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通过细胞内钙动力学控制单个小鼠胰岛的脉动性5-羟色胺/胰岛素分泌。

Control of pulsatile 5-HT/insulin secretion from single mouse pancreatic islets by intracellular calcium dynamics.

作者信息

Barbosa R M, Silva A M, Tomé A R, Stamford J A, Santos R M, Rosário L M

机构信息

Centre for Neurosciences of Coimbra, Laboratory of Instrumental Analysis, Faculty of Pharmacy, University of Coimbra, Coimbra, Portugal.

出版信息

J Physiol. 1998 Jul 1;510 ( Pt 1)(Pt 1):135-43. doi: 10.1111/j.1469-7793.1998.135bz.x.

Abstract
  1. Glucose-induced insulin release from single islets of Langerhans is pulsatile. We have investigated the correlation between changes in cytosolic free calcium concentration ([Ca2+]i) and oscillatory insulin secretion from single mouse islets, in particular examining the basis for differences in secretory responses to intermediate and high glucose concentrations. Insulin release was monitored in real time through the amperometric detection of the surrogate insulin marker 5-hydroxytryptamine (5-HT) via carbon fibre microelectrodes. The [Ca2+]i was simultaneously recorded by whole-islet fura-2 microfluorometry. 2. In 82 % of the experiments, exposure to 11 mM glucose evoked regular high-frequency (average, 3.4 min-1) synchronous oscillations in amperometric current and [Ca2+]i. In the remaining experiments (18 %), 11 mM glucose induced an oscillatory pattern consisting of high-frequency [Ca2+]i oscillations that were superimposed on low-frequency (average, 0.32 min-1) [Ca2+]i waves. Intermittent high-frequency [Ca2+]i oscillations gave rise to a similar pattern of pulsatile 5-HT release. 3. Raising the glucose concentration from 11 to 20 mM increased the duration of the steady-state [Ca2+]i oscillations without increasing their amplitude. In contrast, both the duration and amplitude of the associated 5-HT transients were increased by glucose stimulation. The amount of 5-HT released per secretion cycle was linearly related to the duration of the underlying [Ca2+]i oscillations in both 11 and 20 mM glucose. The slopes of the straight lines were identical, indicating that there is no significant difference between the ability of calcium oscillations to elicit 5-HT/insulin release in 11 and 20 mM glucose. 4. In situ 5-HT microamperometry has the potential to resolve the high-frequency oscillatory component of the second phase of glucose-induced insulin secretion. This component appears to reflect primarily the duration of the underlying [Ca2+]i oscillations, suggesting that glucose metabolism and/or access to glucose metabolites is not rate limiting to fast pulsatile insulin release.
摘要
  1. 葡萄糖诱导的朗格汉斯单胰岛胰岛素释放是脉冲式的。我们研究了单个小鼠胰岛胞质游离钙浓度([Ca2+]i)变化与振荡性胰岛素分泌之间的相关性,特别考察了对中等和高葡萄糖浓度分泌反应差异的基础。通过碳纤维微电极对替代胰岛素标志物5-羟色胺(5-HT)进行安培检测实时监测胰岛素释放。同时通过全胰岛fura-2显微荧光测定法记录[Ca2+]i。2. 在82%的实验中,暴露于11 mM葡萄糖会引起安培电流和[Ca2+]i有规律的高频(平均3.4次/分钟)同步振荡。在其余实验(18%)中,11 mM葡萄糖诱导出一种振荡模式,由叠加在低频(平均0.32次/分钟)[Ca2+]i波上的高频[Ca2+]i振荡组成。间歇性高频[Ca2+]i振荡产生类似的脉冲式5-HT释放模式。3. 将葡萄糖浓度从11 mM提高到20 mM会增加[Ca2+]i振荡稳态的持续时间,但不增加其幅度。相反,葡萄糖刺激会增加相关5-HT瞬变的持续时间和幅度。在11 mM和20 mM葡萄糖条件下,每个分泌周期释放的5-HT量与基础[Ca2+]i振荡的持续时间呈线性相关。直线斜率相同,表明在11 mM和20 mM葡萄糖条件下钙振荡引发5-HT/胰岛素释放的能力没有显著差异。4. 原位5-HT微安培检测法有潜力解析葡萄糖诱导胰岛素分泌第二阶段的高频振荡成分。该成分似乎主要反映基础[Ca2+]i振荡的持续时间,这表明葡萄糖代谢和/或获取葡萄糖代谢产物对快速脉冲式胰岛素释放不是限速因素。

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