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α-酮异己酸对葡萄糖不耐受大鼠胰岛胰岛素释放的起始和增强作用的保存

Preserved initiatory and potentiatory effect of alpha-ketoisocaproate on insulin release in islets of glucose intolerant rats.

作者信息

Guenifi A, Abdel-Halim S M, Efendic S, Ostenson C G

机构信息

Department of Molecular Medicine, Karolinska Hospital and Institute, Stockholm, Sweden.

出版信息

Diabetologia. 1998 Nov;41(11):1368-73. doi: 10.1007/s001250051078.

Abstract

Insulin responses to glucose and non-glucose secretagogues were studied in short-term cultured pancreatic islets and perfused pancreata of the glucose intolerant F1 hybrid rats of spontaneously diabetic Goto-Kakizaki and control Wistar rats. After culture at 5.5 mmol/l glucose, hybrid islet responses to 11.1, 16.7 and 27.0 mmol/l glucose were between 60 and 40% of control islet responses. A combination of 1 mmol/l isobutylmethylxanthine and 16.7 mmol/l glucose induced a pronounced insulin release, which was of similar magnitude in hybrid and control rat islets. This response was not further augmented by addition of glibenclamide and arginine. The slope of potentiation of arginine (10 mmol/l)-stimulated insulin secretion by glucose (5.5-16.7 mmol/l) was greatly impaired in hybrid islets. In contrast to glucose, alpha-ketoisocaproate (KIC), which is metabolized in Krebs cycle, dose-dependently stimulated insulin secretion to similar levels in hybrid and control islets, cultured at 5.5 mmol/l glucose. Also in hybrid islets depolarized by potassium chloride (30 mmol/l) and with adenosine triphosphate-sensitive K+-channels kept open by diazoxide, insulin responses to glucose were greatly impaired but intact to KIC. Furthermore, KIC potentiated normally the insulin response to arginine in hybrid islets. In the isolated perfused pancreas, KIC induced similar insulin responses in hybrid rats and control rats. The potentiating effect by 5.5 mmol/l glucose on the KIC-stimulated insulin responses was, however, greatly reduced in isolated islets and absent in the perfused pancreata of hybrid rats. Taken together, these findings suggest an intact capacity for insulin release, although the initiating and potentiating effect by glucose on insulin release are defective in the Goto-Kakizaki-hybrid rats. An abnormal beta-cell glucose metabolism proximal to the Krebs cycle is likely to account for the impairment of insulin release.

摘要

在短期培养的胰岛以及葡萄糖不耐受的自发性糖尿病Goto-Kakizaki大鼠与对照Wistar大鼠的F1杂交大鼠的灌注胰腺中,研究了胰岛素对葡萄糖和非葡萄糖促分泌剂的反应。在5.5 mmol/l葡萄糖浓度下培养后,杂交胰岛对11.1、16.7和27.0 mmol/l葡萄糖的反应为对照胰岛反应的60%至40%。1 mmol/l异丁基甲基黄嘌呤与16.7 mmol/l葡萄糖联合使用可诱导明显的胰岛素释放,其在杂交大鼠和对照大鼠胰岛中的释放量相似。添加格列本脲和精氨酸后,这种反应并未进一步增强。在杂交胰岛中,葡萄糖(5.5 - 16.7 mmol/l)对精氨酸(10 mmol/l)刺激的胰岛素分泌的增强斜率严重受损。与葡萄糖不同,在三羧酸循环中代谢的α-酮异己酸(KIC)在5.5 mmol/l葡萄糖浓度下培养的杂交胰岛和对照胰岛中,呈剂量依赖性地刺激胰岛素分泌至相似水平。同样在被氯化钾(30 mmol/l)去极化且用二氮嗪使三磷酸腺苷敏感性钾通道保持开放的杂交胰岛中,胰岛素对葡萄糖的反应严重受损,但对KIC的反应正常。此外,KIC在杂交胰岛中正常增强了胰岛素对精氨酸的反应。在离体灌注胰腺中,KIC在杂交大鼠和对照大鼠中诱导相似的胰岛素反应。然而,5.5 mmol/l葡萄糖对KIC刺激的胰岛素反应的增强作用在离体胰岛中大大降低,在杂交大鼠的灌注胰腺中则不存在。综上所述,这些发现表明胰岛素释放能力完好,尽管葡萄糖对胰岛素释放的起始和增强作用在Goto-Kakizaki杂交大鼠中存在缺陷。三羧酸循环近端的β细胞葡萄糖代谢异常可能是胰岛素释放受损的原因。

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