Tuning the Intrafibrillar Collagen Mineralization Rate and Mechanical Properties Through Polyelectrolyte-Controlled Formation and Crystallization of Amorphous Precursor

摘要

Abstract Non-collagenous proteins (NCPs) play a crucial role in directing intrafibrillar collagen mineralization during hard tissue formation, however, their functions and control mechanisms remain elusive and controversial. Here, employing poly(allylamine hydrochloride) (PAH) as the NCPs analog, the potential correlation between the precursor crystallization process and the intrafibrillar collagen mineralization process controlled by NCPs/NCPs analogs, as well as its effects on kinetics and mechanical properties are systematically investigated. Results demonstrate that liquid–liquid phase separation of PAH and phosphate ions promotes the formation of amorphous calcium phosphate (ACP) liquid precursor and controls their composition, size, and physicochemical properties. These amorphous precursor are not stable at low PAH concentrations and quickly transform into small-sized hydroxyapatite, while high concentrations prolong phase transition and induce the formation of large aggregated crystals. Interestingly, PAH can infiltrate into collagen fibrils along with ACP, thus oppositely regulating collagen fibrils mineralization rate and mechanical characteristics, where low amounts of PAH mediate rapid intrafibrillar mineralization with qualified hardness and modulus, while high amounts of PAH mediate slow intrafibrillar mineralization with improved mechanical properties. This work provides a dynamic perspective for understanding NCPs-regulated hard tissue formation and opens new horizons for optimizing biomimetic mineralization materials fabrication and biomimetic repair.

出版物
Small
易璐瑶
易璐瑶
博士后

主要研究方向为胶原矿化和增材制造

傅正义
傅正义
中国工程院院士

中国工程院院士,武汉理工大学教授。

邹朝勇
邹朝勇
研究员

武汉理工大学材料复合新技术国家重点实验室研究员,国家级高层次人才(青年项目),湖北省高层次人才,主要研究方向是生物过程启示的制备技术