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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >An epigenetic component of hematopoietic stem cell aging amenable to reprogramming into a young state.
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An epigenetic component of hematopoietic stem cell aging amenable to reprogramming into a young state.

机译:造血干细胞衰老的表观遗传成分,可重新编程为年轻状态。

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Aging of hematopoietic stem cells (HSCs) leads to several functional changes, including alterations affecting self-renewal and differentiation. Although it is well established that many of the age-induced changes are intrinsic to HSCs, less is known regarding the stability of this state. Here, we entertained the hypothesis that HSC aging is driven by the acquisition of permanent genetic mutations. To examine this issue at a functional level in vivo, we applied induced pluripotent stem (iPS) cell reprogramming of aged hematopoietic progenitors and allowed the resulting aged-derived iPS cells to reform hematopoiesis via blastocyst complementation. Next, we functionally characterized iPS-derived HSCs in primary chimeras and after the transplantation of re-differentiated HSCs into new hosts, the gold standard to assess HSC function. Our data demonstrate remarkably similar functional properties of iPS-derived and endogenous blastocyst-derived HSCs, despite the extensive chronological and proliferative age of the former. Our results, therefore, favor a model in which an underlying, but reversible, epigenetic component is a hallmark of HSC aging.
机译:造血干细胞(HSC)的老化会导致一些功能变化,包括影响自我更新和分化的改变。尽管已经公认许多年龄引起的变化是HSC固有的,但对于这种状态的稳定性知之甚少。在这里,我们接受了HSC衰老是由获得永久性遗传突变驱动的假说。为了在体内功能水平上检查此问题,我们对衰老的造血祖细胞进行了诱导多能干(iPS)细胞重编程,并允许所得的衰老衍生的iPS细胞通过囊胚互补来改造造血功能。接下来,我们在原发性嵌合体中将iPS衍生的HSCs进行功能鉴定,然后将重新分化的HSCs移植到新的宿主中,这是评估HSC功能的金标准。我们的数据显示,尽管iPS衍生的内生囊胚的年龄和增殖年龄广泛,但它们的功能特性与iPS衍生的和内生的囊胚的HSC极为相似。因此,我们的结果偏向于一种模型,其中潜在但可逆的表观遗传成分是HSC衰老的标志。

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