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犬双相胰岛素分泌背后的胞吐作用和电生成模式。

Modes of exocytosis and electrogenesis underlying canine biphasic insulin secretion.

作者信息

Misler Stanley, Gillis Kevin D

机构信息

Department of Medicine, Washington University School of Medicine, St. Louis MO 63110, USA.

出版信息

Front Biosci (Elite Ed). 2012 Jan 1;4(2):669-76. doi: 10.2741/e408.

Abstract

Biphasic insulin secretion in response to glucose consists of a transient first phase followed by a progressive second phase. It is a well described feature of whole perfused pancreases as well as isolated pancreatic islets of Langerhans. Applying to single cell assays of exocytosis (capacitance monitoring and amperometry) to single canine Beta-cells we have examined the time courses of granule exocytosis in response to voltage-clamp depolarizations that mimic two modes of glucose-induced electrical activity, and then compared these to biphasic insulin secretion. Action potentials evoked in short trains at frequencies similar those recorded during first phase insulin secretion trigger phasic exocytosis from a small pool of insulin granules that are likely docked near voltage-activated Ca²⁺ channels. In contrast, prolonged voltage-clamp pulses mimicking plateau depolarizations occur during second phase insulin secretion and trigger tonic or continuous exocytosis. Comparing the latter results with ones obtained using photorelease of caged Ca²⁺ in other insulin-secreting cells, we suggest that tonic exocytosis likely results from granule release from a highly Ca²⁺-sensitive pool of insulin granules, likely located further from Ca²⁺ channels. Both phasic and tonic modes of exocytosis are enhanced by glucose, via its metabolism. Hence, in canine Beta-cells we propose that two distinct modes of exocytosis, tuned to two types of electrical activity, may underlay biphasic insulin secretion.

摘要

对葡萄糖的双相胰岛素分泌包括一个短暂的第一相,随后是一个进行性的第二相。这是整个灌注胰腺以及分离的胰岛朗格汉斯细胞的一个已被充分描述的特征。将胞吐作用的单细胞检测方法(电容监测和电流测定)应用于单个犬β细胞,我们研究了颗粒胞吐作用的时间进程,以响应模拟葡萄糖诱导的两种电活动模式的电压钳去极化,然后将这些与双相胰岛素分泌进行比较。在类似于第一相胰岛素分泌期间记录的频率下,以短串形式诱发的动作电位触发了一小部分可能停靠在电压激活的Ca²⁺通道附近的胰岛素颗粒的阶段性胞吐作用。相比之下,模拟平台期去极化的延长电压钳脉冲发生在第二相胰岛素分泌期间,并触发强直性或持续性胞吐作用。将后者的结果与在其他胰岛素分泌细胞中使用笼状Ca²⁺光释放获得的结果进行比较,我们认为强直性胞吐作用可能源于胰岛素颗粒的一个高度Ca²⁺敏感池的颗粒释放,这个池可能位于离Ca²⁺通道更远的地方。葡萄糖通过其代谢增强了胞吐作用的阶段性和强直性模式。因此,在犬β细胞中,我们提出,针对两种类型的电活动进行调节的两种不同的胞吐作用模式,可能是双相胰岛素分泌的基础。

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本文引用的文献

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