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Advances in Chemically Powered Micro/Nanorobots for Biological Applications: A Review

机译:化学驱动的微纳机器人在生物应用中的进展:研究进展

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Micro/nanorobots (MNRs) are capable of autonomous motion, breaking through the limitations of traditional passive transport of nanocarriers. Among them, chemically driven MNRs are the earliest MNRs studied and have received extensive attention from researchers. This review first focuses on the material properties, preparation, driving forms, and mechanisms of chemically driven MNRs. The current status of research on chemically driven MNRs in biomedicine is summarized for various biological applications (drug delivery, diagnostics, anti-inflammatory, antibacterial, and disease treatment). In terms of biosafety, possible safety issues are analyzed in the context of chemically driven microrobotic applications in terms of three aspects: component characteristics, chemical engines and biological environment. Finally, the challenges and possible future directions of chemically driven MNRs are presented.
机译:微纳机器人(MNRs)具有自主运动能力,突破了传统纳米载体被动运输的局限性。其中,化学驱动的MNRs是研究最早的MNRs,受到研究者的广泛关注。本文首先从化学驱动MNRs的材料性质、制备、驱动形式和机理等方面进行综述。总结了化学驱动的MNRs在生物医学中的研究现状,包括各种生物应用(药物递送、诊断、抗炎、抗菌和疾病治疗)。在生物安全方面,从组件特性、化学发动机和生物环境三个方面分析了化学驱动的微型机器人应用可能存在的安全问题。最后,提出了化学驱动MNRs面临的挑战和未来可能的发展方向。

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