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代谢振荡与电振荡:调控脉冲式胰岛素分泌的协同因素

Metabolic and electrical oscillations: partners in controlling pulsatile insulin secretion.

作者信息

Bertram Richard, Sherman Arthur, Satin Leslie S

机构信息

Department of Mathematics and Programs in Neuroscience and Molecular Biophysics, Florida State University, Tallahassee, Florida, USA.

出版信息

Am J Physiol Endocrinol Metab. 2007 Oct;293(4):E890-900. doi: 10.1152/ajpendo.00359.2007. Epub 2007 Jul 31.

Abstract

Impairment of insulin secretion from the beta-cells of the pancreatic islets of Langerhans is central to the development of type 2 diabetes mellitus and has therefore been the subject of much investigation. Great advances have been made in this area, but the mechanisms underlying the pulsatility of insulin secretion remain controversial. The period of these pulses is 4-6 min and reflects oscillations in islet membrane potential and intracellular free Ca(2+). Pulsatile blood insulin levels appear to play an important physiological role in insulin action and are lost in patients with type 2 diabetes and their near relatives. We present evidence for a recently developed beta-cell model, the "dual oscillator model," in which oscillations in activity are due to both electrical and metabolic mechanisms. This model is capable of explaining much of the available data on islet activity and offers possible resolutions of a number of longstanding issues. The model, however, still lacks direct confirmation and raises new issues. In this article, we highlight both the successes of the model and the challenges that it poses for the field.

摘要

朗格汉斯胰岛β细胞胰岛素分泌受损是2型糖尿病发生发展的核心问题,因此一直是众多研究的主题。该领域已取得了巨大进展,但胰岛素分泌脉冲性的潜在机制仍存在争议。这些脉冲的周期为4 - 6分钟,反映了胰岛膜电位和细胞内游离钙离子的振荡。脉动性血液胰岛素水平似乎在胰岛素作用中发挥重要的生理作用,而在2型糖尿病患者及其近亲中则消失。我们为最近开发的β细胞模型“双振荡器模型”提供了证据,其中活动的振荡是由电和代谢机制共同引起的。该模型能够解释许多关于胰岛活动的现有数据,并为一些长期存在的问题提供了可能的解决方案。然而,该模型仍缺乏直接证实,并引发了新的问题。在本文中,我们强调了该模型的成功之处及其给该领域带来的挑战。

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