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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Notch signals are required for in vitro but not in vivo maintenance of human hematopoietic stem cells and delay the appearance of multipotent progenitors.
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Notch signals are required for in vitro but not in vivo maintenance of human hematopoietic stem cells and delay the appearance of multipotent progenitors.

机译:体外所需的凹口表示,但不在人造造血干细胞的体内维持并延迟多能祖细胞的外观。

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摘要

All blood cell lineages start from hematopoietic stem cells (HSCs), which were recently shown to represent a heterogeneous group of cells. In mice, Notch signaling promotes the maintenance of "stemness" as well as the expansion of self-renewing HSCs in vitro. Additionally, human CD34(+) cells were shown to expand in vitro in response to Notch signals. However, it is unclear whether Notch directly affects all HSCs, and whether this role is relevant in vivo. Here, we developed culture conditions that support the maintenance of CD34(+)CD133(+)CD90(low)CD38(-)CD7(-)CD10(-)CD45RA(-) (CD90(low)) cells, phenotypically defined HSCs, as well as 2 early progenitor cells (CD34(+)CD38(-)CD7(-)CD10(-)CD45RA(int) [RA(int)] and CD34(+)CD38(-)CD7(-)CD10(-)CD45RA(hi) [RA(hi)]) that were functionally equivalent to multipotent progenitor-2 and lymphoid-primed multipotent progenitor, respectively, found in cord blood. Using a genetic approach, we show that Notch signals were required for HSC preservation, with cultured HSCs being equal to ex vivo HSC cells in their ability to reconstitute immunodeficient mice; however, dnMaml-transduced HSCs were not maintained in vitro. Interestingly, Notch signaling did not appear to be required for the self-renewal of human HSCs in vivo. Our findings support the notion that Notch signals maintain human HSCs in vitro that have hematopoietic-reconstituting ability in vivo and delay the appearance of 2 newly described early progenitor cells.
机译:所有血细胞谱系从造血干细胞(HSC)开始,最近显示出代表异质细胞组。在小鼠中,Notch信号传导促进了在体外维持“茎不安”的维持以及自我更新HSCs的扩展。另外,证明人CD34(+)细胞响应于缺口信号而在体外膨胀。但是,目前尚不清楚NOTCH是否直接影响所有HSC,以及此作用是否在体内相关。在这里,我们开发了支持CD34(+)CD133(+)CD90(低)CD38( - )CD7( - )CD10( - )CD45RA()(CD90(低))细胞的培养条件,表型定义的HSCs ,以及2个早期祖细胞(CD34(+)CD38( - )CD7( - )CD10( - )CD45ra(int)[Ra(int)]和CD34(+)CD38( - )CD7( - )CD10( - )CD45RA(HI)[RA(HI)],其在功能上相当于多能祖母-2和淋巴灌注的多能祖细胞,在脐带血中发现。使用遗传方法,我们表明,HSC保存需要凹口信号,培养的HSC等于其重组免疫缺陷小鼠的能力中的exVi​​vo HSC细胞;然而,DNMAML转导的HSC在体外没有维持。有趣的是,体内人类HSC的自我更新不需要Notch信号传播。我们的研究结果支持缺口信号在体外维持人类HSC的观念,所述体内造血 - 重构能力和延迟2个新描述的早期祖细胞的外观。

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