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解析基于磷酸钙的骨移植替代物的生物活性:理解各材料特性作用的策略。

Deconvoluting the Bioactivity of Calcium Phosphate-Based Bone Graft Substitutes: Strategies to Understand the Role of Individual Material Properties.

机构信息

MERLN Institute, Maastricht University, P.O. Box 616, 6200 MD, Maastricht, The Netherlands.

出版信息

Adv Healthc Mater. 2017 Jul;6(13). doi: 10.1002/adhm.201601478. Epub 2017 May 23.

Abstract

Calcium phosphate (CaP)-based ceramics are the most widely applied synthetic biomaterials for repair and regeneration of damaged and diseased bone. CaP bioactivity is regulated by a set of largely intertwined physico-chemical and structural properties, such as the surface microstructure, surface energy, porosity, chemical composition, crystallinity and stiffness. Unravelling the role of each individual property in the interaction between the biomaterial and the biological system is a prerequisite for evolving from a trial-and-error approach to a design-driven approach in the development of new functional biomaterials. This progress report critically reviews various strategies developed to decouple the roles of the individual material properties in the biological performance of CaP ceramics. It furthermore emphasizes on the importance of a comprehensive and adequate material characterization that is needed to enhance our knowledge of the property-function relationship of biomaterials used in bone regeneration, and in regenerative medicine in general.

摘要

基于磷酸钙(CaP)的陶瓷是应用最广泛的合成生物材料,用于修复和再生受损和患病的骨骼。CaP 的生物活性受一系列相互交织的物理化学和结构特性的调节,如表面微观结构、表面能、孔隙率、化学成分、结晶度和刚度。揭示生物材料与生物系统相互作用中每个单独特性的作用,是从试错法向新功能生物材料开发的设计驱动方法发展的前提。本进展报告批判性地回顾了为分离 CaP 陶瓷生物性能中各个材料特性的作用而开发的各种策略。此外,它还强调了全面和充分的材料特性描述的重要性,这对于增强我们对用于骨再生和一般再生医学的生物材料的性能-功能关系的了解是必要的。

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