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Molecular simulations of the interfacial properties in silk-hydroxyapatite composites

机译:分子模拟的界面属性silk-hydroxyapatite复合材料

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摘要

Biomineralization is a common strategy used in Nature to improve the mechanical strength and toughness of biological materials. This strategy, applied in materials like bone or nacre, serves as inspiration for materials scientists and engineers to design new materials for applications in healthcare, soft robotics or the environment. In this regard, composites consisting of silk and hydroxyapatite have been extensively researched for bone regeneration applications, due to their reported cytocompatibility and osteoinduction capacity that supports bone formation in vivo. Thus, it becomes relevant to understand how silk and hydroxyapatite interact at their interface, and how this affects the overall mechanical properties of these composites. This theoretical-experimental work investigates the interfacial dynamic and structural properties of silk in contact with hydroxyapatite, combining molecular dynamics simulations with analytical characterization. Our data indicate that hydroxyapatite decreases the beta-sheets in silk, which are a key load-bearing element of silk. The beta-sheets content can usually be increased in silk biomaterials via post-processing methods, such as water vapor annealing. However, the presence of hydroxyapatite appears to reduce also for the formation of beta-sheets via water vapor annealing. This work sheds light into the interfacial properties of silk-hydroxyapatite composite and their relevance for the design of composite biomaterials for bone regeneration.
机译:生物矿化是一种常见的策略中使用提高机械强度和性质生物材料的韧性。应用于材料如骨或珍珠层,服务作为材料科学家和灵感工程师设计新材料应用于医疗、软机器人或环境。由丝绸和羟磷灰石广泛研究了骨再生应用程序中,由于他们的报道cytocompatibility osteoinduction能力支持体内骨形成。了解丝绸和发挥作用羟磷灰石进行交互的接口这如何影响整个机械吗这些复合材料的性质。theoretical-experimental工作调查界面动态和结构的性质丝绸与羟磷灰石,结合分子动力学模拟与分析鉴定。羟磷灰石减少β褶板在丝绸,这是丝绸的关键承载元素。通常可以增加β褶板内容丝绸生物材料通过后处理方法,例如水蒸气退火。羟磷灰石的存在似乎也减少通过水蒸气形成的β折叠退火。界面的属性silk-hydroxyapatite复合材料及其相关的设计复合生物材料对骨再生。

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