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首页> 外文期刊>Stem cells and development >A Single-Cell Immunofluorescence Method for the Division Patterns Research of Mouse Bone Marrow-Derived Hematopoietic Stem Cells
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A Single-Cell Immunofluorescence Method for the Division Patterns Research of Mouse Bone Marrow-Derived Hematopoietic Stem Cells

机译:小鼠骨髓型造血干细胞分区模式研究的单细胞免疫荧光方法

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摘要

How hematopoietic stem cells (HSCs) maintain the balance of self-renewal and differentiation could be partially ascribed to asymmetric and symmetric division patterns. However, a simple and effective method to detect stem cell division patterns is lacking. In this study, we introduce a strategy to describe stem cells division patterns with high spatial resolution at the single-cell level. We show that the fate determinant, Numb, exhibits low expression levels in HSCs that increase upon the initiation of differentiation. Using this single-cell immunofluorescence technique, we found that HSCs mainly undergo symmetric self-renewal in the presence of only stem cell factor, but with the addition of trombopoietin this division pattern is transformed into a symmetric commitment dominant mode in vitro. In addition, our study indicated that the division pattern cannot be defined by cell size or the nuclear/cytoplasm ratio. These findings collectively demonstrate that this single-cell immunofluorescence technique provides a new biological strategy in stem cell division research, and can be more widely applied given its flexibility, easy operability, and inexpensiveness
机译:造血干细胞(HSCs)如何保持自我更新和分化的平衡可以部分地归因于不对称和对称的分裂模式。然而,缺乏一种检测干细胞分裂模式的简单有效的方法。在本研究中,我们介绍了一种在单细胞水平下描述具有高空间分辨率的干细胞分裂模式的策略。我们表明命运决定蛋白Numb在HSC中表现出低的表达水平,其在分化开始时增加。使用这种单细胞免疫荧光技术,我们发现HSC在仅存在干细胞因子的情况下主要经历对称的自我更新,但随着蛋白蛋白的添加,该分裂模式在体外转化为对称承诺显性模式。此外,我们的研究表明,分割模式不能通过细胞尺寸或核/细胞质比定义。这些发现集体证明了这种单细胞免疫荧光技术在干细胞划分研究中提供了一种新的生物学策略,并且可以更广泛地应用其灵活性,易于可操作性和廉价效果

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