首页> 外文期刊>The Journal of Experomental Medicine >Osteoprotegerin Reverses Osteoporosis by Inhibiting Endosteal Osteoclasts and Prevents Vascular Calcification by Blocking a Process Resembling Osteoclastogenesis
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Osteoprotegerin Reverses Osteoporosis by Inhibiting Endosteal Osteoclasts and Prevents Vascular Calcification by Blocking a Process Resembling Osteoclastogenesis

机译:骨保护素通过抑制内膜破骨细胞逆转骨质疏松症,并通过阻止类似于破骨细胞生成的过程来预防血管钙化

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High systemic levels of osteoprotegerin (OPG) in OPG transgenic mice cause osteopetrosis with normal tooth eruption and bone elongation and inhibit the development and activity of endosteal, but not periosteal, osteoclasts. We demonstrate that both intravenous injection of recombinant OPG protein and transgenic overexpression of OPG in OPG?/2 mice effectively rescue the osteoporotic bone phenotype observed in OPG-deficient mice. However, intravenous injection of recombinant OPG over a 4-wk period could not reverse the arterial calcification observed in OPG?/? mice. In contrast, transgenic OPG delivered from mid-gestation through adulthood does prevent the formation of arterial calcification in OPG?/? mice. Although OPG is normally expressed in arteries, OPG ligand (OPGL) and receptor activator of NF-κB (RANK) are not detected in the arterial walls of wild-type adult mice. Interestingly, OPGL and RANK transcripts are detected in the calcified arteries of OPG?/? mice. Furthermore, RANK transcript expression coincides with the presence of multinuclear osteoclast-like cells. These findings indicate that the OPG/OPGL/RANK signaling pathway may play an important role in both pathological and physiological calcification processes. Such findings may also explain the observed high clinical incidence of vascular calcification in the osteoporotic patient population.
机译:OPG转基因小鼠体内高水平的骨保护素(OPG)会导致骨增生,牙齿正常萌发和骨伸长,并抑制骨内膜破骨细胞的发育和活性,但不能抑制骨膜破骨细胞的发育和活性。我们证明,在OPGα/ 2小鼠中静脉内注射重组OPG蛋白和OPG转基因过表达都有效地挽救了在OPG缺陷小鼠中观察到的骨质疏松性骨表型。然而,在4周内静脉内注射重组OPG不能逆转OPGα/β中观察到的动脉钙化。老鼠。相反,从妊娠中期到成年期输送的转基因OPG确实阻止了OPGβ/α中动脉钙化的形成。老鼠。尽管OPG通常在动脉中表达,但在野生型成年小鼠的动脉壁中未检测到OPG配体(OPGL)和NF-κB受体激活剂(RANK)。有趣的是,在OPGα/β的钙化动脉中检测到了OPGL和RANK转录物。老鼠。此外,RANK转录表达与多核破骨细胞样细胞的存在相吻合。这些发现表明,OPG / OPGL / RANK信号通路可能在病理和生理钙化过程中起重要作用。这些发现也可以解释在骨质疏松患者人群中观察到的血管钙化的高临床发生率。

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