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New tools for investigating astrocyte-to-neuron communication

机译:研究星形胶质细胞与神经元通讯的新工具

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摘要

Gray matter protoplasmic astrocytes extend very thin processes and establish close contacts with synapses. It has been suggested that the release of neuroactive gliotransmitters at the tripartite synapse contributes to information processing. However, the concept of calcium (Ca2+)-dependent gliotransmitter release from astrocytes, and the release mechanisms are being debated. Studying astrocytes in their natural environment is challenging because: (i) astrocytes are electrically silent; (ii) astrocytes and neurons express an overlapping repertoire of transmembrane receptors; (iii) the size of astrocyte processes in contact with synapses are below the resolution of confocal and two-photon microscopes (iv) bulk-loading techniques using fluorescent Ca2+ indicators lack cellular specificity. In this review, we will discuss some limitations of conventional methodologies and highlight the interest of novel tools and approaches for studying gliotransmission. Genetically encoded Ca2+ indicators (GECIs), light-gated channels, and exogenous receptors are being developed to selectively read out and stimulate astrocyte activity. Our review discusses emerging perspectives on: (i) the complexity of astrocyte Ca2+ signaling revealed by GECIs; (ii) new pharmacogenetic and optogenetic approaches to activate specific Ca2+ signaling pathways in astrocytes; (iii) classical and new techniques to monitor vesicle fusion in cultured astrocytes; (iv) possible strategies to express specifically reporter genes in astrocytes.
机译:灰质原生质星形细胞延伸非常薄的过程,并与突触建立紧密接触。已经表明,在三重突触处神经活性神经胶质递质的释放有助于信息处理。然而,钙(Ca 2 + )依赖的神经胶质递质从星形胶质细胞释放的概念及其释放机理尚在争论中。在自然环境中研究星形胶质细胞具有挑战性,因为:(i)星形胶质细胞是电沉默的; (ii)星形胶质细胞和神经元表达跨膜受体的重叠谱; (iii)与突触接触的星形胶质细胞过程的大小低于共聚焦显微镜和双光子显微镜的分辨率(iv)使用荧光Ca 2 + 指示剂的批量加载技术缺乏细胞特异性。在这篇综述中,我们将讨论传统方法的一些局限性,并强调研究胶质传输的新颖工具和方法的兴趣。遗传编码的Ca 2 + 指示剂(GECIs),光门控通道和外源受体正在开发中,以选择性地读出并刺激星形胶质细胞的活性。我们的综述讨论了关于以下方面的新兴观点:(i)GECIs揭示的星形胶质细胞Ca 2 + 信号的复杂性; (ii)激活星形胶质细胞中特定的Ca 2 + 信号通路的新的药物遗传学和光遗传学方法; (iii)监测培养的星形胶质细胞中囊泡融合的经典和新技术; (iv)在星形胶质细胞中特异性表达报告基因的可能策略。

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