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在一种新的2型糖尿病大鼠模型中,β细胞组成型一氧化氮合酶活性的改变与对精氨酸的异常胰岛素反应有关。

Alteration of beta-cell constitutive NO synthase activity is involved in the abnormal insulin response to arginine in a new rat model of type 2 diabetes.

作者信息

Novelli M, Pocai A, Lajoix A D, Beffy P, Bezzi D, Marchetti P, Gross R, Masiello P

机构信息

Dipartimento di Patologia Sperimentale, B.M.I.E., University of Pisa, Via Roma, 55 Scuola Medica, I-56126 Pisa, Italy.

出版信息

Mol Cell Endocrinol. 2004 Apr 30;219(1-2):77-82. doi: 10.1016/j.mce.2004.01.010.

Abstract

We have previously obtained a new type 2 diabetic syndrome in adult rats given streptozotocin and nicotinamide, characterized by reduced beta-cell mass, partially preserved insulin response to glucose and tolbutamide and excessive responsiveness to arginine. We have also established that the neuronal isoform of constitutive NO synthase (nNOS) is expressed in beta-cells and modulates insulin secretion. In this study, we explored the kinetics of glucose- and arginine-stimulated insulin release in perifused isolated islets as well as the effect of N-omega-nitro-L-arginine methyl ester (L-NAME), a NOS inhibitor, to get insight into the possible mechanisms responsible for the arginine hypersensitivity observed in vitro in this and other models of type 2 diabetes. A reduced first phase and a blunted second phase of insulin secretion were observed upon glucose stimulation of diabetic islets, confirming previous data in the isolated perfused rat pancreas. Exposure of diabetic islets to 10 mM arginine, in the presence of 2.8 mM glucose, elicited a remarkable monophasic increment in insulin release, which peaked at 639 +/- 31 pg/islet/min as compared to 49 +/- 18 pg/islet/min in control islets (P << 0.01). The addition of L-NAME to control islets markedly enhanced the insulin response to arginine, as expected from the documented inhibitory effect exerted by nNOS activity in normal beta-cells, whereas it did not further modify the insulin secretion in diabetic islets, thus implying the occurrence of a defective nNOS activity in these islets. A reduced expression of nNOS mRNA was found in the majority but not in all diabetic islet preparations and therefore cannot totally account for the absence of L-NAME effect, that might also be ascribed to post-transcriptional mechanisms impairing nNOS catalytic activity. In conclusion, our results provide for the first time evidence that functional abnormalities of type 2 experimental diabetes, such as the insulin hyper-responsiveness to arginine, could be due to an impairment of nNOS expression and/or activity in beta-cells.

摘要

我们之前在给予链脲佐菌素和烟酰胺的成年大鼠中获得了一种新型2型糖尿病综合征,其特征为β细胞量减少、对葡萄糖和甲苯磺丁脲的胰岛素反应部分保留以及对精氨酸反应过度。我们还证实,组成型一氧化氮合酶(nNOS)的神经元亚型在β细胞中表达并调节胰岛素分泌。在本研究中,我们探究了在灌注分离胰岛中葡萄糖和精氨酸刺激胰岛素释放的动力学,以及一氧化氮合酶抑制剂N-ω-硝基-L-精氨酸甲酯(L-NAME)的作用,以深入了解在该2型糖尿病模型及其他模型中体外观察到的精氨酸超敏反应的可能机制。糖尿病胰岛在葡萄糖刺激下,胰岛素分泌的第一相降低且第二相减弱,这证实了之前在分离灌注大鼠胰腺中的数据。在存在2.8 mM葡萄糖的情况下,将糖尿病胰岛暴露于10 mM精氨酸会引发胰岛素释放显著的单相增加,峰值为639±31 pg/胰岛/分钟,而对照胰岛为49±18 pg/胰岛/分钟(P<<0.01)。正如正常β细胞中nNOS活性的抑制作用所预期的那样,向对照胰岛中添加L-NAME显著增强了对精氨酸的胰岛素反应,而它并未进一步改变糖尿病胰岛中的胰岛素分泌,这意味着这些胰岛中存在nNOS活性缺陷。在大多数但并非所有糖尿病胰岛制剂中发现nNOS mRNA表达降低,因此不能完全解释L-NAME无效的原因,这也可能归因于损害nNOS催化活性的转录后机制。总之,我们的结果首次证明,2型实验性糖尿病的功能异常,如对精氨酸的胰岛素高反应性,可能是由于β细胞中nNOS表达和/或活性受损所致。

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