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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Roles for HB-EGF in Mesenchymal Stromal Cell Proliferation and Differentiation During Skeletal Growth
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Roles for HB-EGF in Mesenchymal Stromal Cell Proliferation and Differentiation During Skeletal Growth

机译:HB-EGF在间充质基质细胞增殖和骨骼生长期间的分化作用

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摘要

HB-EGF, a member of the EGF superfamily, plays important roles in development and tissue regeneration. However, its functions in skeletal stem cells and skeleton development and growth remain poorly understood. Here, we used the Cre/LoxP system to ablate or express HB-EGF in Dermo1+ mesenchymal stromal cells and their progenies, including chondrocytes and osteoblast lineage cells, and bone marrow stromal cells (BMSCs). Dermo1-Cre; HB-EGF(f/f) mice only showed a modest increase in bone mass, whereas Dermo1-HB-EGF mice developed progressive chondrodysplasia, chondroma, osteoarthritis-like joint defects, and loss of bone mass and density, which were alleviated by treatment with EGFR inhibitor AG1478. The cartilage defects were recapitulated in chondrocyte-specific HB-EGF overexpression (Col2-HB-EGF) mice with a lesser severity. Dermo1-HB-EGF mice showed an increase in proliferation but defects in differentiation of chondrocytes and osteoblasts. HB-EGF promoted BMSC proliferation via the Akt1 and Erk pathways but inhibited BMSC differentiation via restraining Smad1/5/8 activation. However, Dermo1-HB-EGF mice showed normal osteoclastogenesis and bone resorption. These results reveal an important function of autocrine or paracrine HB-EGF in mesenchymal stromal cell proliferation and differentiation and suggest that EGF signaling needs to be tightly controlled to maintain bone and articular cartilage integrity. (c) 2018 The Authors. Journal of Bone and Mineral Research Published by Wiley Periodicals Inc.
机译:HB-EGF是EGF超家族的成员,在发育和组织再生中起重要作用。然而,其在骨骼干细胞和骨架发育和增长中的功能仍然明白很差。在此,我们使用CRE / LOXP系统在Dermo1 +间充质基质细胞及其后代烧蚀或表达HB-EGF,包括软骨细胞和骨赘谱系细胞,以及骨髓基质细胞(BMSC)。 Dermo1-CRE; Hb-EGF(F / F)小鼠仅表现出骨质量较大,而Dermo1-HB-EGF小鼠发育进展性软骨癌,软骨瘤,骨关节炎样关节缺陷,并且骨质损失和密度丧失,由治疗缓解用EGFR抑制剂AG1478。软骨缺陷在软骨细胞特异性HB-EGF过表达(COL2-HB-EGF)小鼠中具有较小的严重程度。 Dermo1-Hb-EGF小鼠表现出增殖的增加,但细胞细胞和成骨细胞的分化缺陷。 HB-EGF通过AKT1和ERK途径促进BMSC增殖,但通过抑制SMAD1 / 5/8活化抑制BMSC分化。然而,Dermo1-Hb-EGF小鼠表现出正常的骨质细胞发生和骨吸收。这些结果揭示了间充质基质细胞增殖和分化中的自分泌或旁静脉HB-EGF的重要功能,并表明EGF信号传导需要紧密地控制,以保持骨和关节软骨完整性。 (c)2018作者。 Wiley期刊公司骨矿物研究杂志CHINESE。

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