although important and interesting information has been obtained using these putative SOCE blockers described in this review, they indeed have sites of action other than the SOCE channels, and caution must be exercised in using them as putative tools to study SOCE. For instance, the highly variable potency of some synthetic blockers (SK&F 96365 and LOE 908) to inhibit SOCE has provided indirect evidence for the heterogeneous nature of the SOCE channels, an observation consistent with the differential Mn2+ permeability through SOCE in various cell types. The use of SK&F 96365 at relatively high concentrations has unexpectedly revealed its potential as an opener of a novel cation entry pathway. The ability of LU52396 to discriminate the SOCE channel in its closed/open states may be useful in the analysis of the kinetics of SOCE channel activation/inactivation. The possible presence of both agonistic and antagonistic saponins derived from ginseng plants for the study of SOCE deserves more rigorous experimental investigations, which may lay new ground for the development of new types of Ca2+ antagonists (and/or agonists) from the natural resources.
机译:商店操纵的Ca2 +进入(SOCE)途径最近引起了人们极大的兴趣,这不仅是由于其作为逆行信号的非同寻常的性质,而且还因为它的广泛存在及其在生理和病理生理情况下的可能作用。简要回顾了最近用于阻断Ca2 +进入途径的许多合成或天然药物。尽管使用本综述中描述的这些假定的SOCE阻滞剂已经获得了重要而有趣的信息,但它们的确具有除SOCE通道以外的作用部位,在使用它们作为研究SOCE的假定工具时必须谨慎。例如,某些合成阻滞剂(SK&F 96365和LOE 908)抑制SOCE的高度可变能力为SOCE通道的异质性质提供了间接证据,这一观察结果与各种细胞类型中通过SOCE产生的Mn2 +渗透率的差异一致。相对较高浓度的SK&F 96365的使用出乎意料地揭示了其作为新型阳离子进入途径的开启者的潜力。 LU52396区分SOCE通道处于关闭/打开状态的能力可能有助于分析SOCE通道激活/失活的动力学。来自人参植物的激动剂和拮抗皂苷可能同时存在于SOCE研究中,值得进行更严格的实验研究,这可能为从自然资源开发新型Ca2 +拮抗剂(和/或激动剂)奠定新的基础。

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