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钙离子参与低葡萄糖浓度培养的胰岛中葡萄糖诱导的胰岛素释放受损过程。

Involvement of Ca2+ in the impaired glucose-induced insulin release from islets cultured at low glucose.

作者信息

Siegel E G, Wollheim C B, Janjic D, Ribes G, Sharp G W

出版信息

Diabetes. 1983 Nov;32(11):993-1000. doi: 10.2337/diab.32.11.993.

Abstract

Islet culture at a low glucose concentration results in a progressive impairment of glucose-induced insulin release. The role of Ca2+ in this defect was studied by comparing rat islets cultured for 6 days either at 8.3 mM (control) or 2.8 mM glucose. For measurement of 45Ca content and 45Ca2+ efflux, islets were kept in the presence of 45Ca2+ throughout. In islets cultured at 8.3 mM glucose, stimulation with 16.7 mM glucose during perifusion caused a typical biphasic pattern of insulin release paralleled by an increase in the rate of 45Ca2+ efflux. Both effects of glucose were markedly reduced in islets kept at 2.8 mM glucose, despite a similar insulin content. Islet 45Ca content was reduced. Both 45Ca content and insulin release were restored when islets were kept for an additional 24 h at 8.3 mM glucose. Insulin release induced by 3-isobutyl-1-methylxanthine (IBMX) or alpha-ketoisocaproic acid was not impaired, demonstrating that there is no generalized release defect. In contrast, glyceraldehyde- or K+-induced release was decreased. In islets maintained at 2.8 mM glucose, the stimulatory effect of glucose on Ca2+ uptake and the inhibitory effect on Ca2+ efflux (in the absence of Ca2+) were found to be operative. A defect may therefore lie distal to the Ca2+ uptake step involving either the mechanism by which glucose uses cellular Ca or another step yet to be identified.

摘要

在低葡萄糖浓度下培养胰岛会导致葡萄糖诱导的胰岛素释放逐渐受损。通过比较在8.3 mM(对照)或2.8 mM葡萄糖条件下培养6天的大鼠胰岛,研究了Ca2+在这种缺陷中的作用。为了测量45Ca含量和45Ca2+流出,胰岛始终保持在45Ca2+存在的条件下。在8.3 mM葡萄糖培养的胰岛中,灌流期间用16.7 mM葡萄糖刺激会引起典型的双相胰岛素释放模式,同时45Ca2+流出速率增加。尽管胰岛素含量相似,但在2.8 mM葡萄糖条件下培养的胰岛中,葡萄糖的这两种作用均明显降低。胰岛的45Ca含量降低。当胰岛在8.3 mM葡萄糖条件下再培养24小时时,45Ca含量和胰岛素释放均恢复。3-异丁基-1-甲基黄嘌呤(IBMX)或α-酮异己酸诱导的胰岛素释放未受损,表明不存在普遍的释放缺陷。相反,甘油醛或K+诱导的释放减少。在维持在2.8 mM葡萄糖的胰岛中,发现葡萄糖对Ca2+摄取的刺激作用和对Ca2+流出的抑制作用(在无Ca2+的情况下)是有效的。因此,缺陷可能位于涉及葡萄糖利用细胞Ca2+的机制或尚未确定的另一步骤的Ca2+摄取步骤的下游。

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