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Corpora amylacea in human hippocampal brain tissue are intracellular bodies that exhibit a homogeneous distribution of neo-epitopes

机译:人海马脑组织中的淀粉体是表现出新表位均匀分布的细胞内体

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Corpora amylacea are spherical bodies of unknown origin and function, which accumulate in the human brain during the aging process and neurodegenerative disorders. In recent work, we reported that they contain some neo-epitopes that are recognized by natural IgMs, revealing a possible link between them and the natural immune system. Here, we performed an ultrastructural study complemented with confocal microscopy in order to shed light on the formation of corpora amylacea and to precisely localize the neo-epitopes. We show that immature corpora amylacea are intracellular astrocytic structures formed by profuse cellular debris and membranous blebs entrapped in a scattered mass of randomly oriented short linear fibers. In mature corpora amylacea, the structure becomes compacted and fibrillary material constitutes the principal component. We also determined that the neo-epitopes were uniformly localized throughout the whole structure. All these observations reinforce the idea that corpora amylacea of human brain are equivalent to another type of polyglucosan bodies named PAS granules, present in mouse brain and originated from degenerative processes. All those findings support the hypothesis that corpora amylacea are involved in the entrapment of damaged materials and non-degradable products and have a role in protective or cleaning mechanisms.
机译:淀粉体是起源和功能未知的球形体,在衰老过程和神经退行性疾病中会积聚在人脑中。在最近的工作中,我们报道了它们包含一些天然IgM识别的新表位,揭示了它们与天然免疫系统之间的可能联系。在这里,我们进行了共聚焦显微镜的超微结构研究,以阐明淀粉体的形成并精确定位新表位。我们表明,未成熟的淀粉体是胞内星形细胞结构,由大量的细胞碎片和膜状气泡形成,这些细胞的气泡被困在随机定向的短线性纤维的分散质量中。在成熟的语料库中,结构变得致密,原纤维材料成为主要成分。我们还确定,新表位在整个结构中均一地定位。所有这些观察结果都强化了这样的观念,即人脑的淀粉体相当于另一种类型的聚葡聚糖体,称为PAS颗粒,存在于小鼠脑中,并起源于退化过程。所有这些发现支持以下假设:淀粉体可能参与损坏材料和不可降解产品的截留并在保护或清洁机制中起作用。

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