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首页> 外文期刊>The Journal of Comparative Neurology >Modulation of intercellular calcium signaling by melatonin in avian and mammalian astrocytes is brain region-specific.
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Modulation of intercellular calcium signaling by melatonin in avian and mammalian astrocytes is brain region-specific.

机译:褪黑激素在禽和哺乳动物星形胶质细胞中对细胞间钙信号的调节是脑区域特异性的。

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Calcium waves among glial cells impact many central nervous system functions, including neural integration and brain metabolism. Here, we characterized the modulatory effects of melatonin, a pineal neurohormone that mediates circadian and seasonal processes, on glial calcium waves derived from different brain regions and species. Diencephalic and telencephalic astrocytes, from both chick and mouse brains, expressed melatonin receptor proteins. Further, using the calcium-sensitive dye Fluo-4, we conducted real-time imaging analyses of calcium waves propagated among mammalian and avian astrocytes. Mouse diencephalic astrocytic calcium waves spread to an area 2-5-fold larger than waves among avian astrocytes and application of 10 nM melatonin caused a 32% increase in the spread of these mammalian calcium waves, similar to the 23% increase observed in chick diencephalic astrocytes. In contrast, melatonin had no effect on calcium waves in either avian or mammalian telencephalic astrocytes. Mouse telencephalic calcium waves radially spread from their initiation site among untreated astrocytes. However, waves meandered among mouse diencephalic astrocytes, taking heterogeneous paths at variable rates of propagation. Brain regional differences in wave propagation were abolished by melatonin, as diencephalic astrocytes acquired more telencephalon-like wave characteristics. Astrocytes cultured from different brain regions, therefore, possess fundamentally disparate mechanisms of calcium wave propagation and responses to melatonin. These results suggest multiple roles for melatonin receptors in the regulation of astroglial function, impacting specific brain regions differentially. J. Comp. Neurol. 493:370-380, 2005. (c) 2005 Wiley-Liss, Inc.
机译:胶质细胞中的钙波影响许多中枢神经系统功能,包括神经整合和脑代谢。在这里,我们表征了褪黑激素(一种介导昼夜节律和季节性过程的松果神经激素)对源自不同大脑区域和物种的神经胶质钙波的调节作用。来自小鸡和小鼠大脑的双脑和远脑星形胶质细胞表达褪黑激素受体蛋白。此外,使用钙敏感染料Fluo-4,我们对哺乳动物和鸟类星形胶质细胞之间传播的钙波进行了实时成像分析。小鼠二脑星形细胞钙波的传播面积是禽星形胶质细胞中波的2-5倍,应用10 nM褪黑素会使这些哺乳动物钙波的传播增加32%,与鸡双脑的观察到的增加23%类似星形胶质细胞。相反,褪黑激素对禽类或哺乳动物端脑星形胶质细胞中的钙波没有影响。小鼠远脑钙波从未经处理的星形胶质细胞的起始部位放射状扩散。但是,波在小鼠的双脑星形胶质细胞之间蜿蜒,以不同的传播路径传播。褪黑激素消除了脑区域波传播的区域差异,因为双脑星形胶质细胞获得了更多的脑神经样波特征。因此,从不同大脑区域培养的星形胶质细胞具有根本不同的钙波传播机制和对褪黑激素的反应。这些结果表明褪黑激素受体在星形胶质细胞功能的调节中有多种作用,差异地影响特定的大脑区域。 J.比较神经元。 493:370-380,2005.(c)2005 Wiley-Liss,Inc.

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