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首页> 外文期刊>Annals of the New York Academy of Sciences >Osteoblastic Activation in the Hematopoietic Stem Cell Niche
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Osteoblastic Activation in the Hematopoietic Stem Cell Niche

机译:造血干细胞生态位中的成骨细胞活化。

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摘要

Hematopoietic stem cells (HSC) are rare primitive cells capable of reconstituting all blood cell lineages throughout the life of an individual. The microenvironment in which stem cells reside is essential for their survival, self-renewal, and differentiation. This microenvironment, or HSC niche, has been difficult to define in bone and bone marrow, but recent studies from our laboratory and others have shown that os-teoblasts, the bone-forming cells, are an essential regulatory component of this complex cellular network. We established that parathyroid hormone (PTH), through activation of the PTH/PTHrP receptor (PTH1R) in osteoblastic cells, could alter the HSC niche resulting in HSC expansion in vivo and in vitro and improving dramatically the survival of mice receiving bone marrow transplants. These findings are of great clinical appeal, because they suggest that a strategy aimed at modifying supportive cells in a stem cell niche can expand HSC. While a number of molecules have been found to be important for hematopoietic/osteoblastic interactions, we have focused on the Jagged1/Notch signaling pathway, which was necessary for the PTH-dependent HSC expansion. Since the Jagged1/Notch signaling pathway has been implicated in the microenvironmental control of stem cell self-renewal in several organ systems, definition of Jagged1 modulation, which is currently poorly understood, should provide additional molecular targets for stem cell regulation and advance the understanding of stem cell-microenvironmental interactions.
机译:造血干细胞(HSC)是罕见的原始细胞,能够在个体的整个生命周期中重构所有血细胞谱系。干细胞所处的微环境对其生存,自我更新和分化至关重要。这种微环境或HSC细分很难在骨骼和骨髓中定义,但是我们实验室和其他研究机构的最新研究表明成骨细胞即成骨细胞是这种复杂细胞网络必不可少的调节成分。我们建立了甲状旁腺激素(PTH),通过激活成骨细胞中的PTH / PTHrP受体(PTH1R),可以改变HSC的生态位,导致HSC在体内和体外扩增,并显着提高接受骨髓移植的小鼠的存活率。这些发现具有重大的临床吸引力,因为它们表明旨在修饰干细胞生态位中支持细胞的策略可以扩大HSC。虽然已发现许多分子对造血/成骨细胞的相互作用很重要,但我们集中于Jagged1 / Notch信号通路,这对于PTH依赖性HSC的扩增是必需的。由于Jagged1 / Notch信号通路已牵涉到多个器官系统中干细胞自我更新的微环境控制中,因此目前尚不十分了解的Jagged1调节定义应为干细胞调节提供额外的分子靶点,并进一步促进对Jagged1 / Notch信号传导途径的理解。干细胞-微环境相互作用。

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