首页> 外文期刊>Diabetes >Glucose induces opposite intracellular Ca2+ concentration oscillatory patterns in identified alpha- and beta-cells within intact human islets of Langerhans.
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Glucose induces opposite intracellular Ca2+ concentration oscillatory patterns in identified alpha- and beta-cells within intact human islets of Langerhans.

机译:葡萄糖在朗格汉斯完整人类胰岛中已鉴定的α细胞和β细胞中诱导相反的细胞内Ca2 +浓度振荡模式。

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Homeostasis of blood glucose is mainly regulated by the coordinated secretion of glucagon and insulin from alpha- and beta-cells within the islets of Langerhans. The release of both hormones is Ca(2+) dependent. In the current study, we used confocal microscopy and immunocytochemistry to unequivocally characterize the glucose-induced Ca(2+) signals in alpha- and beta-cells within intact human islets. Extracellular glucose stimulation induced an opposite response in these two cell types. Although the intracellular Ca(2+) concentration ([Ca(2+)](i)) in beta-cells remained stable at low glucose concentrations, alpha-cells exhibited an oscillatory [Ca(2+)](i) response. Conversely, the elevation of extracellular glucose elicited an oscillatory [Ca(2+)](i) pattern in beta-cells but inhibited low-glucose-induced [Ca(2+)](i) signals in alpha-cells. These Ca(2+) signals were synchronic among beta-cells grouped in clusters within the islet, although they were not coordinated among the whole beta-cell population.The response of alpha-cells was totally asynchronic. Therefore, both the alpha- and beta-cell populations within human islets did not work as a syncitium in response to glucose. A deeper knowledge of alpha- and beta-cell behavior within intact human islets is important to better understand the physiology of the human endocrine pancreas and may be useful to select high-quality islets for transplantation.
机译:血糖的稳态主要受朗格罕岛胰岛中α和β细胞中胰高血糖素和胰岛素协同分泌的调节。两种激素的释放是Ca(2+)依赖的。在当前的研究中,我们使用共聚焦显微镜和免疫细胞化学来明确表征完整的人类胰岛内的α细胞和β细胞中葡萄糖诱导的Ca(2+)信号。细胞外葡萄糖刺激在这两种细胞类型中诱导相反的反应。尽管在低葡萄糖浓度下,β细胞中的细胞内Ca(2+)浓度([Ca(2 +)](i))保持稳定,但是α细胞表现出振荡的[Ca(2 +)](i)反应。相反,细胞外葡萄糖的升高在β细胞中引起了振荡的[Ca(2 +)](i)模式,但在α细胞中抑制了低葡萄糖诱导的[Ca(2 +)](i)信号。这些Ca(2+)信号在胰岛内成簇的β细胞之间是同步的,尽管它们在整个β细胞群体中并不协调.α细胞的反应是完全异步的。因此,人类胰岛中的α细胞和β细胞群体均不能作为葡萄糖反应的合胞体。对完整的人类胰岛内的α细胞和β细胞行为的更深入了解对于更好地了解人类内分泌胰腺的生理学很重要,并且对于选择高质量的胰岛进行移植可能很有用。

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