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Astrocyte calcium waves propagate proximally by gap junction and distally by extracellular diffusion of ATP released from volume-regulated anion channels

机译:星形胶质细胞钙波通过间隙连接向近端传播并通过从体积调节阴离子通道释放的ATP的细胞外扩散向远端传播

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摘要

Wave-like propagation of [Ca2+]i increases is a remarkable intercellular communication characteristic in astrocyte networks, intercalating neural circuits and vasculature. Mechanically-induced [Ca2+]i increases and their subsequent propagation to neighboring astrocytes in culture is a classical model of astrocyte calcium wave and is known to be mediated by gap junction and extracellular ATP, but the role of each pathway remains unclear. Pharmacologic analysis of time-dependent distribution of [Ca2+]i revealed three distinct [Ca2+]i increases, the largest being in stimulated cells independent of extracellular Ca2+ and inositol 1,4,5-trisphosphate-induced Ca2+ release. In addition, persistent [Ca2+]i increases were found to propagate rapidly via gap junctions in the proximal region, and transient [Ca2+]i increases were found to propagate slowly via extracellular ATP in the distal region. Simultaneous imaging of astrocyte [Ca2+]i and extracellular ATP, the latter of which was measured by an ATP sniffing cell, revealed that ATP was released within the proximal region by volume-regulated anion channel in a [Ca2+]i independent manner. This detailed analysis of a classical model is the first to address the different contributions of two major pathways of calcium waves, gap junctions and extracellular ATP.
机译:[Ca 2 + ] i的波状传播增加是星形胶质细胞网络,插入神经回路和脉管系统中的显着细胞间通讯特征。机械诱导的[Ca 2 + ] i增加,其随后传播至培养中的邻近星形胶质细胞是星形胶质细胞钙波的经典模型,并且已知由间隙连接和细胞外ATP介导,但其作用每种途径的不清楚。 [Ca 2 + ] i的时间依赖性分布的药理学分析显示,[Ca 2 + ] i的三个明显增加,最大的是独立于细胞外Ca < sup> 2 + 和肌醇1,4,5-三磷酸酯诱导的Ca 2 + 释放。此外,发现持续的[Ca 2 + ] i增加经由近端间隙连接迅速传播,并且发现瞬时的[Ca 2 + ] i增加通过细胞外ATP在远端区域缓慢传播。星形胶质细胞[Ca 2 + ] i和细胞外ATP的同时成像,后者通过ATP嗅探细胞进行测量,结果表明ATP是通过血管中的体积调节阴离子通道在近端区域释放的。 [Ca 2 + ] i独立。对经典模型的详细分析是第一个解决钙波,间隙连接和细胞外ATP两种主要途径的不同贡献的方法。

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