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钾通道开放剂对大鼠胰岛的保护作用:抵抗四氧嘧啶、硝普钠及白细胞介素-1β介导的抑制作用——线粒体膜电位可能参与其中

Protection of rat pancreatic islets by potassium channel openers against alloxan, sodium nitroprusside and interleukin-1beta mediated suppression--possible involvement of the mitochondrial membrane potential.

作者信息

Kullin M, Li Z, Bondo Hansen J, Welsh N, Karlsson F A, Sandler S

机构信息

Department of Medical Sciences, Uppsala University, Uppsala, Sweden.

出版信息

Diabetologia. 2003 Jan;46(1):80-8. doi: 10.1007/s00125-002-0997-0. Epub 2003 Jan 11.

Abstract

AIMS/HYPOTHESIS: We aimed to study the effects of two K(ATP) channel openers (KCO), diazoxide and the more potent compound NNC 55-0118, on beta-cell suppression and/or toxicity induced by alloxan, sodium nitroprusside and IL-1beta.

METHODS

Islets from rats were exposed to 0.3 mmol/l diazoxide or NNC 55-0118 for 30 min and either alloxan (0.5 mmol/l), sodium nitroprusside (0.5 mmol/l) or IL-1beta (12.5 or 25 U/ml) were added and the incubation continued for 30 min. Islets were then washed and incubated for 24 h before examination.

RESULTS

After exposure to alloxan, islets showed reduced glucose oxidation rate and impaired glucose-stimulated insulin release. NNC 55-0118 counteracted the effects of alloxan, while diazoxide was less effective. After treatment with sodium nitroprusside, islet glucose oxidation rates were reduced and this was prevented by pretreatment with NNC 55-0118. In short-term experiments the potassium channel openers (KCOs) did not influence the IL-1beta effect on insulin secretion. However, long-term addition (24 h) of NNC 55-0118 counteracted IL-1beta induced inhibition of the glucose oxidation rate. It was shown, using the fluorescent probe JC-1, that the mitochondrial membrane potential was reduced by the potassium channel openers (KCOs), most strongly by NNC 55-0118. Nevertheless culture with KCOs for 72 h did not cause irreversible damage to the islets.

CONCLUSION/INTERPRETATION: Potassium channel openers (KCOs), in particular NNC 55-0118, prevented the toxic effects of alloxan and sodium nitroprusside. IL-1beta mediated suppression was reduced by NNC 55-0118 provided the long-term addition of the potassium channel opener (KCO). The protective mechanism of potassium channel openers (KCOs) might involve a decrease of the mitochondrial membrane potential.

摘要

目的/假设:我们旨在研究两种钾离子通道开放剂(K(ATP)通道开放剂,KCO),即二氮嗪和更强效的化合物NNC 55 - 0118,对四氧嘧啶、硝普钠和白细胞介素 - 1β(IL - 1β)诱导的β细胞抑制和/或毒性的影响。

方法

将大鼠胰岛暴露于0.3 mmol/l的二氮嗪或NNC 55 - 0118中30分钟,然后加入四氧嘧啶(0.5 mmol/l)、硝普钠(0.5 mmol/l)或IL - 1β(12.5或25 U/ml),继续孵育30分钟。然后冲洗胰岛并在检查前孵育24小时。

结果

暴露于四氧嘧啶后,胰岛显示葡萄糖氧化速率降低且葡萄糖刺激的胰岛素释放受损。NNC 55 - 0118抵消了四氧嘧啶的作用,而二氮嗪的效果较差。用硝普钠处理后,胰岛葡萄糖氧化速率降低,而用NNC 55 - 0118预处理可防止这种情况。在短期实验中,钾离子通道开放剂(KCOs)不影响IL - 1β对胰岛素分泌的作用。然而,长期添加(24小时)NNC 55 - 0118可抵消IL - 1β诱导的葡萄糖氧化速率抑制。使用荧光探针JC - 1表明,钾离子通道开放剂(KCOs)降低了线粒体膜电位,其中NNC 55 - 0118的作用最强。然而,用KCOs培养72小时并未对胰岛造成不可逆损伤。

结论/解读:钾离子通道开放剂(KCOs),特别是NNC 55 - 0118,可预防四氧嘧啶和硝普钠的毒性作用。如果长期添加钾离子通道开放剂(KCO),NNC 55 - 01降低了IL - 1β介导的抑制作用。钾离子通道开放剂(KCOs)的保护机制可能涉及线粒体膜电位的降低。

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