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2型糖尿病大鼠胰岛对二羧酸酯的反应:酶学、代谢及分泌方面

Pancreatic islet response to dicarboxylic acid esters in rats with type 2 diabetes: enzymatic, metabolic and secretory aspects.

作者信息

Rasschaert J, Giroix M H, Conget I, Mercan D, Leclercq-Meyer V, Sener A, Portha B, Malaisse W J

机构信息

Laboratory of Experimental Medicine, Brussels Free University, Erasmus Medical School, Belgium.

出版信息

J Mol Endocrinol. 1994 Oct;13(2):209-17. doi: 10.1677/jme.0.0130209.

DOI:10.1677/jme.0.0130209
PMID:7848532
Abstract

This study aimed to compare the metabolic and secretory responses of pancreatic islets from animals with non-insulin-dependent diabetes to D-glucose with the effects of the methyl esters of succinic acid (SME) and glutamic acid (GME). The insulin secretory response to D-glucose was impaired in islets from rats with diabetes which was either inherited (Goto-Kakizaki (GK) rats) or acquired (streptozotocin-treated (STZ) rats). This coincided with a preferential alteration of oxidative relative to total glycolysis in intact islets and a selective defect of FAD-linked mitochondrial glycerophosphate dehydrogenase (m-GDH) in islet homogenates. This enzymatic defect was also found in purified B cells from STZ rats. It contrasted both with unaltered activities of glutamate dehydrogenase and succinate dehydrogenase in the islets of diabetic animals and with a normal or even increased activity of m-GDH in the livers of GK and STZ rats. The oxidation of [1,4-14C]SME and [U-14C]GME appeared decreased in islets of GK or STZ animals when compared with control rats, but no significant difference between control and diabetic rats was observed when the oxidative data were expressed relative to the rate of [U-14C]GME hydrolysis. Nevertheless, the absolute values for insulin release evoked by a non-metabolized analogue of L-leucine (BCH), by SME and by the association of BCH with either SME or GME were invariably lower in islets of GK and STZ rats than in those of control animals.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

本研究旨在比较非胰岛素依赖型糖尿病动物的胰岛对D-葡萄糖的代谢和分泌反应,以及琥珀酸甲酯(SME)和谷氨酸甲酯(GME)的作用效果。遗传性(Goto-Kakizaki(GK)大鼠)或获得性(链脲佐菌素处理(STZ)大鼠)糖尿病大鼠的胰岛对D-葡萄糖的胰岛素分泌反应受损。这与完整胰岛中氧化相对于总糖酵解的优先改变以及胰岛匀浆中FAD连接的线粒体甘油磷酸脱氢酶(m-GDH)的选择性缺陷相一致。在STZ大鼠的纯化B细胞中也发现了这种酶缺陷。这与糖尿病动物胰岛中谷氨酸脱氢酶和琥珀酸脱氢酶活性未改变以及GK和STZ大鼠肝脏中m-GDH活性正常甚至增加形成对比。与对照大鼠相比,GK或STZ动物胰岛中[1,4-14C]SME和[U-14C]GME的氧化似乎降低,但当氧化数据相对于[U-14C]GME水解速率表示时,对照大鼠和糖尿病大鼠之间未观察到显著差异。然而,GK和STZ大鼠胰岛中由L-亮氨酸的非代谢类似物(BCH)、SME以及BCH与SME或GME联合引发的胰岛素释放绝对值始终低于对照动物。(摘要截短至250字)

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引用本文的文献

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Restricted effect of formycin A and non-glucidic nutrients upon insulin release in islets from rats with hereditary or acquired non-insulin-dependent diabetes.氮杂胞苷和非糖类营养物质对遗传性或获得性非胰岛素依赖型糖尿病大鼠胰岛胰岛素释放的限制作用。
Acta Diabetol. 1995 Oct;32(3):198-202. doi: 10.1007/BF00838492.