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类四氧嘧啶化合物的致糖尿病作用:盐酸脱水乌拉米尔水合物对大鼠离体胰岛的影响。

Diabetogenic action of alloxan-like compounds: the effect of dehydrouramil hydrate hydrochloride on isolated islets of Langerhans of the rat.

作者信息

Tait S P, Poje M, Rocic B, Ashcroft S J

出版信息

Diabetologia. 1983 Oct;25(4):360-4. doi: 10.1007/BF00253202.

Abstract

Dehydrouramil hydrate hydrochloride (DHU) is an analogue of alloxan which retains the in vivo diabetogenic activity of alloxan but, in contrast to alloxan, is stable in aqueous media at physiological pH. Using rat islets of Langerhans, we have studied the acute effects of DHU on B cell function. Glucose-stimulated insulin release was markedly inhibited by DHU, the concentration of DHU giving 50% inhibition (I50) was 1 mmol/l; this was lowered to 0.5 mmol/l when the islets were exposed to DHU for 5 min before elevation of glucose concentration. The basis for this change appeared to be a protective effect of glucose, since the inclusion of 3-0-methylglucose during re-incubation with DHU also attenuated the subsequent inhibition of glucose-stimulated insulin release. The inhibitory effect on glucose-stimulated insulin release of a 5-min exposure to DHU persisted throughout a subsequent 120-min period in the absence of DHU. DHU also inhibited insulin release stimulated by mannose (20 mmol/l) or by 2-ketoisocaproate (20 mmol/l) with I50 of 1 and 0.5 mmol/l respectively. Concentrations of DHU up to 1 mmol/l had no significant effect on islet glucose oxidation or ATP content; 5 mmol/l DHU did not affect the rate of glucose oxidation, but lowered the ATP content by 30% without pre-incubation and by 60% in islets pre-incubated for 5 min with DHU before addition of glucose.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

盐酸水合脱氢脲基丙二酸(DHU)是一种四氧嘧啶类似物,它保留了四氧嘧啶的体内致糖尿病活性,但与四氧嘧啶不同的是,在生理pH值的水性介质中稳定。我们使用大鼠胰岛研究了DHU对β细胞功能的急性影响。DHU显著抑制葡萄糖刺激的胰岛素释放,产生50%抑制作用(I50)的DHU浓度为1 mmol/L;当在葡萄糖浓度升高前将胰岛暴露于DHU 5分钟时,该浓度降至0.5 mmol/L。这种变化的基础似乎是葡萄糖的保护作用,因为在与DHU重新孵育期间加入3 - O - 甲基葡萄糖也减弱了随后对葡萄糖刺激的胰岛素释放的抑制。在随后120分钟内,即使不存在DHU,5分钟暴露于DHU对葡萄糖刺激的胰岛素释放的抑制作用仍然持续。DHU还抑制由甘露糖(20 mmol/L)或2 - 酮异己酸(20 mmol/L)刺激的胰岛素释放,I50分别为1和0.5 mmol/L。高达1 mmol/L的DHU浓度对胰岛葡萄糖氧化或ATP含量无显著影响;5 mmol/L的DHU不影响葡萄糖氧化速率,但在未预孵育时使ATP含量降低30%,在加入葡萄糖前用DHU预孵育5分钟的胰岛中使ATP含量降低60%。(摘要截选至250字)

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