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Biomineralization of Collagen-Based Materials for Hard Tissue Repair

机译:基于胶原的硬组织修复材料的生物蛋白化

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摘要

Hydroxyapatite (HA) reinforced collagen fibrils serve as the basic building blocks of natural bone and dentin. Mineralization of collagen fibrils play an essential role in ensuring the structural and mechanical functionalities of hard tissues such as bone and dentin. Biomineralization of collagen can be divided into intrafibrillar and extrafibrillar mineralization in terms of HA distribution relative to collagen fibrils. Intrafibrillar mineralization is termed when HA minerals are incorporated within the gap zone of collagen fibrils, while extrafibrillar mineralization refers to the minerals that are formed on the surface of collagen fibrils. However, the mechanisms resulting in these two types of mineralization still remain debatable. In this review, the evolution of both classical and non-classical biomineralization theories is summarized. Different intrafibrillar mineralization mechanisms, including polymer induced liquid precursor (PILP), capillary action, electrostatic attraction, size exclusion, Gibbs-Donnan equilibrium, and interfacial energy guided theories, are discussed. Exemplary strategies to induce biomimetic intrafibrillar mineralization using non-collagenous proteins (NCPs), polymer analogs, small molecules, and fluidic shear stress are discussed, and recent applications of mineralized collagen fibers for bone regeneration and dentin repair are included. Finally, conclusions are drawn on these proposed mechanisms, and the future trend of collagen-based materials for bone regeneration and tooth repair is speculated.
机译:羟基磷灰石(HA)增强胶原型原纤维是天然骨和牙本质的基本构建块。胶原型纤维的矿化在确保骨骼和牙本质等硬组织的结构和机械官能团中起重要作用。胶原蛋白的生物蛋白可以分为相对于胶原型原纤维的HA分布而分为Intrafirlarlar和Extrafibrillar矿化。当HA矿物结合在胶原型原纤维的间隙区内时,胃腺嘧啶矿化被称为,而预纤维树矿化是指在胶原纤维表面上形成的矿物质。然而,导致这两种类型的矿化的机制仍然是可贬值的。在本文中,总结了经典和非古典生物矿化理论的演变。讨论了不同的胃中产矿化机制,包括聚合物诱导的液体前体(PILP),毛细管作用,静电吸引,尺寸排除,GIBBS-DONNAN均衡和界面能量引导理论。讨论了使用非胶原蛋白(NCPS),聚合物类似物,小分子和流体剪切应力的诱导仿生植物中矿化的示例性策略,包括近期矿化胶原纤维用于骨再生和牙本质修复的应用。最后,在这些提出的机制上提取结论,并推测了骨再生和牙齿修复的基于胶原基材料的未来趋势。

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