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首页> 外文期刊>Stem Cells >Repopulating activity of ex vivo-expanded murine hematopoietic stem cells resides in the CD48-c-Kit+Sca-1+lineage marker- cell population.
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Repopulating activity of ex vivo-expanded murine hematopoietic stem cells resides in the CD48-c-Kit+Sca-1+lineage marker- cell population.

机译:离体扩增的小鼠造血干细胞的再增殖活性位于CD48-c-Kit + Sca-1 +谱系标记物-细胞群体中。

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摘要

A better understanding of the biology of cultured hematopoietic stem cells (HSCs) is required to achieve ex vivo expansion of HSCs. In this study, clonal analysis of the surface phenotype and repopulating activity of ex vivo-expanded murine HSCs was performed. After 7 days of culture with stem cell factor, thrombopoietin, fibroblast growth factor-1, and insulin-like growth factor-2, single CD34-/lowc-Kit+Sca-1+lineage marker- (CD34-KSL) cells gave rise to various numbers of cells. The proportion of KSL cells decreased with increasing number of expanded cells. Transplantation studies revealed that the progeny containing a higher percentage of KSL cells tended to have enhanced repopulating potential. We also found that CD48 was heterogeneously expressed in the KSL cell population after culture. Repopulating activity resided only in the CD48-KSL cell population, which had a relatively long intermitotic interval. Microarray analysis showed surprisingly few differences in gene expression between cultured CD48-KSL cells (cycling HSCs) and CD48+KSL cells (cycling non-HSCs) compared with freshly isolated CD34-KSL cells (quiescent HSCs), suggesting that the maintenance of stem cell activity is controlled by a relatively small number of genes. These findings should lead to a better understanding of ex vivo-expanded HSCs.
机译:为了实现HSC的离体扩增,需要对培养的造血干细胞(HSC)的生物学有更好的了解。在这项研究中,对离体扩增的鼠HSC的表面表型和再填充活性进行了克隆分析。用干细胞因子,血小板生成素,成纤维细胞生长因子-1和胰岛素样生长因子-2培养7天后,单个CD34- / lowc-Kit + Sca-1 +谱系标记物-(CD34-KSL)细胞出现到各种数量的细胞。 KSL细胞的比例随着扩增细胞数量的增加而降低。移植研究表明,含有较高百分比的KSL细胞的后代往往具有增强的繁殖潜力。我们还发现,培养后,CD48在KSL细胞群体中异质表达。重新填充的活性仅存在于CD48-KSL细胞群体中,该群体具有相对较长的间断间隔。微阵列分析显示,与新鲜分离的CD34-KSL细胞(静态HSC)相比,培养的CD48-KSL细胞(循环HSC)和CD48 + KSL细胞(循环非HSC)之间的基因表达差异出乎意料地几乎没有,这表明维持了干细胞活性受相对较少数量的基因控制。这些发现应有助于更好地了解离体扩增的HSC。

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