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双面结构微纳马达:自推进机制及生物医学应用

Janus-Structured Micro/Nanomotors: Self-Propelled Mechanisms and Biomedical Applications.

作者信息

Cheng Haoyan, Ma Beng, Ji Anqi, Yao Haonan, Chen Pan, Zhai Wenyang, Gao Shegan, Shi Linlin, Hu Hao

机构信息

School of Materials Science and Engineering, The First Affiliated Hospital of Henan University of Science and Technology, Henan University of Science and Technology, Luoyang 471023, P. R. China.

Henan Key Laboratory of Microbiome and Esophageal Cancer Prevention and Treatment, Henan Key Laboratory of Cancer Epigenetics, The First Affiliated Hospital of Henan University of Science and Technology, Luoyang 471023, P. R. China.

出版信息

Biomater Res. 2025 Apr 5;29:0155. doi: 10.34133/bmr.0155. eCollection 2025.

Abstract

Self-propelled micro/nanomotors (MNMs), which can convert other energy into mechanical motion, have attracted considerable attention due to their potential applications in diverse fields. Due to the asymmetric structures and 2 or more chemically discrepant composites constructed in the Janus nanoparticles, asymmetrical forces can be created in the physical environment. Thus, MNMs with Janus structures have been widely studied for revealing possible driving mechanisms. This tutorial review covers the most representative examples of Janus-structured MNMs developed so far, which are self-propelled by different mechanisms. We focus on Janus MNMs that exhibit self-propelled motion in liquid environments and their potential applications in biomedicine, including drug delivery, cancer therapy, bioimaging, and biosensing. The driving mechanisms and challenges associated with constructing asymmetric fields are deeply discussed, along with future opportunities for these versatile and promising MNMs. This review provides an overview of the rapidly evolving field of MNMs and their potential applications, serving as a valuable resource for researchers and others interested in this field.

摘要

自驱动微纳马达(MNMs)能够将其他能量转化为机械运动,因其在多个领域的潜在应用而备受关注。由于在Janus纳米颗粒中构建了不对称结构以及两种或更多种化学性质不同的复合材料,在物理环境中可以产生不对称力。因此,具有Janus结构的MNMs已被广泛研究以揭示可能的驱动机制。本教程综述涵盖了迄今为止开发的Janus结构MNMs的最具代表性的例子,它们通过不同的机制实现自驱动。我们重点关注在液体环境中表现出自驱动运动的Janus MNMs及其在生物医学中的潜在应用,包括药物递送、癌症治疗、生物成像和生物传感。深入讨论了与构建不对称场相关的驱动机制和挑战,以及这些多功能且有前景的MNMs的未来机遇。本综述概述了MNMs快速发展的领域及其潜在应用,为该领域的研究人员和其他感兴趣的人提供了宝贵的资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b72/11971528/f97e34777e2d/bmr.0155.fig.001.jpg

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