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葡萄糖诱导胰岛素释放的刺激-分泌偶联。XXII. 分离胰岛中糖酵解的定性和定量方面。

The stimulus-secretion coupling of glucose-induced insulin release. XXII. Qualitative and quantitative aspects of glycolysis in isolated islets.

作者信息

Malaisse W J, Sener A, Levy J, Herchuelz A

出版信息

Acta Diabetol Lat. 1976 Sep-Dec;13(5-6):202-15. doi: 10.1007/BF02581118.

Abstract

When isolated islets of Langerhans are suddenly exposed to glucose, the entry of the hexose into islet cells first occurs at a high rate resulting in rapid equilibration of free glucose across the cell membrane; thereafter, the rate of net glucose uptake depends on its metabolism. More than 95% of the glucose taken up by the islets is converted to triosephosphate. The fractional contribution of the sorbitol and pentose-phosphate pathways to such a process does not exceed 10%. The output of lactate from the islets accounts for approximately half of the glycolytic flux. At increasing glucose concentrations up to 4.3 mM, the rate of glycolysis increases towards a first asymptotic value; at higher glucose levels (up to 27.8 mM), a sigmoidal pattern is seen tending towards a second saturation value. The total ATP content of the islets does not correlate with their insulin-secretory activity. It is suggested that, in the process of glucose-induced insulin release, glycolysis may regulate physiological processes possibly located in the micro-environment of the cell boundary.

摘要

当分离出的胰岛突然暴露于葡萄糖时,己糖进入胰岛细胞的过程首先以高速率发生,导致游离葡萄糖在细胞膜上迅速达到平衡;此后,葡萄糖的净摄取速率取决于其代谢情况。胰岛摄取的葡萄糖中超过95%会转化为磷酸丙糖。山梨醇和磷酸戊糖途径对这一过程的贡献比例不超过10%。胰岛中乳酸的输出约占糖酵解通量的一半。在葡萄糖浓度增加至4.3 mM时,糖酵解速率朝着第一个渐近值增加;在更高的葡萄糖水平(高达27.8 mM)下,呈现出S形模式,趋向于第二个饱和值。胰岛的总ATP含量与其胰岛素分泌活性无关。有人提出,在葡萄糖诱导的胰岛素释放过程中,糖酵解可能调节可能位于细胞边界微环境中的生理过程。

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