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Astrocytes are endogenous regulators of basal transmission at central synapses

机译:星形胶质细胞是中枢突触的基础传递的内源性调节剂。

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Basal synaptic transmission involves the release of neurotransmitters at individual synapses in response to a single action potential. Recent discoveries show that astrocytes modulate the activity of neuronal networks upon sustained and intense synaptic activity. However, their ability to regulate basal synaptic transmission remains ill defined and controversial. Here, we show that astrocytes in the hippocampal CA1 region detect synaptic activity induced by single-synaptic stimulation. Astrocyte activation occurs at functional compartments found along astrocytic processes and involves metabotropic glutamate subtype 5 receptors. In response, astrocytes increase basal synaptic transmission, as revealed by the blockade of their activity with a Ca ~(2+) chelator. Astrocytic modulation of basal synaptic transmission is mediated by the release of purines and the activation of presynaptic A _(2A) receptors by adenosine. Our work uncovers an essential role for astrocytes in the regulation of elementary synaptic communication and provides insight into fundamental aspects of brain function.
机译:基础突触传递涉及响应单个动作电位在单个突触处释放神经递质。最近的发现表明,星形胶质细胞在持续和强烈的突触活动中调节神经元网络的活动。然而,它们调节基础突触传递的能力仍未明确和有争议。在这里,我们表明,海马CA1区的星形胶质细胞检测到由单突触刺激诱导的突触活性。星形胶质细胞的激活发生在星形细胞的功能区室,涉及代谢型谷氨酸亚型5受体。作为响应,星形胶质细胞增加了基础突触传递,如通过用Ca〜(2+)螯合剂阻断其活性所揭示的。基础突触传递的星形细胞调节是由嘌呤的释放和腺苷对突触前A_(2A)受体的激活介导的。我们的工作揭示了星形胶质细胞在基本突触通讯调节中的重要作用,并提供了对脑功能基本方面的见解。

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