Department of Materials Science and Engineering, Pohang University of Science and Technology (POSTECH) , 77 Cheongam-ro, Nam-gu, Pohang, Gyeongbuk 37673, Korea.
Department of Organic Materials Science and Engineering, College of Engineering, Pusan National University , 2 Busandaehak-ro 63 beon-gil, Gumjeong-gu, Busan 46241, Korea.
ACS Appl Mater Interfaces. 2018 Jan 24;10(3):2338-2346. doi: 10.1021/acsami.7b16595. Epub 2018 Jan 12.
Machines have greatly contributed to the human civilization, enabling tasks beyond our capacities for improved quality of life. Recently, the progress in nanotechnology has triggered to build a miniaturized machine of nanoscale. In this context, synthetic nanomotors have gained considerable interest because of their great promise for diverse applications. Currently, the movement control of these nanomotors has been widely investigated using various stimuli. Here, we demonstrate near-infrared (NIR) light controlled on/off motion of stomatocyte nanomotors powered by the conversion of hydrogen peroxide. The nanomotors encapsulating naphthalocyanine (NC) are aggregated or separated (collective motion) with or without near-IR light illumination, resulting in the well-controlled movement. Remarkably, the nanomotors can move directionally toward hydrogen peroxide released from cancer cells and photothermally ablate the cancer cells. Taken together, our stomatocyte nanomotor systems can be effectively harnessed for autonomous photothermal cancer therapy.
机器极大地促进了人类文明的发展,使我们能够完成超出自身能力的任务,从而提高生活质量。最近,纳米技术的进步引发了构建纳米级微型机器的热潮。在这种背景下,合成纳米马达因其在各种应用中的巨大潜力而引起了广泛关注。目前,已经使用各种刺激手段广泛研究了这些纳米马达的运动控制。在这里,我们展示了基于过氧化物转化的基于 stomatocyte 纳米马达的近红外(NIR)光控制的开/关运动。纳米马达封装了萘酞菁(NC),在近红外光照射或不照射的情况下聚集或分离(集体运动),从而实现了对运动的精确控制。值得注意的是,这些纳米马达可以朝着癌细胞释放的过氧化氢的方向定向运动,并进行光热消融癌细胞。总之,我们的 stomatocyte 纳米马达系统可以有效地用于自主光热癌症治疗。