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基于生物催化的生物友好型微纳马达:从自然环境到生物环境

Biofriendly micro/nanomotors operating on biocatalysis: from natural to biological environments.

作者信息

Guo Ziyi, Liu Jian, Wang Da-Wei, Xu Jiangtao, Liang Kang

机构信息

School of Chemical Engineering, University of New South Wales, Sydney, NSW 2052, Australia.

Australian Centre for NanoMedicine, University of New South Wales, Sydney, NSW 2052, Australia.

出版信息

Biophys Rep. 2020 Oct 31;6(5):179-192. doi: 10.1007/s41048-020-00119-6.

Abstract

Micro/nanomotors (MNMs) are tiny motorized objects that can autonomously navigate in complex fluidic environments under the influence of an appropriate source of energy. Internal energy driven MNMs are composed of certain reactive materials that are capable of converting chemical energy from the surroundings into kinetic energy. Recent advances in smart nanomaterials design and processing have endowed the internal energy driven MNMs with different geometrical designs and various mechanisms of locomotion, with remarkable travelling speed in diverse environments ranging from environmental water to complex body fluids. Among the different design principals, MNM systems that operate from biocatalysis possess biofriendly components, efficient energy conversion, and mild working condition, exhibiting a potential of stepping out of the proof-of-concept phase for addressing many real-life environmental and biotechnological challenges. The biofriendliness of MNMs should not only be considered for drug delivery but also for environmental remediation and chemical sensing that only environmentally friendly intermediates and degraded products are generated. This review aims to provide an overview of the recent advances in biofriendly MNM design using biocatalysis as the predominant driving force, towards practical applications in biotechnology and environmental technology.

摘要

微纳马达(MNMs)是微小的机动化物体,在适当能源的影响下,能够在复杂的流体环境中自主导航。内部能量驱动的微纳马达由某些反应性材料组成,这些材料能够将周围环境的化学能转化为动能。智能纳米材料设计与加工的最新进展赋予了内部能量驱动的微纳马达不同的几何设计和多种运动机制,在从环境水到复杂体液等各种环境中具有显著的行进速度。在不同的设计原则中,基于生物催化运行的微纳马达系统具有生物友好成分、高效能量转换和温和的工作条件,展现出走出概念验证阶段以应对许多现实生活中的环境和生物技术挑战的潜力。微纳马达的生物友好性不仅应在药物递送中予以考虑,还应在环境修复和化学传感中加以考量,因为在这些应用中只会产生环境友好的中间体和降解产物。本综述旨在概述以生物催化为主要驱动力的生物友好型微纳马达设计的最新进展,以推动其在生物技术和环境技术中的实际应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4628/10240795/49f290237c2e/br-6-5-179-1.jpg

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