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Astrocyte dystrophy in ageing brain parallels impaired synaptic plasticity

机译:老化脑瘫患者的星形胶质细胞营养不良受损突触可塑性

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Little is known about age‐dependent changes in structure and function of astrocytes and of the impact of these on the cognitive decline in the senescent brain. The prevalent view on the age‐dependent increase in reactive astrogliosis and astrocytic hypertrophy requires scrutiny and detailed analysis. Using two‐photon microscopy in conjunction with 3D reconstruction, Sholl and volume fraction analysis, we demonstrate a significant reduction in the number and the length of astrocytic processes, in astrocytic territorial domains and?in astrocyte‐to‐astrocyte coupling in the aged brain. Probing physiology of astrocytes with patch clamp, and Ca 2 imaging revealed deficits in K and glutamate clearance and spatiotemporal reorganisation of Ca 2 events in old astrocytes. These changes paralleled impaired synaptic long‐term potentiation (LTP) in hippocampal CA1 in old mice. Our findings may explain the astroglial mechanisms of age‐dependent decline in learning and memory.
机译:几乎是众所周知的年龄依赖性变化的星形胶质细胞的结构和功能以及这些对衰老脑中的认知下降的影响。 对抗性十分病变和星形胶质细胞肥大的年龄依赖性增加的普遍看法需要审查和详细分析。 使用双光子显微镜与三维重建,噬菌体和体积分析分析,我们证明了星形胶质细胞领域的数量和星形织造方法的数量显着降低,在年龄大脑中的星形胶质细胞与星形胶质细胞偶联中。 抗纤维纤维纤维胶质细胞的生理学探测,Ca 2成像显示旧星形胶质细胞Ca 2事件的k和谷氨酸间隙和谷氨酸间隙的缺陷。 这些变化在老小鼠中的海马CA1中的平行受损的突触长期增强(LTP)。 我们的研究结果可以解释学习和记忆的年龄依赖性下降的星形因子机制。

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