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Quantitative characterization of proliferative cells subpopulations in the hilus of the hippocampus of adult Wistar rats: an integrative study

机译:成人Wistar大鼠海马Hilus增殖细胞群的定量表征:一体化研究

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The hilus plays an important role modulating the excitability of the hippocampal dentate gyrus (DG). It also harbors proliferative cells whose proliferation rate is modified during pathological events. However, the characterization of these cells, in terms of cellular identity, lineage, and fate, as well as the morphology and proportion of each cell subpopulation has been poorly studied. Therefore, a deeper investigation of hilar proliferative cells might expand the knowledge not only in the physiology, but in the pathophysiological processes related to the hippocampus too. The aim of this work was to perform an integrative study characterizing the identity of proliferative cells populations harbored in the hilus, along with morphology and proportion. In addition, this study provides comparative evidence of the subgranular zone (SGZ) of the DG. Quantified cells included proliferative, neural precursor, Type 1, oligodendrocyte progenitor (OPCs), neural progenitor (NPCs), and proliferative mature astrocytes in the hilus and SGZ of Wistar adult rats. Our results showed that 84% of the hilar proliferative cells correspond to neural precursor cells, OPCs and NPCs being the most abundant at 54 and 45%, respectively, unlike the SGZ, where OPCs represent only 11%. Proliferative mature astrocytes and Type 1-like cells were rarely observed in the hilus. Together, our results lay the basis for future studies focused on the lineage and fate of hilar proliferative cells and suggest that the hilus could be relevant to the formation of new cells that modulate multiple physiological processes governed by the hippocampus.
机译:Hilus在调节海马齿状术(DG)的兴奋性中起重要作用。它还在病理事件期间突出了增殖细胞的增殖细胞。然而,在细胞身份,谱系和命运方面,这些细胞的表征以及每个细胞亚群的形态和形态和比例已经很差。因此,对蚕龟增殖性细胞的更深层次调查可能不仅在生理学中扩大知识,而且在与海马有关的病理生理过程中。这项工作的目的是进行一项综合研究,其特征在于在Hilus中覆盖的增殖细胞种群的身份以及形态和比例。此外,本研究提供了DG的亚体区(SGZ)的比较证据。量化细胞包括增殖性,神经前体,1型,少突胶质细胞祖(OPCS),神经祖细胞(NPC)和Wistar成年大鼠的Hilus和Sgz的增殖成熟星形胶质细胞。我们的研究结果表明,与SGZ不同,84%的Hilar增殖细胞分别对应于神经前体细胞,OPCS和NPC,分别是54和45%的最丰富,OPCs仅为11%。在Hilus中很少观察到增殖成熟的星形胶质细胞和1型细胞。我们的结果在一起奠定了未来研究的基础,重点关注血液增殖细胞的谱系和命运,并表明Hilus可能与调节海马治治的多种生理过程的新细胞的形成相关。

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