Xu Dandan, Wang Yong, Liang Chunyan, You Yongqiang, Sanchez Samuel, Ma Xing
State Key Laboratory of Advanced Welding and Joining, Flexible Printed Electronic Technology Center, Harbin Institute of Technology (Shenzhen), Shenzhen, 518055, China.
Institució Catalana de Recerca i Estudis Avançats (ICREA), Pg. Lluís Companys 23, Barcelona, 08010, Spain.
Small. 2020 Jul;16(27):e1902464. doi: 10.1002/smll.201902464. Epub 2019 Aug 29.
Micro/nanomotors (MNMs) are miniaturized machines that can perform assigned tasks at the micro/nanoscale. Over the past decade, significant progress has been made in the design, preparation, and applications of MNMs that are powered by converting different sources of energy into mechanical force, to realize active movement and fulfill on-demand tasks. MNMs can be navigated to desired locations with precise controllability based on different guidance mechanisms. A considerable research effort has gone into demonstrating that MNMs possess the potential of biomedical cargo loading, transportation, and targeted release to achieve therapeutic functions. Herein, the recent advances of self-propelled MNMs for on-demand biomedical cargo transportation, including their self-propulsion mechanisms, guidance strategies, as well as proof-of-concept studies for biological applications are presented. In addition, some of the major challenges and possible opportunities of MNMs are identified for future biomedical applications in the hope that it may inspire future research.
微纳马达(MNMs)是能够在微纳尺度上执行指定任务的小型机器。在过去十年中,微纳马达在设计、制备和应用方面取得了重大进展,这些微纳马达通过将不同的能量来源转化为机械力来提供动力,以实现主动运动并完成按需任务。基于不同的引导机制,微纳马达能够以精确的可控性导航到所需位置。大量的研究工作致力于证明微纳马达具有生物医学货物装载、运输和靶向释放以实现治疗功能的潜力。在此,本文介绍了用于按需生物医学货物运输的自驱动微纳马达的最新进展,包括它们的自推进机制、引导策略以及生物应用的概念验证研究。此外,还确定了微纳马达在未来生物医学应用中的一些主要挑战和可能的机遇,希望能激发未来的研究。