Research Center for Bioengineering and Sensing Technology, University of Science & Technology Beijing, Beijing, 100083, P. R. China.
Electrical Engineering and Computer Sciences, University of California, Berkeley, CA, 94720, USA.
Adv Mater. 2017 Mar;29(9). doi: 10.1002/adma.201603250. Epub 2016 Dec 27.
Inspired by the swimming of natural microorganisms, synthetic micro-/nanomachines, which convert energy into movement, are able to mimic the function of these amazing natural systems and help humanity by completing environmental and biological tasks. While offering autonomous propulsion, conventional micro-/nanomachines usually rely on the decomposition of external chemical fuels (e.g., H O ), which greatly hinders their applications in biologically relevant media. Recent developments have resulted in various micro-/nanomotors that can be powered by biocompatible fuels. Fuel-free synthetic micro-/nanomotors, which can move without external chemical fuels, represent another attractive solution for practical applications owing to their biocompatibility and sustainability. Here, recent developments on fuel-free micro-/nanomotors (powered by various external stimuli such as light, magnetic, electric, or ultrasonic fields) are summarized, ranging from fabrication to propulsion mechanisms. The applications of these fuel-free micro-/nanomotors are also discussed, including nanopatterning, targeted drug/gene delivery, cell manipulation, and precision nanosurgery. With continuous innovation, future autonomous, intelligent and multifunctional fuel-free micro-/nanomachines are expected to have a profound impact upon diverse biomedical applications, providing unlimited opportunities beyond one's imagination.
受自然微生物游泳的启发,将能量转化为运动的合成微/纳米机器能够模仿这些惊人的自然系统的功能,并通过完成环境和生物任务来帮助人类。虽然提供自主推进,但传统的微/纳米机器通常依赖于外部化学燃料(例如 H O )的分解,这极大地阻碍了它们在生物相关介质中的应用。最近的发展产生了各种可以用生物相容性燃料驱动的微/纳米马达。由于其生物相容性和可持续性,无需外部化学燃料的燃料型合成微/纳米机器是另一种有吸引力的实际应用解决方案。在这里,总结了各种外部刺激(例如光、磁、电或超声场)驱动的无需燃料的微/纳米机器(从制造到推进机制)的最新进展。还讨论了这些无需燃料的微/纳米机器的应用,包括纳米图案化、靶向药物/基因传递、细胞操作和精密纳米手术。随着不断创新,未来自主、智能和多功能的无需燃料的微/纳米机器有望对各种生物医学应用产生深远影响,提供超乎想象的无限机会。