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Effects of aging and sensory loss on glial cells in mouse visual and auditory cortices

机译:衰老和感觉丧失对小鼠视觉和听觉皮层神经胶质细胞的影响

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Normal aging is often accompanied by a progressive loss of receptor sensitivity in hearing and vision, whose consequences on cellular function in cortical sensory areas have remained largely unknown. By examining the primary auditory (A1) and visual (V1) cortices in two inbred strains of mice undergoing either age-related loss of audition (C57BL/6J) or vision (CBA/CaJ), we were able to describe cellular and subcellular changes that were associated with normal aging (occurring in A1 and V1 of both strains) or specifically with age-related sensory loss (only in A1 of C57BL/6J or V1 of CBA/CaJ), using immunocytochemical electron microscopy and light microscopy. While the changes were subtle in neurons, glial cells and especially microglia were transformed in aged animals. Microglia became more numerous and irregularly distributed, displayed more variable cell body and process morphologies, occupied smaller territories, and accumulated phagocytic inclusions that often displayed ultrastructural features of synaptic elements. Additionally, evidence of myelination defects were observed, and aged oligodendrocytes became more numerous and were more often encountered in contiguous pairs. Most of these effects were profoundly exacerbated by age-related sensory loss. Together, our results suggest that the age-related alteration of glial cells in sensory cortical areas can be accelerated by activity-driven central mechanisms that result from an age-related loss of peripheral sensitivity. In light of our observations, these age-related changes in sensory function should be considered when investigating cellular, cortical, and behavioral functions throughout the lifespan in these commonly used C57BL/6J and CBA/CaJ mouse models.
机译:正常衰老通常伴随着听觉和视觉中受体敏感性的逐渐丧失,其对皮层感觉区域中细胞功能的影响仍然未知。通过检查经历年龄相关的听觉丧失(C57BL / 6J)或视力(CBA / CaJ)的两种自交系小鼠的主要听觉(A1)和视觉(V1)皮质,我们能够描述细胞和亚细胞的变化使用免疫细胞化学电子显微镜和光学显微镜观察与正常衰老(两种菌株的A1和V1均发生)或与年龄相关的感觉丧失(仅在C57BL / 6J的A1或CBA / CaJ的V1中发生)相关。尽管神经元的变化微妙,但老年动物的神经胶质细胞,尤其是小胶质细胞却发生了转化。小胶质细胞变得越来越多并且分布不规则,显示出更多的可变细胞体和过程形态,占据了较小的区域,并且积累了吞噬性内含物,这些内含物常常显示出突触元件的超微结构特征。另外,观察到髓鞘形成缺陷的证据,并且老化的少突胶质细胞变得越来越多,并且在连续对中更常见。与年龄有关的感觉丧失严重加剧了这些影响中的大多数。总之,我们的结果表明,与年龄相关的外周敏感性丧失可导致活动驱动的中心机制,从而加速了感觉皮质区域神经胶质细胞的年龄相关变化。根据我们的观察,在这些常用的C57BL / 6J和CBA / CaJ小鼠模型的整个生命周期中研究细胞,皮质和行为功能时,应考虑这些与年龄相关的感觉功能变化。

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