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首页> 外文期刊>Journal of the Royal Society Interface >Nanointerfacial strength between non-collagenous protein and collagen fibrils in antler bone
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Nanointerfacial strength between non-collagenous protein and collagen fibrils in antler bone

机译:鹿角骨中非胶原蛋白与胶原纤维之间的纳米界面强度

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摘要

Antler bone displays considerable toughness through the use of a complex nanofibrous structure of mineralized collagen fibrils (MCFs) bound together by non-collagenous proteins (NCPs). While the NCP regions represent a small volume fraction relative to the MCFs, significant surface area is evolved upon failure of the nanointerfaces formed at NCP-collagen fibril boundaries. The mechanical properties of nanointerfaces between the MCFs are investigated directly in this work using an in situ atomic force microscopy technique to pull out individual fibrils from the NCP. Results show that the NCP-fibril interfaces in antler bone are weak, which highlights the propensity for interface failure at the nanoscale in antler bone and extensive fibril pullout observed at antler fracture surfaces. The adhesion between fibrils and NCP is additionally suggested as being rate dependent, with increasing interfacial strength and fracture energy observed when pullout velocity decreases.
机译:通过使用由非胶原蛋白(NCP)结合在一起的矿化胶原纤维(MCF)的复杂纳米纤维结构,鹿角骨表现出相当强的韧性。尽管NCP区域相对于MCF的体积分数较小,但在NCP-胶原原纤维边界形成的纳米界面失效时会产生大量表面积。在这项工作中,使用原位原子力显微镜技术直接从MCP中拉出单个原纤维,直接研究了MCF之间的纳米界面的机械性能。结果表明,鹿角骨中的NCP-原纤维界面较弱,这突出了鹿角骨中纳米级界面失效的倾向以及在鹿角骨折表面观察到的广泛的原纤维拉出。另外还建议原纤维和NCP之间的粘附是速率依赖性的,当拔出速度降低时,会观察到界面强度和断裂能的增加。

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