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Effects of osteoporosis and nutrition supplements on structures and nanomechanical properties of bone tissue.

机译:骨质疏松症和营养补充剂对骨组织的结构和纳米机械性能的影响。

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摘要

In this study, the bone structures, nanomechanical properties and fracture behaviors in different groups of female C57BL/6 mice (control, sham operated, ovariectomized, casein supplemented, and fermented milk supplemented) were examined by micro-computed tomography, scanning and transmission electron microscopy, and nanoindentation. The control and sham operated mice showed dense bone structures with high cortical bone mineral densities of 544 mg/cm(3) (average) and high hardness of 0.9-1.1 GPa; resistance to bone fracture was conferred by microcracking, crack deflections and ligament bridging attributed to aligned collagen fibers and densely packed hydroxyapatite crystals. Bone mineral density, hardness and fracture resistance in ovariectomized mice markedly dropped due to loose bone structure with randomly distributed collagens and hydroxyapatites. The acidic casein supplemented mice with blood acidosis exhibited poor mineral absorption and loose bone structure, whereas the neutralized casein or fermented milk supplemented mice were resistant to osteoporosis and had high bone mechanical properties.
机译:在这项研究中,通过微计算机断层扫描,扫描和透射电镜检查了雌性C57BL / 6雌性小鼠不同组(对照组,假手术,去卵巢,补充酪蛋白和发酵乳)的骨结构,纳米力学性能和骨折行为。显微镜和纳米压痕。对照和假手术小鼠显示出致密的骨结构,具有544 mg / cm(3)(平均)的高皮质骨矿物质密度和0.9-1.1 GPa的高硬度。归因于对齐的胶原纤维和致密堆积的羟基磷灰石晶体,通过微裂纹,裂纹变形和韧带桥接赋予了抗骨折能力。去卵巢小鼠的骨矿物质密度,硬度和抗断裂性由于骨骼结构松散,胶原蛋白和羟磷灰石的分布而显着下降。酸性酪蛋白补充血酸中毒小鼠表现出不良的矿物质吸收和疏松的骨骼结构,而中和的酪蛋白或发酵乳补充小鼠对骨质疏松症具有抗性并具有高的骨力学性能。

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