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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Rapid astrocyte calcium signals correlate with neuronal activity and onset of the hemodynamic response in vivo.
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Rapid astrocyte calcium signals correlate with neuronal activity and onset of the hemodynamic response in vivo.

机译:快速的星形胶质细胞钙信号与神经元活性和体内血液动力学反应的发作有关。

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摘要

Elevation of intracellular Ca2+ in astrocytes can influence cerebral microcirculation and modulate synaptic transmission. Recently, in vivo imaging studies identified delayed, sensory-driven Ca2+ oscillations in cortical astrocytes; however, the long latencies of these Ca2+ signals raises questions in regards to their suitability for a role in short-latency modulation of cerebral microcirculation or rapid astrocyte-to-neuron communication. Here, using in vivo two-photon Ca2+ imaging, we demonstrate that approximately 5% of sulforhodamine 101-labeled astrocytes in the hindlimb area of the mouse primary somatosensory cortex exhibit short-latency (peak amplitude approximately 0.5 s after stimulus onset), contralateral hindlimb-selective sensory-evoked Ca2+ signals that operate on a time scale similar to neuronal activity and correlate with the onset of the hemodynamic response as measured by intrinsic signal imaging. The kinetics of astrocyte Ca2+ transients were similar in rise and decay times to postsynaptic neuronal transients, but decayed more slowly than neuropil Ca2+ transients that presumably reflect presynaptic transients. These in vivo findings suggest that astrocytes can respond to sensory activity in a selective manner and process information on a subsecond time scale, enabling them to potentially form an active partnership with neurons for rapid regulation of microvascular tone and neuron-astrocyte network properties.
机译:星形胶质细胞中细胞内Ca2 +升高可影响脑微循环并调节突触传递。最近,体内成像研究确定了皮质星形胶质细胞中延迟的,由感觉驱动的Ca2 +振荡。然而,这些Ca2 +信号的长时延引发了关于它们是否适合在脑微循环的短时延调节或星形胶质细胞与神经元的快速通讯中起作用的问题。在这里,使用体内双光子Ca2 +成像,我们证明了小鼠原代体感皮层后肢区域中约5%的磺基若丹明101标记的星形胶质细胞表现出短潜伏期(刺激发作后峰值约0.5 s),对侧后肢选择性感觉诱发的Ca2 +信号,其时间尺度类似于神经元活动,并与内在信号成像所测得的血液动力学反应有关。星形胶质细胞Ca 2+瞬变的动力学在上升和衰减时间上与突触后神经元瞬变相似,但衰减速度比可能反映突触前瞬变的Neuropil Ca 2+瞬变慢。这些体内发现表明,星形胶质细胞可以以选择性的方式响应感觉活动,并在亚秒级的时间尺度上处理信息,使它们有可能与神经元形成活跃的伙伴关系,从而快速调节微血管张力和神经元-星形胶质细胞网络特性。

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