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Disruption of collagen/apatite alignment impairs bone mechanical function in osteoblastic metastasis induced by prostate cancer

机译:胶原蛋白/磷灰石对准的破坏损害前列腺癌诱导的骨细胞转移中的骨骼机械功能

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Prostate cancer (PCa) frequently metastasizes to the bone, generally inducing osteoblastic alterations that increase bone brittleness. Although there is growing interest in the management of the physical capability of patients with bone metastasis, the mechanism underlying the impairment of bone mechanical function remains unclear. The alignment of both collagen fibrils and biological apatite (BAp) c-axis, together with bone mineral density, is one of the strongest contributors to bone mechanical function. In this study, we analyzed the bone microstructure of the mouse femurs with and without PCa cell inoculation. Histological assessment revealed that the bone-forming pattern in the PCa-bearing bone was non-directional, resulting in a spongious structure, whereas that in the control bone was unidirectional and layer-by-layer, resulting in a compact lamellar structure. The degree of preferential alignment of collagen fibrils and BAp, which was evaluated by quantitative polarized microscopy and microbeam X-ray diffraction, respectively, were significantly lower in the PCa-bearing bone than in the control bone. Material parameters including Young's modulus and toughness, measured by the three-point bending test, were simultaneously decreased in the PCa-bearing bone. Specifically, there was a significant positive correlation between the degree of BAp c-axis orientation and Young's modulus. In conclusion, the impairment of mechanical function in the PCa-bearing bone is attributable to disruption of the anisotropic microstructure of bone in multiple phases. This is the first report demonstrating that cancer bone metastasis induces disruption of the collagen/BAp alignment in long bones, thereby impairing their mechanical function. (C) 2017 The Authors. Published by Elsevier Inc.
机译:前列腺癌(PCA)经常转移到骨骼,通常诱导增加骨骼脆性的骨细胞改变。虽然对骨转移患者的物理能力的管理越来越感兴趣,但骨骼机械功能损害的机制仍不清楚。胶原蛋白原纤维和生物磷灰石(BAP)C轴的对准与骨矿物密度一起是骨骼机械功能最强的贡献者之一。在这项研究中,我们分析了小鼠股骨的骨髓微观结构,没有PCA细胞接种。组织学评估显示,携带骨骨中的骨形成图案是非定向的,导致沉重的结构,而在对照骨中是​​单向的,并且逐层是单层的,导致紧凑的层状结构。通过定量偏振显微镜和微观X射线衍射评价的胶原纤维和壳体的优先对准程度分别在PCA承载骨中显着降低于控制骨中。通过三点弯曲试验测量的杨氏模量和韧性的材料参数同时降低了PCA承载骨。具体地,在轴C轴取向和杨氏模量之间存在显着的正相关性。总之,PCA承载骨中机械功能的损害归因于多阶段中骨的各向异性微观结构的破坏。这是第一份证明癌症骨转移的报告诱导长骨骼中胶原/壳体对准的破坏,从而损害其机械功能。 (c)2017作者。 elsevier公司发布

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