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Prevention of arterial calcification corrects the low bone mass phenotype in MGP-deficient mice

机译:预防动脉钙化校正MGP缺陷小鼠中低骨质量表型

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摘要

Matrix gla protein (MGP), a potent inhibitor of extracellular matrix (ECM) mineralization, is primarily produced by vascular smooth muscle cells (VSMCs) and chondrocytes. Consistent with its expression profile, MGP deficiency in mice (Mgp -/- mice) results in extensive mineralization of all arteries and cartilaginous ECMs. Interestingly, we observed a progressive loss of body weight in Mgp -/- mice, which becomes apparent by the third week of age. Taking into account the new paradigm linking the metabolic regulators of energy metabolism and body mass to that of bone remodeling, we compared the bone volume in Mgp -/- mice to that of their wild type littermates by micro-CT and bone histomorphometry. We found a decrease of bone volume over tissue volume in Mgp -/-mice caused by an impaired osteoblast function. In culture, early differentiation of Mgp -/- primary osteoblasts was not affected; however there was a significant upregulation of the late osteogenic marker Bglap (osteocalcin). We examined whether the prevention of arterial calcification in Mgp -/- mice could correct the low bone mass phenotype. The bones of two different genetic models: Mgp -/-;SM22-Mgp and Mgp -/-;Eln +/- mice were analyzed. In the former strain, vascular calcification was fully rescued by transgenic overexpression of Mgp in the VSMCs, while in the latter, elastin haploinsufficiency significantly impeded the deposition of minerals in the arterial walls. In both models, the low mass phenotype seen in Mgp -/- mice was rescued. Our data support the hypothesis that the arterial calcification, not MGP deficiency itself, causes the low bone mass phenotype in Mgp -/- mice. Taken together, we provide evidence that arterial calcification affects bone remodeling and pave the way for further mechanistic studies to identify the pathway(s) regulating this process.
机译:基质GLA蛋白(MGP),细胞外基质(ECM)矿化的有效抑制剂,主要由血管平滑肌细胞(VSMC)和软骨细胞产生。符合其表达谱,小鼠的MGP缺乏(MGP - / - 小鼠)导致所有动脉和软骨ECM的广泛矿化。有趣的是,在MGP - / - 小鼠中观察到体重的渐进性丧失,这在年龄的第三周变得明显。考虑到将能量代谢和体重的代谢调节器联系起来的新范式与骨质重塑,通过微CT和骨组织形态学将MGP - / - 小鼠的骨体积与其野生型凋落物的骨体积进行比较。我们发现由损伤的成骨细胞功能引起的MgP - / - 小鼠中的组织体积减少。在培养中,MGP - / - 初级成骨细胞的早期分化不受影响;然而,晚骨化标志物BGLAP(骨钙素)存在显着上调。我们检查了在MGP - / - 小鼠中预防动脉钙化是否可以纠正低骨质量表型。两种不同遗传模型的骨骼:MGP - / - ; SM22-MGP和MGP - / - ; ELN +/-小鼠进行了分析。在前一种菌株中,VSMC中MGP的转基因过表达完全救出了血管钙化,而在后者中,Elastin HaploUnducks显着地阻碍了动脉壁的矿物质沉积。在两种模型中,救出了MGP - / - 小鼠中的低质量表型。我们的数据支持假设动脉钙化,而不是MGP缺乏本身导致MGP - / - 小鼠中的低骨质量表型。我们一起携带了证据,即动脉钙化影响骨骼改造并为进一步的机械研究铺平道路以确定调节该过程的途径。

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