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镉在胰腺β细胞中的蓄积与钙类似,受到葡萄糖和高钾的刺激。

Accumulation of cadmium in pancreatic beta cells is similar to that of calcium in being stimulated by both glucose and high potassium.

作者信息

Nilsson T, Rorsman F, Berggren P O, Hellman B

出版信息

Biochim Biophys Acta. 1986 Oct 10;888(3):270-7. doi: 10.1016/0167-4889(86)90225-9.

Abstract

The transport of Cd2+ and the effects of this ion on secretory activity and metabolism were investigated in beta cell-rich pancreatic islets isolated from obese-hyperglycemic mice. The endogenous cadmium content was 2.5 mumol/kg dry wt. After 60 min of incubation in a Ca2+-deficient medium containing 2.5 microM Cd2+ the islet cadmium content increased to 0.18 mmol/kg dry wt. This uptake was reduced by approx. 50% in the presence of 1.28 mM Ca2+. The incorporation of Cd2+ was stimulated either by raising the concentration of glucose to 20 mM or K+ to 30.9 mM. Whereas D-600 suppressed the stimulatory effect of glucose by 75%, it completely abolished that obtained with high K+. Only about 40% of the incorporated cadmium was mobilized during 60 min of incubation in a Cd2+-free medium containing 0.5 mM EGTA. It was possible to demonstrate a glucose-induced suppression of Cd2+ efflux into a Ca2+-deficient medium. Concentrations of Cd2+ up to 2.5 microM did not affect glucose oxidation, whereas, there was a progressive inhibition when the Cd2+ concentration was above 10 microM. Basal insulin release was stimulated by 5 microM Cd2+. At a concentration of 160 microM, Cd2+ did not affect basal insulin release but significantly inhibited the secretory response to glucose. It is concluded that the beta cell uptake of Cd2+ is facilitated by the activation of voltage-dependent Ca2+ channels. Apparently, the accumulation of Cd2+ mimics that of Ca2+ also involving a component of intracellular sequestration promoted by glucose.

摘要

在从肥胖高血糖小鼠分离的富含β细胞的胰岛中,研究了Cd2+的转运及其对分泌活性和代谢的影响。内源性镉含量为2.5μmol/kg干重。在含有2.5μM Cd2+的缺钙培养基中孵育60分钟后,胰岛镉含量增加至0.18 mmol/kg干重。在1.28 mM Ca2+存在下,这种摄取减少了约50%。将葡萄糖浓度提高到20 mM或K+浓度提高到30.9 mM均可刺激Cd2+的掺入。虽然D-600将葡萄糖的刺激作用抑制了75%,但它完全消除了高K+所产生的刺激作用。在含有0.5 mM EGTA的无Cd2+培养基中孵育60分钟期间,仅约40%掺入的镉被动员。有可能证明葡萄糖诱导的Cd2+向缺钙培养基中的流出受到抑制。高达2.5μM的Cd2+浓度不影响葡萄糖氧化,而当Cd2+浓度高于10μM时,存在逐渐抑制作用。5μM Cd2+刺激基础胰岛素释放。在160μM浓度下,Cd2+不影响基础胰岛素释放,但显著抑制对葡萄糖的分泌反应。结论是,电压依赖性Ca2+通道的激活促进了β细胞对Cd2+的摄取。显然,Cd2+的积累模拟了Ca2+的积累,也涉及葡萄糖促进的细胞内螯合成分。

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