Ding Shinghua
Dalton Cardiovascular Research Center, Department of Bioengineering, University of Missouri-Columbia, 134 Research Park Drive, Columbia, MO, 65211, USA,
Adv Neurobiol. 2014;11:189-211. doi: 10.1007/978-3-319-08894-5_10.
Astrocytes have been found to play important roles in physiology being fundamental for ionic homeostasis and glutamate clearance from the synaptic cleft by their plasma membrane glutamate transporters. Astrocytes are electrically non-excitable, but they exhibit Ca(2+) signaling, which now has been demonstrated to serve as an indirect mediator of neuron-glia bidirectional interactions through gliotransmission via tripartite synapses and to modulate synaptic function and plasticity. Spontaneous astrocytic Ca(2+) signaling was observed in vivo. Intercellular Ca(2+) waves in astrocytes can be evoked by a variety of stimulations. Astrocytes are critically involved in many pathological conditions including ischemic stroke. For example, it is well known that astrocytes become reactive and form glial scar after stroke. In animal models of some brain disorders, astrocytes have been shown to exhibit enhanced Ca(2+) excitability featured as regenerative intercellular Ca(2+) waves. This chapter briefly summarizes astrocytic Ca(2+) signaling pathways under normal conditions and in experimental in vitro and in vivo ischemic models. It discusses the possible mechanisms and therapeutic implication underlying the enhanced astrocytic Ca(2+) excitability in stroke.
已发现星形胶质细胞在生理学中发挥重要作用,其质膜谷氨酸转运体对离子稳态和从突触间隙清除谷氨酸至关重要。星形胶质细胞不具有电兴奋性,但它们表现出Ca(2+)信号传导,现已证明该信号传导通过三方突触的胶质递质传递作为神经元 - 胶质细胞双向相互作用的间接介质,并调节突触功能和可塑性。在体内观察到自发性星形胶质细胞Ca(2+)信号传导。星形胶质细胞中的细胞间Ca(2+)波可由多种刺激诱发。星形胶质细胞严重参与包括缺血性中风在内的许多病理状况。例如,众所周知,中风后星形胶质细胞会发生反应并形成胶质瘢痕。在一些脑部疾病的动物模型中,已显示星形胶质细胞表现出增强的Ca(2+)兴奋性,其特征为再生性细胞间Ca(2+)波。本章简要总结了正常条件下以及实验性体外和体内缺血模型中的星形胶质细胞Ca(2+)信号通路。它讨论了中风中星形胶质细胞Ca(2+)兴奋性增强的潜在机制和治疗意义。