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新兴液态金属生物材料:从设计到应用。

Emerging Liquid Metal Biomaterials: From Design to Application.

机构信息

College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, 430072, China.

Renmin Hospital of Wuhan University, Wuhan, 410013, China.

出版信息

Adv Mater. 2022 Sep;34(37):e2201956. doi: 10.1002/adma.202201956. Epub 2022 Jul 28.

Abstract

Liquid metals (LMs) as emerging biomaterials possess unique advantages including their favorable biosafety, high fluidity, and excellent electrical and thermal conductivities, thus providing a unique platform for a wide range of biomedical applications ranging from drug delivery, tumor therapy, and bioimaging to biosensors. The structural design and functionalization of LMs endow them with enhanced functions such as enhanced targeting ability and stimuli responsiveness, enabling them to achieve better and even multifunctional synergistic therapeutic effects. Herein, the advantages of LMs in biomedicine are presented. The design of LM-based biomaterials with different scales ranging from micro-/nanoscale to macroscale and various components is explored in-depth to promote the understanding of structure-property relationships, guiding their performance optimization and applications. Furthermore, the related advanced progress in the development of LM-based biomaterials in biomedicine is summarized. Current challenges and prospects of LMs in the biomedical field are also discussed.

摘要

液态金属(LMs)作为新兴的生物材料具有独特的优势,包括良好的生物安全性、高流动性以及优异的导电性和导热性,从而为药物输送、肿瘤治疗、生物成像到生物传感器等广泛的生物医学应用提供了独特的平台。LMs 的结构设计和功能化赋予了它们增强的功能,例如增强的靶向能力和刺激响应性,使它们能够实现更好的甚至多功能协同治疗效果。本文介绍了 LMs 在生物医学中的优势。深入探讨了不同尺度(从微/纳米尺度到宏观尺度)和各种成分的基于 LM 的生物材料的设计,以促进对结构-性能关系的理解,指导其性能优化和应用。此外,还总结了基于 LM 的生物材料在生物医学中相关的先进进展。本文还讨论了 LMs 在生物医学领域面临的当前挑战和前景。

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