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完整胰岛内葡萄糖代谢的定量亚细胞成像。

Quantitative subcellular imaging of glucose metabolism within intact pancreatic islets.

作者信息

Bennett B D, Jetton T L, Ying G, Magnuson M A, Piston D W

机构信息

Department of Molecular Physiology and Biophysics, Vanderbilt University, Nashville, Tennessee 37232, USA.

出版信息

J Biol Chem. 1996 Feb 16;271(7):3647-51. doi: 10.1074/jbc.271.7.3647.

Abstract

Studies of dispersed beta cells have been used to infer their behavior in the intact pancreatic islet. When dispersed, beta cells exhibit multiple metabolic glucose-response populations with different insulin secretion properties. This has led to a model for glucose-dependent insulin secretion from the islet based on a step-wise recruitment of individual beta cells. However, previously reported synchronous and uniform Ca2+ activity and electrical responses indicate that beta cell behavior within intact islets is more uniform. Therefore, uncertainty remains whether beta cell metabolic heterogeneity is functionally important in intact islets. We have used two-photon excitation microscopy to measure and compare the glucose-induced NAD(P)H autofluorescence response in dispersed beta cells and within intact islets. Over 90% of beta cells in intact islets responded to glucose with significantly elevated NAD(P)H levels, compared with less than 70% of dispersed beta cells. In addition, all responding beta cells within intact islets exhibited a sigmoidal glucose dose response behavior with inflection points of approximately 8 mm glucose. These results suggest that beta cell heterogeneity may be functionally less important in the intact islet than has been predicted from studies of dispersed beta cells and support the role of glucokinase as the rate-limiting enzyme in the beta cell glucose response.

摘要

对分散的β细胞进行的研究已被用于推断它们在完整胰岛中的行为。分散时,β细胞表现出具有不同胰岛素分泌特性的多个代谢性葡萄糖反应群体。这导致了一种基于逐个β细胞逐步募集的胰岛葡萄糖依赖性胰岛素分泌模型。然而,先前报道的同步且均匀的Ca2+活性和电反应表明,完整胰岛内的β细胞行为更为一致。因此,β细胞代谢异质性在完整胰岛中是否具有功能重要性仍不确定。我们使用双光子激发显微镜来测量和比较分散的β细胞以及完整胰岛内葡萄糖诱导的NAD(P)H自发荧光反应。与不到70%的分散β细胞相比,完整胰岛中超过90%的β细胞对葡萄糖的反应是NAD(P)H水平显著升高。此外,完整胰岛内所有有反应的β细胞均表现出S形葡萄糖剂量反应行为,拐点约为8 mM葡萄糖。这些结果表明,β细胞异质性在完整胰岛中的功能重要性可能比从分散β细胞研究中预测的要小,并支持葡萄糖激酶作为β细胞葡萄糖反应限速酶的作用。

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