首页> 美国卫生研究院文献>The Journal of Neuroscience >Fusion of Hematopoietic Cells with Purkinje Neurons Does Not Lead to Stable Heterokaryon Formation under Noninvasive Conditions
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Fusion of Hematopoietic Cells with Purkinje Neurons Does Not Lead to Stable Heterokaryon Formation under Noninvasive Conditions

机译:造血细胞与浦肯野神经元的融合不会导致无创条件下稳定的杂核细胞形成。

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摘要

Transplanted hematopoietic cells have previously been shown to contribute to cells of other tissues by cell fusion. We wanted to elucidate whether this phenomenon of cell fusion also occurs under physiological conditions. Using a transgenic mouse reporter system to irreversibly label cells of the hematopoietic lineage, we were able to test their contribution to other tissues in the absence of any additional and potentially confounding factors such as irradiation or chemoablation. We found genetically marked, fused Purkinje neurons as well as hepatocytes in numbers comparable to previous bone marrow transplantation studies. The number of fused Purkinje neurons increased after intrathecal administration of bacterial lipopolysaccharide, suggesting that cell fusion can be induced by inflammation. In contrast to previous studies, however, genetically labeled Purkinje neurons never contained more than one nucleus, and we found only a single cell containing two Y-chromosomes in a male mouse. Consistent with results from the mouse model and unlike human bone marrow transplant recipients, postmortem adult human cerebelli of nontransplanted individuals were devoid of binucleated or polyploid Purkinje neurons. Therefore, our data suggests that fusion of hematopoietic cells with Purkinje neurons is only transient and does not lead to stable heterokaryon formation under noninvasive conditions.
机译:先前已经证明移植的造血细胞通过细胞融合而有助于其他组织的细胞。我们想阐明这种细胞融合现象是否也在生理条件下发生。使用转基因小鼠报告系统不可逆地标记造血谱系的细胞,我们能够在没有任何其他潜在混杂因素(例如辐射或化学消融)的情况下测试它们对其他组织的贡献。我们发现具有遗传标记,融合的浦肯野神经元以及肝细胞的数量与先前的骨髓移植研究相当。鞘内施用细菌脂多糖后,融合的浦肯野神经元数量增加,这表明炎症可以诱导细胞融合。但是,与先前的研究相反,经过基因标记的浦肯野神经元从未包含一个以上的核,并且在雄性小鼠中我们只发现了一个包含两个Y染色体的单个细胞。与小鼠模型的结果一致,与人类骨髓移植受者不同,未移植个体的死后成年小脑没有双核或多倍浦肯野神经元。因此,我们的数据表明,造血细胞与浦肯野神经元的融合只是短暂的,在无创条件下不会导致稳定的异核体形成。

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