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富马酸1,1 - 二甲基 - 2 - [2 - 吗啉代苯基]胍对胰岛功能的影响。

Effect of 1,1-dimethyl-2-[2-morpholinophenyl]guanidine fumarate on pancreatic islet function.

作者信息

Louchami K, Jijakli H, Sener A, Jones R B, Malaisse W J

机构信息

Laboratory of Experimental Medicine, Brussels Free University, Belgium.

出版信息

Eur J Pharmacol. 1998 Jul 10;352(2-3):289-97. doi: 10.1016/s0014-2999(98)00352-5.

Abstract

The modality of the insulinotropic action of 1,1-dimethyl-2-[2-morpholinophenyl]guanidine fumarate (BTS 67 582), a new antidiabetic agent, was investigated in rat pancreatic islets. At a 0.1 mM concentration, which was sufficient to cause a close-to-maximal secretory response, BTS 67 582 failed to affect the utilization and oxidation of exogenous D-glucose, but slightly augmented 14CO2 production from islets prelabelled with either L-[U-14C]glutamine or [U-14C]palmitate. BTS 67 582 (0.1 mM) also failed to affect biosynthetic activity in islets incubated with L-[4-3H]phenylalanine. It augmented insulin release from islets incubated for 90 min in the absence or presence of D-glucose (2.8 to 16.7 mM), this coinciding with stimulation of 45Ca net uptake. In perifused islets deprived of extracellular D-glucose for 45 min, BTS 67 582 (0.1 mM) decreased 86Rb outflow from prelabelled islets, but failed to increase 45Ca efflux and insulin release. In the presence of D-glucose (7.0 mM), BTS 67 582, whilst failing to decrease 86Rb+ outflow, provoked rapid, sustained and rapidly reversible increases of both 45Ca2+ efflux and insulin output. The latter increases were attenuated, but not totally suppressed, in the absence of extracellular Ca2+. BTS 67 582 (0.1 mM) suppressed the inhibitory action of diazoxide (0.25 mM) upon glucose-stimulated insulin release, but nevertheless augmented insulin output from islets incubated in the presence of 90 mM K+. These findings support the view that the insulinotropic action of BTS 67 582 is mainly attributable to the inactivation of ATP-sensitive K+ channels. An intracellular redistribution of Ca2+ ions may also participate, however, to the islet functional response to BTS 67 582.

摘要

新型抗糖尿病药物富马酸1,1 - 二甲基 - 2 - [2 - 吗啉代苯基]胍(BTS 67 582)促胰岛素作用的机制在大鼠胰岛中进行了研究。在0.1 mM的浓度下(该浓度足以引起接近最大的分泌反应),BTS 67 582不影响外源性D - 葡萄糖的利用和氧化,但略微增加了预先用L - [U - ¹⁴C]谷氨酰胺或[U - ¹⁴C]棕榈酸标记的胰岛的¹⁴CO₂生成。BTS 67 582(0.1 mM)也不影响与L - [4 - ³H]苯丙氨酸一起孵育的胰岛中的生物合成活性。它增加了在不存在或存在D - 葡萄糖(2.8至16.7 mM)的情况下孵育90分钟的胰岛的胰岛素释放,这与刺激⁴⁵Ca净摄取同时发生。在细胞外D - 葡萄糖缺失45分钟的灌流胰岛中,BTS 67 582(0.1 mM)减少了预先标记的胰岛中⁸⁶Rb的流出,但未能增加⁴⁵Ca外流和胰岛素释放。在存在D - 葡萄糖(7.0 mM)的情况下,BTS 67 582虽然未能减少⁸⁶Rb⁺流出,但引起了⁴⁵Ca²⁺外流和胰岛素输出的快速、持续且迅速可逆的增加。在没有细胞外Ca²⁺的情况下,后者的增加减弱但未完全被抑制。BTS 67 582(0.1 mM)抑制了二氮嗪(0.25 mM)对葡萄糖刺激的胰岛素释放的抑制作用,但仍然增加了在90 mM K⁺存在下孵育的胰岛的胰岛素输出。这些发现支持了这样一种观点,即BTS 67 582的促胰岛素作用主要归因于ATP敏感性钾通道的失活。然而,Ca²⁺离子的细胞内重新分布也可能参与胰岛对BTS 67 582的功能反应。

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