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首页> 外文期刊>Life sciences >PLANT ALKALOIDS, TETRANDRINE AND HERNANDEZINE, INHIBIT CALCIUM-DEPLETION STIMULATED CALCIUM ENTRY IN HUMAN AND BOVINE ENDOTHELIAL CELLS
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PLANT ALKALOIDS, TETRANDRINE AND HERNANDEZINE, INHIBIT CALCIUM-DEPLETION STIMULATED CALCIUM ENTRY IN HUMAN AND BOVINE ENDOTHELIAL CELLS

机译:植物中的碱,四氢化萘和苦味精,抑制人和牛血管内皮细胞中钙的消耗刺激钙的进入

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Depletion of internal Ca2+ stores causes capacitative Ca2+ entry which occurs through non-selective cation channels sensitive to blockade by SK&F 96365. Recently, alkaloids of Chinese herbal medicinal origin, tetrandrine and hernandezine, have been shown to possess actions including inhibition of Ca2+ channels in non-excitable cell types. In this study, we compared the actions of these novel inhibitors to those of SK&F 96365 in fura-2-loaded endothelial cells from human umbilical vein and bovine pulmonary artery. Depletion of Ca2+ from the internal stores was accomplished in Ca2+-free medium using an endoplasmic reticulum Ca2+ pump inhibitor, cyclopiazonic acid (CPA) or receptor agonists, histamine and bradykinin. Stimulation with histamine or bradykinin caused a marked and rapid transient increase in Ca2+ signal whereas CPA caused a smaller amplitude increase of longer duration. Restoring Ca2+ to the medium caused marked and sustained increases in the fluorescence indicating movement of Ca2+ into the cytosol presumably stimulated by the emptied Ca2+ stores. SK&F 96365 as well as tetrandrine and hemandezine antagonized depletion-induced Ca2+ entry. The results suggest that these putative inhibitors interact with Ca2+ entry triggered by depletion of the internal Ca2+ stores and their action is presumed to be on the non-selective cation channels. Their effectiveness may be enhanced by the mechanisms which lead to the opening of the Ca2+ influx channel. [References: 22]
机译:内部Ca2 +储存库的耗尽会导致电容性Ca2 +进入,其通过对SK&F 96365敏感的非选择性阳离子通道发生。最近,中草药生物碱,粉防己碱和hernandezine被证明具有抑制非Ca2 +通道的作用。兴奋细胞类型。在这项研究中,我们比较了这些新型抑制剂与SK&F 96365在人类脐静脉和牛肺动脉的呋喃2加载的内皮细胞中的作用。使用内质网Ca2 +泵抑制剂,环吡嗪酸(CPA)或受体激动剂,组胺和缓激肽在无Ca2 +的培养基中完成内部存储中Ca2 +的消耗。用组胺或缓激肽刺激可引起Ca2 +信号明显且快速的瞬时增加,而CPA可引起较长持续时间的较小幅度增加。将Ca2 +还原到培养基中会引起荧光的显着且持续的增加,表明Ca2 +移入大概是由空的Ca2 +储存物刺激的细胞质中。 SK&F 96365以及粉防己碱和金刚烷胺拮抗耗竭诱导的Ca2 +进入。结果表明,这些推定的抑制剂与内部Ca2 +储存耗竭触发的Ca2 +进入相互作用,并且推测它们的作用是在非选择性阳离子通道上。可以通过打开Ca2 +流入通道的机制来增强其有效性。 [参考:22]

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