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二甲双胍可恢复因长期暴露于游离脂肪酸或高葡萄糖而改变的胰岛素分泌:二甲双胍对胰腺β细胞的直接作用。

Metformin restores insulin secretion altered by chronic exposure to free fatty acids or high glucose: a direct metformin effect on pancreatic beta-cells.

作者信息

Patanè G, Piro S, Rabuazzo A M, Anello M, Vigneri R, Purrello F

机构信息

Department of Internal Medicine, Signorelli Diabetes Center, University of Catania, Ospedale Garibaldi, Italy.

出版信息

Diabetes. 2000 May;49(5):735-40. doi: 10.2337/diabetes.49.5.735.

Abstract

Because metformin affects glucose and free fatty acid (FFA) metabolism in peripheral insulin target tissues, we investigated the effect of this drug in restoring a normal secretory pattern in rat pancreatic islets whose function has been impaired by chronic exposure to elevated FFA or glucose concentrations. We cultured rat pancreatic islets with or without FFA (2 mmol/l oleate/palmitate 2:1) or high glucose (16.7 mmol/l) concentrations in the presence or absence of metformin (0.25-12.5 microg/ml) and then measured insulin release, glucose utilization, glucose, and FFA oxidation. When compared with control islets, islets exposed to high FFA or glucose concentrations showed an increased basal and a decreased glucose-induced insulin release. In islets cultured for an additional 24 h with FFA or glucose in the presence of metformin (2.5 microg/ml), both basal and glucose-induced insulin secretions were restored. Both glucose utilization and glucose oxidation were altered in islets pre-exposed to high FFA or glucose concentrations. In particular, regarding control islets, glucose utilization was increased at 2.8 mmol/l glucose and decreased at 16.7 mmol/l glucose; glucose oxidation was similar to control islets at 2.8 mmol/l glucose but decreased at 16.7 mmol/l glucose. In contrast, oleate oxidation was increased in islets pre-exposed to FFA. All of these abnormalities were reversed in islets cultured for an additional 24 h with high FFA or glucose concentrations in the presence of metformin (2.5 microg/ml). In conclusion, our data show that metformin is able to restore the intracellular abnormalities of glucose and FFA metabolism and to restore a normal secretory pattern in rat pancreatic islets whose secretory function has been impaired by chronic exposure to elevated FFA or glucose levels. These data raise the possibility that, in diabetic patients, metformin (in addition to its peripheral effects) may have a direct beneficial effect on the beta-cell secretory function.

摘要

由于二甲双胍会影响外周胰岛素靶组织中的葡萄糖和游离脂肪酸(FFA)代谢,我们研究了该药物对恢复大鼠胰岛正常分泌模式的作用,这些大鼠胰岛的功能因长期暴露于升高的FFA或葡萄糖浓度而受损。我们在有或没有FFA(2 mmol/l油酸/棕榈酸2:1)或高葡萄糖(16.7 mmol/l)浓度的情况下,在有或没有二甲双胍(0.25 - 12.5 μg/ml)的条件下培养大鼠胰岛,然后测量胰岛素释放、葡萄糖利用、葡萄糖和FFA氧化。与对照胰岛相比,暴露于高FFA或葡萄糖浓度的胰岛基础胰岛素释放增加,而葡萄糖诱导的胰岛素释放减少。在二甲双胍(2.5 μg/ml)存在的情况下,用FFA或葡萄糖再培养24小时的胰岛中,基础和葡萄糖诱导的胰岛素分泌均得以恢复。预先暴露于高FFA或葡萄糖浓度的胰岛中,葡萄糖利用和葡萄糖氧化均发生改变。特别是,与对照胰岛相比,在2.8 mmol/l葡萄糖时葡萄糖利用增加,而在16.7 mmol/l葡萄糖时减少;在2.8 mmol/l葡萄糖时葡萄糖氧化与对照胰岛相似,但在16.7 mmol/l葡萄糖时减少。相反,预先暴露于FFA的胰岛中油酸氧化增加。在二甲双胍(2.5 μg/ml)存在的情况下,用高FFA或葡萄糖浓度再培养24小时的胰岛中,所有这些异常均得到逆转。总之,我们的数据表明,二甲双胍能够恢复葡萄糖和FFA代谢的细胞内异常,并恢复大鼠胰岛的正常分泌模式,这些胰岛的分泌功能因长期暴露于升高的FFA或葡萄糖水平而受损。这些数据增加了一种可能性,即在糖尿病患者中,二甲双胍(除了其外周作用外)可能对β细胞分泌功能有直接的有益作用。

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