Wang Daolin, Gao Changyong, Zhou Chang, Lin Zhihua, He Qiang
Key Laboratory of Microsystems and Microstructures Manufacturing, Ministry of Education, Micro/Nanotechnology Research Centre, Harbin Institute of Technology, 92 West Dazhi Street, Harbin 150080, China.
Research (Wash D C). 2020 Jun 24;2020:3676954. doi: 10.34133/2020/3676954. eCollection 2020.
We report a leukocyte membrane-coated gallium nanoswimmer (LMGNS) capable of ultrasound-propelled motion, antibiofouling, and cancer cell recognition and targeting. The LMGNS consists of a needle-shaped gallium core encapsulating an anticancer drug and a natural leukocyte membrane shell. Under the propulsion of an ultrasound field, LMGNSs could autonomously move in biological media with a speed up to 108.7 m s. The velocity and motion direction of the LMGNSs can be modulated by regulating the frequency and voltage of the applied ultrasound field. Owing to the leukocyte membrane coating, LMGNSs can not only avoid biofouling during the motion in blood but also possess cancer cell recognition capability. These LMGNSs could actively seek, penetrate, and internalize into the cancer cells and achieve enhanced anticancer efficiency by combined photothermal and chemical therapy. Such biofunctionalized liquid metal nanoswimmer presents a new type of multifunctional platform for biomedical applications.
我们报道了一种白细胞膜包裹的镓纳米游动器(LMGNS),它能够进行超声驱动运动、抗生物污损以及癌细胞识别和靶向。LMGNS由包裹抗癌药物的针状镓核和天然白细胞膜壳组成。在超声场的推动下,LMGNS能够在生物介质中自主移动,速度可达108.7 m/s。通过调节所施加超声场的频率和电压,可以调制LMGNS的速度和运动方向。由于有白细胞膜包裹,LMGNS不仅在血液中运动时可避免生物污损,还具备癌细胞识别能力。这些LMGNS能够主动寻找、穿透并内化进入癌细胞,并通过光热和化学联合疗法提高抗癌效率。这种生物功能化的液态金属纳米游动器为生物医学应用提供了一种新型的多功能平台。