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Astrocytic gap junction blockage and neuronal Ca2+ oscillation in neuron-astrocyte cocultures in vitro.

机译:神经元-星形胶质细胞共培养物中的星形胶质细胞间隙连接阻滞和神经元Ca2 +振荡。

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摘要

We have investigated the effects of gap junction inhibitors, octanol, halothane, sodium propionate and lindane, on neuronal periodic Ca2+ transients in neuron-astrocyte coculture systems. Octanol reduced the amplitude and frequency of Ca2+ oscillations in dose-dependent manner. One mM octanol caused a complete disappearance of Ca2+ oscillations. Similar suppressions were obtained by halothane (1 mM) and sodium propionate (25 mM). In contrast, lindane (300 nM) uniquely raised the basal level of [Ca2+], in oscillating neurons as well as the height of apparent amplitude without changes in the frequency. The current results imply that octanol, halothane and sodium propionate might lower the frequency of spontaneous Ca2+ oscillations by blocking the gap junctional communication of neighboring astrocytes and that lindane, though also blocking the gap junctions, might not affect the frequency but reversely increase both the basal [Ca2+]i and the amplitude, probably due to an increase of neuronal [Ins (1.4.5)P3]i. These findings strongly suggest that astrocytes contribute to the generation of periodic neuronal Ca2+ oscillations through astrocytic gap junctional communications and/or other signaling components between astrocytes and neurons.
机译:我们已经研究了间隙连接抑制剂,辛醇,氟烷,丙酸钠和林丹对神经元-星形胶质细胞共培养系统中神经元周期性Ca2 +瞬变的影响。辛醇以剂量依赖的方式降低了Ca2 +振荡的幅度和频率。一种mM辛醇导致Ca2 +振荡完全消失。氟烷(1 mM)和丙酸钠(25 mM)获得了相似的抑制效果。相反,林丹(300 nM)在振荡的神经元中以及在不改变频率的情况下,明显提高了[Ca2 +]的基础水平。目前的结果表明,辛醇,氟烷和丙酸钠可能会通过阻断相邻星形胶质细胞的间隙连接通讯而降低自发Ca2 +振荡的频率,而林丹虽然也能阻断间隙连接,但可能不会影响频率,但会反过来增加基础频率。 [Ca2 +] i和振幅,可能是由于神经元[Ins(1.4.5)P3] i的增加。这些发现强烈表明,星形胶质细胞通过星形胶质细胞间隙连接通讯和/或星形胶质细胞与神经元之间的其他信号传导成分促进周期性神经元Ca2 +振荡的产生。

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