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呼吸网络中功能性星形胶质细胞特性的多样性。

Diversity of functional astroglial properties in the respiratory network.

作者信息

Grass Dennis, Pawlowski Petra G, Hirrlinger Johannes, Papadopoulos Nestoras, Richter Diethelm W, Kirchhoff Frank, Hülsmann Swen

机构信息

Department of Neuro- and Sensory Physiology, Center for Physiology and Pathophysiology, Georg-August-University, 37073 Göttingen, Germany.

出版信息

J Neurosci. 2004 Feb 11;24(6):1358-65. doi: 10.1523/JNEUROSCI.4022-03.2004.

Abstract

A population of neurons in the caudal medulla generates the rhythmic activity underlying breathing movements. Although this neuronal network has attracted great attention for studying neuronal aspects of synaptic transmission, functions of glial cells supporting this neuronal activity remain unclear. To investigate the role of astrocytes in the respiratory network, we applied electrophysiological and immunohistochemical techniques to characterize astrocytes in regions involved in the generation and transmission of rhythmic activity. In the ventral respiratory group and the hypoglossal nucleus (XII) of acutely isolated brainstem slices, we analyzed fluorescently labeled astrocytes obtained from TgN(GFAP-EGFP) transgenic mice with the whole-cell voltage-clamp technique. Three subpopulations of astrocytes could be discerned by their distinct membrane current profiles. A first group of astrocytes was characterized by nonrectifying, symmetrical and voltage-independent potassium currents and a robust glutamate transporter response to d-aspartate. A second group of astrocytes showed additional A-type potassium currents, whereas a third group, identified by immunolabeling for the glial progenitor marker NG2, expressed outwardly rectifying potassium currents, smaller potassium inward currents, and only minimal D-aspartate-induced transporter currents. Astrocytes of all groups showed kainate-induced inward currents. We conclude that most of the astrocytes serve as a buffer system of excess extracellular glutamate and potassium; however, a distinct cell population (NG2-positive, A-type potassium currents) may play an important role for network plasticity.

摘要

延髓尾部的一群神经元产生呼吸运动背后的节律性活动。尽管这个神经元网络在研究突触传递的神经元方面已引起了极大关注,但支持这种神经元活动的神经胶质细胞的功能仍不清楚。为了研究星形胶质细胞在呼吸网络中的作用,我们应用电生理学和免疫组织化学技术来表征参与节律性活动产生和传递区域的星形胶质细胞。在急性分离的脑干切片的腹侧呼吸组和舌下神经核(XII)中,我们用全细胞电压钳技术分析了从TgN(GFAP-EGFP)转基因小鼠获得的荧光标记星形胶质细胞。根据其不同的膜电流特征可辨别出星形胶质细胞的三个亚群。第一组星形胶质细胞的特征是具有非整流、对称且电压不依赖的钾电流以及对d-天冬氨酸有强烈的谷氨酸转运体反应。第二组星形胶质细胞显示出额外的A型钾电流,而第三组通过对神经胶质祖细胞标志物NG2进行免疫标记鉴定,其表达外向整流钾电流、较小的内向钾电流以及仅最小程度的d-天冬氨酸诱导的转运体电流。所有组的星形胶质细胞均显示出海藻酸诱导的内向电流。我们得出结论,大多数星形胶质细胞充当细胞外过量谷氨酸和钾的缓冲系统;然而,一个独特的细胞群体(NG2阳性、A型钾电流)可能对网络可塑性起重要作用。

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