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Ahsg对骨形态发生蛋白诱导的异位骨形成的调节作用。

Regulation of BMP-induced ectopic bone formation by Ahsg.

作者信息

Rittenberg B, Partridge E, Baker G, Clokie C, Zohar R, Dennis J W, Tenenbaum H C

机构信息

Samuel Lunenfeld Research Institute, Mount Sinai Hospital, Toronto, Ontario, Canada.

出版信息

J Orthop Res. 2005 May;23(3):653-62. doi: 10.1016/j.orthres.2004.11.010.

Abstract

alpha2-HS-glycoprotein (Ahsg), also known as fetuin is a serum and bone resident glycoprotein, which binds to TGF-beta superfamily members including bone morphogenetic proteins (BMP) and inhibits dexamethasone-induced osteogenesis in bone marrow cultures in vitro. Here we demonstrate that Ahsg reduces cytokine binding to its cognate receptor in HOS osteocyte cells and suppresses intracellular signaling, while in vivo, we test the hypothesis that Ahsg-deficient mice are hyper-responsive to BMP-induced osteogenesis. Human native BMP was implanted into the hindquarter muscles of Ahsg(+/+), Ahsg(+/-) and Ahsg(-/-) mice and 4 weeks later, ossicle formation was analyzed by radiography, bone density scanning (DEXA) and histomorphometry. Alkaline phosphatase (AP) activity was measured in ossicles as a marker for bone cell differentiation, and was significantly higher in Ahsg(-/-) versus Ahsg(+/-) and/or Ahsg(+/+) mice. Ectopic ossicle size in the Ahsg(+/-) mouse was 4-fold greater than that in the wild type (Ahsg(+/+)), and intermediate to that shown in Ahsg(-/-) mouse. Bone mineral density (BMD) was lower in the Ahsg(-/+) and Ahsg(-/-) mice compared to Ahsg(+/+) littermates. The ratio of cortical to cancellous bone was found to be >2-fold higher in Ahsg(-/-) mouse in comparison to the Ahsg(+/+) mice with no significant change in the Ahsg(-/+) mouse. Finally, a significantly higher incidence of satellite ossification; small islands of immature bone, was shown in Ahsg(-/-) mice as compared to Ahsg(+/+) mice. Although Ahsg binds to TGF-beta/BMP and blocks receptor signalling, it may also sequester cytokines in matrix, thereby acting as a reservoir of osteoinductive activity when released. This may explain the non-linear relationship between ectopic bone formation characteristics and Ahsg(+/+), Ahsg(+/-) and Ahsg(-/-) genotypes, although the increase in satellite bone formation might also explain this phenomenon. Our results suggest that Ahsg may be useful for prevention of the heterotopic ossification and the regulation of osteoinductive effects of BMP used with grafts.

摘要

α2-HS-糖蛋白(Ahsg),也被称为胎球蛋白,是一种存在于血清和骨骼中的糖蛋白,它能与包括骨形态发生蛋白(BMP)在内的转化生长因子-β超家族成员结合,并在体外抑制骨髓培养物中地塞米松诱导的成骨作用。在此,我们证明Ahsg可减少细胞因子与HOS骨细胞中其同源受体的结合,并抑制细胞内信号传导,而在体内,我们检验了Ahsg基因缺陷型小鼠对BMP诱导的成骨作用反应过度的假说。将人天然BMP植入Ahsg(+/+)、Ahsg(+/-)和Ahsg(-/-)小鼠的后肢肌肉中,4周后,通过X线摄影、骨密度扫描(DEXA)和组织形态计量学分析骨化小体的形成。测量骨化小体中的碱性磷酸酶(AP)活性作为骨细胞分化的标志物,Ahsg(-/-)小鼠中的AP活性显著高于Ahsg(+/-)和/或Ahsg(+/+)小鼠。Ahsg(+/-)小鼠的异位骨化小体大小比野生型(Ahsg(+/+))大4倍,且介于Ahsg(-/-)小鼠所显示的大小之间。与Ahsg(+/+)同窝小鼠相比,Ahsg(+/-)和Ahsg(-/-)小鼠的骨矿物质密度(BMD)较低。发现Ahsg(-/-)小鼠的皮质骨与松质骨的比例比Ahsg(+/+)小鼠高2倍以上,而Ahsg(+/-)小鼠无显著变化。最后,与Ahsg(+/+)小鼠相比,Ahsg(-/-)小鼠中卫星骨化(未成熟骨的小岛屿)的发生率显著更高。尽管Ahsg与转化生长因子-β/BMP结合并阻断受体信号传导,但它也可能将细胞因子隔离在基质中,从而在释放时作为骨诱导活性的储存库。这可能解释了异位骨形成特征与Ahsg(+/+)、Ahsg(+/-)和Ahsg(-/-)基因型之间的非线性关系,尽管卫星骨形成的增加也可能解释这一现象。我们的结果表明,Ahsg可能有助于预防异位骨化以及调节与移植物一起使用的BMP的骨诱导作用。

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