首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Overexpression of DMP1 accelerates mineralization and alters cortical bone biomechanical properties in vivo
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Overexpression of DMP1 accelerates mineralization and alters cortical bone biomechanical properties in vivo

机译:DMP1的过表达在体内加速矿化并改变皮质骨的生物力学特性

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Dentin matrix protein-1 (DMP1) is a key regulator of biomineralization. Here, we examine changes in structural, geometric, and material properties of cortical bone in a transgenic mouse model overexpressing DMP1. Micro-computed tomography and three-point bending were performed on 90 femora of wild type and transgenic mice at 1, 2, 4, and 6 months. Fourier transform infrared imaging was performed at 2 months. We found that the transgenic femurs were longer (p<0.01), more robust in cross-section (p<0.05), stronger (p<0.05), but had less post-yield strain and displacement (p<0.01), and higher tissue mineral density (p<0.01) than the wild type femurs at 1 and 2 months. At 2 months, the transgenic femurs also had a higher mineral-to-matrix ratio (p<0.05) and lower carbonate substitution (p<0.05) compared to wild type femurs. These findings indicate that increased mineralization caused by overexpressing DMP1 led to increased structural cortical bone properties associated with decreased ductility during the early post-natal period.
机译:牙本质基质蛋白1(DMP1)是生物矿化的关键调节剂。在这里,我们检查了过表达DMP1的转基因小鼠模型中皮质骨的结构,几何和材料特性的变化。在1、2、4和6个月时,对90只野生型和转基因小鼠的股骨进行了微计算机断层扫描和三点弯曲。在2个月时进行傅立叶变换红外成像。我们发现转基因股骨更长(p <0.01),横截面更坚固(p <0.05),更坚固(p <0.05),但屈服后应变和位移较小(p <0.01),并且更高在1个月和2个月时,组织矿物质密度(p <0.01)比野生型股骨高。与野生型股骨相比,转基因股骨在2个月时具有更高的矿物质与基质比率(p <0.05)和更低的碳酸盐取代度(p <0.05)。这些发现表明,过分表达DMP1引起的矿化增加导致出生后初期延展性降低相关的结构皮质骨特性的增加。

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