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首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Sonic hedgehog expands diaphyseal trabecular bone altering bone marrow niche and lymphocyte compartment.
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Sonic hedgehog expands diaphyseal trabecular bone altering bone marrow niche and lymphocyte compartment.

机译:声波刺猬扩大了干phy骨小梁骨,改变了骨髓生境和淋巴细胞区室。

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摘要

Bone marrow contains distinct microenvironments that regulate hematopoietic stem cells (HSCs). The endosteal HSC niche includes osteoblasts, mineral, and extracellular matrix proteins that interact through various molecular signals to control HSCs. Sonic hedgehog (Shh) is a morphogen involved in the regulation of skeletal development and hematopoiesis, but the effects of Shh on bone in relation to the HSC niche are not well understood. We demonstrate that systemic overexpression of Shh in mice increases osteoblast number with the resultant formation of new trabeculae in the femoral diaphysis. Suggestive of a functional change in the hematopoietic niche, numbers of Lin(-) Sca-1(+) c-Kit(+) cells with hematopoietic progenitor function expand, although cells with in vivo repopulating capacity in the wild-type environment do not increase. Instead, Shh mediates a decrease in number of bone marrow lymphocytes accompanied by a decreased expression of stromal-derived growth factor 1 (SDF-1) and a decrease in Flk2-expressing Lin(-) Sca-1(+) c-Kit(+) cells, indicating a modulation of early lymphopoiesis. This is caused by a microenvironment-induced mechanism as Shh treatment of bone marrow recipients, but not donors, results in a dramatic depletion of lymphocytes. Together, these data suggest that Shh mediates alterations in the bone marrow hematopoietic niche affecting the early lymphoid differentiation.
机译:骨髓包含独特的微环境,可调节造血干细胞(HSC)。内膜造血干细胞的利基包括成骨细胞,矿物质和细胞外基质蛋白,它们通过各种分子信号相互作用来控制造血干细胞。声波刺猬(Shh)是一种参与骨骼发育和造血功能调节的形态发生剂,但与HSC生态位有关的Shh对骨骼的影响尚不十分清楚。我们证明在小鼠体内Shh的系统过度表达增加了成骨细胞数量,并在股骨干中形成了新的小梁。尽管在野生型环境中具有体内繁殖能力的细胞不会增加造血祖细胞功能的变化,但是具有造血祖细胞功能的Lin(-)Sca-1(+)c-Kit(+)细胞的数量会增加增加。相反,Shh介导了骨髓淋巴细胞数量的减少,并伴有基质衍生生长因子1(SDF-1)的表达减少以及Flk2表达Lin(-)Sca-1(+)c-Kit( +)细胞,表明早期淋巴细胞生成受到调节。这是由微环境诱导的机制引起的,因为Shh治疗骨髓受体而非供体会导致淋巴细胞大量消耗。总之,这些数据表明Shh介导了骨髓造血位的改变,影响了早期淋巴样分化。

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