LEPABE-Laboratory for Process Engineering, Environment, Biotechnology and Energy, Faculty of Engineering, University of Porto, Porto, Portugal.
Universidade Católica Portuguesa, CBQF-Centro de Biotecnologia e Química Fina-Laboratório Associado, Escola Superior de Biotecnologia, Porto, Portugal.
J Biomed Mater Res B Appl Biomater. 2022 May;110(5):1192-1205. doi: 10.1002/jbm.b.34976. Epub 2021 Dec 3.
Hydroxyapatite (HAp)/collagen-based composite materials have been a constant in the development of bioinspired materials for bone tissue engineering. The most fundamental research works focus on combining HAp, due to its chemical similarity with the mineral component of bones, and collagen, which is the most abundant protein in the body. Modern studies have explored different two-dimensional (2D) and 3D structures, in order to obtain biomaterials with specific physicochemical, mechanical, and biological characteristics that can be applied in distinct biomedical applications. However, as there is already so much work developed with these materials, it is crucial to question: what can still be done? What is the importance of current know-how for the future of bioinspired materials? In this paper we intend to review and update the available methodologies to synthesize HAp/collagen composites, along with their characteristics. In addition, the future of these materials in terms of applications and their potential as a cutting-edge technology is discussed.
羟基磷灰石(HAp)/胶原蛋白基复合材料一直是仿生骨组织工程材料发展的重点。最基础的研究工作主要集中在结合 HAp 和胶原蛋白上,因为 HAp 的化学成分与骨骼的矿物质成分相似,而胶原蛋白是体内最丰富的蛋白质。现代研究已经探索了不同的二维(2D)和三维(3D)结构,以获得具有特定物理化学、机械和生物学特性的生物材料,可应用于不同的生物医学应用。然而,由于已经有很多关于这些材料的研究,因此有必要提出这样的问题:还有什么可以做的?当前的专业知识对于仿生材料的未来有何重要性?本文旨在综述和更新现有的合成 HAp/胶原蛋白复合材料的方法及其特性。此外,还讨论了这些材料在应用方面的未来以及作为前沿技术的潜力。