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首页> 外文期刊>The Journal of Experomental Medicine >Lnk-dependent axis of SCF–cKit signal for osteogenesis in bone fracture healing
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Lnk-dependent axis of SCF–cKit signal for osteogenesis in bone fracture healing

机译:SCF–cKit信号的Lnk依赖性轴用于骨折愈合中的成骨作用

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The therapeutic potential of hematopoietic stem cells/endothelial progenitor cells (HSCs/EPCs) for fracture healing has been demonstrated with evidence for enhanced vasculogenesis/angiogenesis and osteogenesis at the site of fracture. The adaptor protein Lnk has recently been identified as an essential inhibitor of stem cell factor (SCF)–cKit signaling during stem cell self-renewal, and Lnk-deficient mice demonstrate enhanced hematopoietic reconstitution. In this study, we investigated whether the loss of Lnk signaling enhances the regenerative response during fracture healing. Radiological and histological examination showed accelerated fracture healing and remodeling in Lnk-deficient mice compared with wild-type mice. Molecular, physiological, and morphological approaches showed that vasculogenesis/angiogenesis and osteogenesis were promoted in Lnk-deficient mice by the mobilization and recruitment of HSCs/EPCs via activation of the SCF–cKit signaling pathway in the perifracture zone, which established a favorable environment for bone healing and remodeling. In addition, osteoblasts (OBs) from Lnk-deficient mice had a greater potential for terminal differentiation in response to SCF–cKit signaling in vitro. These findings suggest that inhibition of Lnk may have therapeutic potential by promoting an environment conducive to vasculogenesis/angiogenesis and osteogenesis and by facilitating OB terminal differentiation, leading to enhanced fracture healing.
机译:已有造血干细胞/内皮祖细胞(HSCs / EPCs)对骨折愈合的治疗潜力,并有证据表明骨折部位血管生成/血管生成和成骨作用增强。最近发现,衔接蛋白Lnk在干细胞自我更新过程中是干细胞因子(SCF)–cKit信号转导的重要抑制剂,而Lnk缺陷小鼠表现出增强的造血功能。在这项研究中,我们调查了Lnk信号的丢失是否增强了骨折愈合过程中的再生反应。放射学和组织学检查显示,与野生型小鼠相比,Lnk缺陷型小鼠的骨折愈合和重塑加速。分子,生理学和形态学方法显示,通过激活周围裂隙区中的SCF–cKit信号通路,通过动员和募集HSC / EPC来促进Lnk缺陷小鼠的血管生成/血管生成和成骨。骨骼愈合和重塑。此外,来自Lnk缺陷小鼠的成骨细胞(OBs)在体外响应SCF–cKit信号时具有更大的终末分化潜力。这些发现表明,通过促进有益于血管生成/血管生成和成骨的环境并促进OB末端分化,从而增强骨折愈合,抑制Lnk可能具有治疗潜力。

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