生物医学应用的生物启发纳米结构的分子设计:合成、自组装和功能特性

IF 2.4 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of Molecular and Engineering Materials Pub Date : 2016-08-24 DOI:10.1142/S2251237316400037
H. Xu, X. Zheng, Beverly Y. Mok, S. A. Ibrahim, Yong Yu, Y. Tan
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引用次数: 11

摘要

生物分子是细胞的纳米级构建单元,在生物体的生物矿化等关键生物过程中起着多方面的作用。在这些过程中,蛋白质和核酸等生物分子利用其独特的化学组成、形状和功能所赋予的独特的生物识别特性来启动一系列细胞事件。这些生物分子的独特特性,加上最近纳米技术的进步,导致了一个新的研究领域的出现,该领域的重点是生物启发纳米结构的分子设计,继承了天然生物材料的非凡功能。这些“受生物启发”的纳米结构可以通过生物分子的自组装或作为生物分子模板/前体来指导纳米复合材料的合成,通过仿生方法来制定。在任何一种情况下,所得到的纳米材料都表现出惊人的生物相容性,极好的水溶性和优异的胶体稳定性,使它们在体外和体内生物医学应用中都非常理想。在本文中,我们将介绍通过仿生自组装和生物模板合成制备“仿生”纳米结构的最新进展,以及它们的功能特性和在生物医学诊断和治疗递送方面的潜在应用。最后,我们将对纳米医学中“生物启发”纳米结构的挑战和未来展望进行一些个人观点的总结。
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Molecular Design of Bioinspired Nanostructures for Biomedical Applications: Synthesis, Self-Assembly and Functional Properties
Biomolecules are the nanoscale building blocks of cells, which play multifaceted roles in the critical biological processes such as biomineralization in a living organism. In these processes, the biological molecules such as protein and nucleic acids use their exclusive biorecognition properties enabled from their unique chemical composition, shape and function to initiate a cascade of cellular events. The exceptional features of these biomolecules, coupled with the recent advancement in nanotechnology, have led to the emergence of a new research field that focuses on the molecular design of bioinspired nanostructures that inherit the extraordinary function of natural biomaterials. These “bioinspired” nanostructures could be formulated by biomimetic approaches through either self-assembling of biomolecules or acting as a biomolecular template/precursor to direct the synthesis of nanocomposite. In either situation, the resulting nanomaterials exhibit phenomenal biocompatibility, superb aqueous solubility and excellent colloidal stability, branding them exceptionally desirable for both in vitro and in vivo biomedical applications. In this review, we will present the recent developments in the preparation of “bioinspired” nanostructures through biomimetic self-assembly and biotemplating synthesis, as well as highlight their functional properties and potential applications in biomedical diagnostics and therapeutic delivery. Lastly, we will conclude this topic with some personal perspective on the challenges and future outlooks of the “bioinspired” nanostructures for nanomedicine.
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来源期刊
Journal of Molecular and Engineering Materials
Journal of Molecular and Engineering Materials MATERIALS SCIENCE, MULTIDISCIPLINARY-
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