首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Role of mitochondrial dysfunction in calcium signalling alterations in dorsal root ganglion neurons of mice with experimentally-induced diabetes.
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Role of mitochondrial dysfunction in calcium signalling alterations in dorsal root ganglion neurons of mice with experimentally-induced diabetes.

机译:线粒体功能障碍在实验性糖尿病小鼠的背根神经节神经元钙信号转导中的作用。

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摘要

The role of mitochondrial dysfunction in alterations of calcium signalling in primary sensory neurons has been studied in mice with streptozotocin-induced and genetically predisposed diabetes mellitus before and after additional treatment with insulin infusions. Cytosolic calcium transients triggered by membrane depolarization were measured using a membrane-permeable form of fluorescent indicator indo-1, and their changes after application of mitochondrial uncoupler carbonyl cyanide m-chlorphenylhydrazone were compared in cells of control and diabetic animals. Considerable prolongation of residual elevation of cytosolic calcium after termination of membrane depolarization was observed in diabetic mice, which was expressed mainly in small-sized (nociceptive) neurons. This correlated with the level of hyperglycemia, which was maximal in cells from streptozotocin-treated mice. Insulin partly reversed these changes. Carbonyl cyanide m-chlorophenylhydrazone application to neurons of control mice enlarged the peak of calcium transients and decreased residual calcium elevations, indicating that mitochondria in physiological conditions participate in shaping of these transients by diminishing their peak due to rapid uptake of calcium ions and by prolonging them due to subsequent slow calcium release back into the cytosol. Depression of the calcium accumulating function of mitochondria by carbonyl cyanide m-chlorophenylhydrazone eliminated these changes. The prolonged residual elevation of cytosolic calcium characteristic for neurons of diabetic animals was also eliminated by carbonyl cyanide m-chlorophenylhydrazone, confirming the suggestion that such elevation is determined mainly by mitochondrial dysfunction, the latter being dependent on the level of hyperglycemia. Predominant expression of such changes in small-sized neurons can be explained by the absence in them of effective calcium-buffering by the endoplasmic reticulum. Possible role of the described calcium signalling changes in the origin of neuropathic syndromes is discussed.
机译:线粒体功能障碍在原代感觉神经元钙信号改变中的作用已在链佐菌素诱导和遗传易感性糖尿病小鼠中进行了胰岛素输注额外治疗之前和之后进行了研究。使用膜可渗透形式的荧光指示剂indo-1测量了由膜去极化触发的胞质钙瞬变,并比较了对照动物和糖尿病动物细胞中线粒体解偶联剂羰基氰化物间氯苯hydr应用后的变化。在糖尿病小鼠中观察到膜去极化终止后,胞浆钙的残留升高显着延长,这主要在小(伤害感受性)神经元中表达。这与高血糖水平相关,高血糖水平在链脲佐菌素治疗小鼠的细胞中最高。胰岛素部分扭转了这些变化。羰基氰基间氯苯基hydr在对照小鼠的神经元中的应用扩大了钙瞬变的峰值,并降低了残余钙的升高,表明生理条件下的线粒体通过减少由于快速吸收钙离子并通过延长其峰值而参与了这些瞬变的形成。由于随后缓慢的钙释放回到细胞质中。羰基氰化物间氯苯hydr降低线粒体钙累积功能,消除了这些变化。羰基氰化物间氯苯基hydr也消除了糖尿病动物神经元胞质钙特征的延长残留升高,证实了这种升高主要是由线粒体功能障碍决定的,线粒体功能障碍取决于高血糖水平。此类变化在小神经元中的主要表达可以通过内质网缺乏有效的钙缓冲来解释。讨论了所描述的钙信号传导变化在神经病性综合征起源中的可能作用。

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