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首页> 外文期刊>Frontiers in Cellular Neuroscience >Voluntary Exercise Induces Astrocytic Structural Plasticity in the Globus Pallidus
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Voluntary Exercise Induces Astrocytic Structural Plasticity in the Globus Pallidus

机译:自愿运动在Globus Pallidus中诱导星形胶质细胞结构可塑性

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Changes in astrocyte morphology are primarily attributed to the fine processes where intimate connections with neurons form the tripartite synapse and participate in neurotransmission. Recent evidence has shown that neurotransmission induces dynamic synaptic remodeling, suggesting that astrocytic fine processes may adapt their morphologies to the activity in their environment. To illustrate such a neuron-glia relationship in morphological detail, we employed a double transgenic Olig2~(CreER/WT); ROSA26-GAP43-EGFP mice, in which Olig2-lineage cells can be visualized and traced with membrane-targeted GFP. Although Olig2-lineage cells in the adult brain usually become mature oligodendrocytes or oligodendrocyte precursor cells with NG2-proteoglycan expression, we found a population of Olig2-lineage astrocytes with bushy morphology in several brain regions. The globus pallidus (GP) preferentially contains Olig2-lineage astrocytes. Since the GP exerts pivotal motor functions in the indirect pathway of the basal ganglionic circuit, we subjected the double transgenic mice to voluntary wheel running to activate the GP and examined morphological changes of Olig2-lineage astrocytes at both the light and electron microscopic levels. The double transgenic mice were divided into three groups: control group mice were kept in a cage with a locked running wheel for 3 weeks, Runner group were allowed free access to a running wheel for 3 weeks, and the Runner-Rest group took a sedentary 3-week rest after a 3-week running period. GFP immunofluorescence analysis and immunoelectron microscopy revealed that astrocytic fine processes elaborated complex arborization in the Runner mice, and reverted to simple morphology comparable to that of the Control group in the Runner-Rest group. Our results indicated that the fine processes of the Olig2-lineage astrocytes underwent plastic changes that correlated with overall running activities, suggesting that they actively participate in motor functions.
机译:星形胶质细胞形态的变化主要归因于精细过程,其中与神经元的紧密连接形成三重突触并参与神经传递。最近的证据表明神经传递诱导动态突触重塑,表明星形细胞的精细过程可能使其形态适应其环境中的活动。为了在形态学细节上说明这种神经元-神经胶质关系,我们采用了双转基因Olig2〜(CreER / WT)。 ROSA26-GAP43-EGFP小鼠,其中Olig2谱系细胞可以可视化并用膜靶向GFP追踪。尽管成年大脑中的Olig2谱系细胞通常变成具有NG2蛋白聚糖表达的成熟少突胶质细胞或少突胶质前体细胞,但我们在几个大脑区域发现了具有浓密形态的Olig2谱系星形胶质细胞。苍白球(GP)优先包含Olig2谱系星形胶质细胞。由于GP在基底神经节回路的间接途径中发挥关键的运动功能,因此我们对双转基因小鼠进行了自动轮转以激活GP,并在光镜和电子显微镜下检查了Olig2系星形胶质细胞的形态变化。将双转基因小鼠分为三组:对照组小鼠在锁有运行轮的笼子中放置3周,让Runner组自由进入运行轮3周,而Runner-Rest组则久坐连续运行3周后,需要休息3周。 GFP免疫荧光分析和免疫电子显微镜显示,星形细胞的精细过程在Runner小鼠中完成了复杂的乔木化,并恢复为与Runner-Rest组的对照组相当的简单形态。我们的结果表明,Olig2系星形胶质细胞的精细过程经历了与整体运行活动相关的塑性变化,表明它们积极参与运动功能。

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