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Intracellular Calcium Oscillations in Astrocytes: A Highly Plastic Bidirectional Form of Communication between Neurons and Astrocytes In Situ

机译:星形胶质细胞中的细胞内钙振荡:神经元和星形胶质细胞之间原位通讯的高度可塑性双向形式。

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摘要

The spatial–temporal characteristics of intracellular calcium ([Ca2+]i) changes elicited in neurons and astrocytes by various types of stimuli were investigated by means of confocal fluorescent microscopy in acute rat brain slices loaded with the Ca2+ indicator indo-1. Neurons and astrocytes from the visual cortex and CA1 hippocampal region were identified in situ on the basis of their morphological, electrophysiological, and pharmacological features. We show here that stimulation of neuronal afferents triggered periodic [Ca2+]i oscillations in astrocytes. The frequency of these oscillations was under a dynamic control by neuronal activity as it changed according to the pattern of stimulation. After repetitive episodes of neuronal stimulation as well as repetitive stimulation with a metabotropic glutamate receptor agonist, astrocytes displayed a long-lasting increase in [Ca2+]i oscillation frequency. Oscillating astrocytes were accompanied by repetitive [Ca2+]i elevations in adjacent neurons, most likely because of the release of glutamate via a tetanus toxin-resistant process. These results reveal that [Ca2+]i oscillations in astrocytes represent a highly plastic signaling system that underlies the reciprocal communication between neurons and astrocytes.
机译:利用共聚焦荧光显微镜观察了急性脑切片中共摄取的各种刺激物在神经元和星形胶质细胞中引起的细胞内钙([Ca 2 + ] i)变化的时空特征。 Ca 2 + 指标indo-1。根据视觉皮层和CA1海马区的形态,电生理学和药理学特征,从它们的原位鉴定出神经元和星形胶质细胞。我们在这里显示神经元传入的刺激触发星形胶质细胞中周期性的[Ca 2 + ] i振荡。这些振荡的频率受到神经元活动的动态控制,因为它根据刺激的模式而变化。在神经元刺激的反复发作以及代谢型谷氨酸受体激动剂的反复刺激后,星形胶质细胞的[Ca 2 + ] i振荡频率呈现持久性增长。振荡的星形胶质细胞伴有相邻神经元中重复的[Ca 2 + ] i升高,最可能的原因是通过抗破伤风毒素的过程释放了谷氨酸。这些结果表明,星形胶质细胞中的[Ca 2 + ] i振荡代表了高度可塑性的信号系统,该系统是神经元与星形胶质细胞之间相互通讯的基础。

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