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纳米材料力学性能在药物递送、纳米疫苗及其他领域中的关键作用

Critical Role of Nanomaterial Mechanical Properties in Drug Delivery, Nanovaccines and Beyond.

作者信息

Hui Yue, Liu Yun, Yang Guangze, Weng Yilun, Hou Fei, Wang Xing, Fang Sheng, Gao Huajian, Zhao Chun-Xia

机构信息

School of Chemical Engineering, The University of Adelaide, North Terrace, South Australia, 5005, Australia.

School of Agriculture and Food Sustainability, The University of Queensland, St Lucia, Queensland, 4072, Australia.

出版信息

Adv Mater. 2025 Feb;37(7):e2413779. doi: 10.1002/adma.202413779. Epub 2024 Dec 31.

Abstract

Nanomaterials have become essential in the daily lives, finding applications in food, skincare, drugs, and vaccines. Traditionally, the surface chemistry of nanoparticles (NPs) is considered the key factor in determining their interactions with biological systems. However, recent studies have shown that the mechanical properties of nanomaterials are equally important in regulating nano-bio interactions, though they have often been overlooked. Tuning the mechanical properties of nanomaterials and designing them for biomedical applications is thus crucial. This review begins by discussing the various mechanical cues in biological processes, including how viruses and cells adjust their mechanical properties throughout their life cycles. Basic concepts and terminology related to NP mechanical properties are introduced. Next, five different groups of nanomaterials with tunable mechanical properties are explored. The review then examines the impact of NP mechanical properties on their interactions in vitro and in vivo, covering tumor-targeted drug delivery, nanovaccines, and emerging applications such as oral and intranasal drug delivery. Current challenges in the field and perspectives on future developments are also provided.

摘要

纳米材料已成为日常生活中不可或缺的一部分,在食品、护肤品、药物和疫苗等领域都有应用。传统上,纳米颗粒(NPs)的表面化学被认为是决定其与生物系统相互作用的关键因素。然而,最近的研究表明,纳米材料的机械性能在调节纳米-生物相互作用方面同样重要,尽管它们常常被忽视。因此,调整纳米材料的机械性能并将其设计用于生物医学应用至关重要。本综述首先讨论生物过程中的各种机械线索,包括病毒和细胞在其生命周期中如何调整其机械性能。介绍了与NP机械性能相关的基本概念和术语。接下来,探讨了五类具有可调机械性能的纳米材料。然后,综述考察了NP机械性能对其体外和体内相互作用的影响,涵盖肿瘤靶向药物递送、纳米疫苗以及口服和鼻内药物递送等新兴应用。还提供了该领域当前面临的挑战以及对未来发展的展望。

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