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咪唑啉类药物使小鼠胰岛中细胞溶质钙升高:对胰岛素释放刺激-反应偶联的影响

Elevation of cytosolic calcium by imidazolines in mouse islets of Langerhans: implications for stimulus-response coupling of insulin release.

作者信息

Shepherd R M, Hashmi M N, Kane C, Squires P E, Dunne M J

机构信息

Department of Biomedical Science, University of Sheffield, Western Bank.

出版信息

Br J Pharmacol. 1996 Nov;119(5):911-6. doi: 10.1111/j.1476-5381.1996.tb15759.x.

Abstract
  1. Microfluorimetry techniques with fura-2 were used to characterize the effects of efaroxan (200 microM), phenotolamine (200-500 microM) and idazoxan (200-500 microM) on the intracellular free Ca2+ concentration ([Ca2+]i) in mouse isolated islets of Langerhans. 2. The imidazoline receptor agonists efaroxan and phentolamine consistently elevated cytosolic Ca2+ by mechanisms that were dependent upon Ca2+ influx across the plasma membrane; there was no rise in [Ca2+]i when Ca2+ was removed from outside of the islets and diazoxide (100-250 microM) attenuated the responses. 3. Modulation of cytosolic [Ca2+]i by efaroxan and phentolamine was augmented by glucose (5-10 mM) which both potentiated the magnitude of the response and reduced the onset time of imidazoline-induced rises in [Ca2+]i. 4. Efaroxan- and phentolamine-evoked increases in [Ca2+]i were unaffected by overnight pretreatment of islets with the imidazolines. Idazoxan failed to increase [Ca2+]i under any experimental condition tested. 5. The putative endogenous ligand of imidazoline receptors, agmatine (1 microM-1 mM), blocked KATP channels in isolated patches of beta-cell membrane, but effects upon [Ca2+]i could not be further investigated since agmatine disrupts fura-2 fluorescence. 6. In conclusion, the present study shows that imidazolines will evoke rises in [Ca2+]i in intact islets, and this provides an explanation to account for the previously described effects of imidazolines on KATP channels, the cell membrane potential and insulin secretion in pancreatic beta-cells.
摘要
  1. 采用fura - 2微荧光测定技术,以表征依酚氯铵(200微摩尔)、酚妥拉明(200 - 500微摩尔)和咪唑克生(200 - 500微摩尔)对小鼠分离的胰岛细胞内游离钙离子浓度([Ca2+]i)的影响。2. 咪唑啉受体激动剂依酚氯铵和酚妥拉明通过依赖于钙离子跨质膜内流的机制持续升高胞质钙离子浓度;当从胰岛外部去除钙离子时,[Ca2+]i没有升高,且二氮嗪(100 - 250微摩尔)减弱了该反应。3. 葡萄糖(5 - 10毫摩尔)增强了依酚氯铵和酚妥拉明对胞质[Ca2+]i的调节作用,这既增强了反应幅度,又缩短了咪唑啉诱导的[Ca2+]i升高的起始时间。4. 依酚氯铵和酚妥拉明引起的[Ca2+]i升高不受咪唑啉对胰岛过夜预处理的影响。在任何测试的实验条件下,咪唑克生都未能增加[Ca2+]i。5. 咪唑啉受体的假定内源性配体胍丁胺(1微摩尔 - 1毫摩尔)在分离的β细胞膜片上阻断了KATP通道,但由于胍丁胺会破坏fura - 2荧光,因此无法进一步研究其对[Ca2+]i的影响。6. 总之,本研究表明咪唑啉会引起完整胰岛中[Ca2+]i升高,这为解释咪唑啉先前对胰腺β细胞中KATP通道、细胞膜电位和胰岛素分泌的影响提供了依据。

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本文引用的文献

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Pflugers Arch. 1994 May;427(1-2):181-3. doi: 10.1007/BF00585959.

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