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从预防到诊断与治疗:金属纳米颗粒-水凝胶复合材料的生物医学应用

From prevention to diagnosis and treatment: Biomedical applications of metal nanoparticle-hydrogel composites.

作者信息

Clasky Aaron J, Watchorn Jeffrey D, Chen Paul Z, Gu Frank X

机构信息

Department of Chemical Engineering & Applied Chemistry, University of Toronto, Toronto, ON M5T 3A1, Canada.

出版信息

Acta Biomater. 2021 Mar 1;122:1-25. doi: 10.1016/j.actbio.2020.12.030. Epub 2020 Dec 19.

Abstract

Recent advances in biomaterials integrate metal nanoparticles with hydrogels to generate composite materials that exhibit new or improved properties. By precisely controlling the composition, arrangement and interactions of their constituents, these hybrid materials facilitate biomedical applications through myriad approaches. In this work we seek to highlight three popular frameworks for designing metal nanoparticle-hydrogel hybrid materials for biomedical applications. In the first approach, the properties of metal nanoparticles are incorporated into a hydrogel matrix such that the composite is selectively responsive to stimuli such as light and magnetic flux, enabling precisely activated therapeutics and self-healing biomaterials. The second approach mediates the dynamic reorganization of metal nanoparticles based on environment-directed changes in hydrogel structure, leading to chemosensing, microbial and viral detection, and drug-delivery capabilities. In the third approach, the hydrogel matrix spatially arranges metal nanoparticles to produce metamaterials or passively enhance nanoparticle properties to generate improved substrates for biomedical applications including tissue engineering and wound healing. This article reviews the construction, properties and biomedical applications of metal nanoparticle-hydrogel composites, with a focus on how they help to prevent, diagnose and treat diseases. Discussion includes how the composites lead to new or improved properties, how current biomedical research leverages these properties and the emerging directions in this growing field.

摘要

生物材料领域的最新进展将金属纳米颗粒与水凝胶相结合,以生成具有新特性或改进特性的复合材料。通过精确控制其成分的组成、排列和相互作用,这些杂化材料通过多种方式促进生物医学应用。在这项工作中,我们旨在突出三种用于设计生物医学应用的金属纳米颗粒-水凝胶杂化材料的流行框架。在第一种方法中,金属纳米颗粒的特性被纳入水凝胶基质中,使得复合材料对光和磁通量等刺激具有选择性响应,从而实现精确激活的治疗方法和自愈生物材料。第二种方法基于水凝胶结构中环境导向的变化介导金属纳米颗粒的动态重组,从而实现化学传感、微生物和病毒检测以及药物递送能力。在第三种方法中,水凝胶基质在空间上排列金属纳米颗粒以产生超材料,或被动增强纳米颗粒的特性,以生成用于包括组织工程和伤口愈合在内的生物医学应用的改进基质。本文综述了金属纳米颗粒-水凝胶复合材料的构建、特性和生物医学应用,重点关注它们如何有助于预防、诊断和治疗疾病。讨论内容包括复合材料如何产生新的或改进的特性、当前生物医学研究如何利用这些特性以及这个不断发展的领域中的新兴方向。

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