The Robert H. Smith Faculty of Agriculture, Food & Environment, the Hebrew University of Jerusalem, Israel.
Nanomedicine (Lond). 2012 Sep;7(9):1409-23. doi: 10.2217/nnm.12.107.
Bio-inspired material systems are derived from different living organisms such as plants, arthropods, mammals and marine organisms. These biomaterial systems from nature are always present in the form of composites, with molecular-scale interactions optimized to direct functional features. With interest in replacing synthetic materials with natural materials due to biocompatibility, sustainability and green chemistry issues, it is important to understand the molecular structure and chemistry of the raw component materials to also learn from their natural engineering, interfaces and interactions leading to durable and highly functional material architectures. This review will focus on applications of biomaterials in single material forms, as well as biomimetic composites inspired by natural organizational features. Examples of different natural composite systems will be described, followed by implementation of the principles underlying their composite organization into artificial bio-inspired systems for materials with new functional features for future medicine.
仿生材料系统源自不同的生物体,如植物、节肢动物、哺乳动物和海洋生物。这些来自大自然的生物材料系统通常以复合材料的形式存在,其分子尺度的相互作用经过优化,以指导功能特性。由于生物相容性、可持续性和绿色化学问题,人们对用天然材料替代合成材料产生了兴趣,因此了解原材料的分子结构和化学性质也很重要,以便从天然材料的工程学、界面和相互作用中学习,从而获得耐用且功能强大的材料结构。本文综述将集中讨论生物材料在单一材料形式中的应用,以及受自然组织特征启发的仿生复合材料。将描述不同的天然复合体系的例子,然后将其复合材料组织的原理应用于人工仿生系统,为未来医学中具有新功能特性的材料创造新的功能特性。