纳米机器人学
光热治疗
材料科学
纳米技术
碳纳米管
渗透(战争)
纳米器件
纳米医学
膜
纳米生物技术
光热效应
细胞膜
纳米颗粒
化学
工程类
生物化学
运筹学
作者
Yuduo Chen,Renjie Pan,Wang Yong,Peiting Guo,Xiaojia Liu,Fengtong Ji,Jing Hu,Xiaohui Yan,Guo Ping Wang,Li Zhang,Yanming Sun,Xing Ma
标识
DOI:10.1002/adfm.202200600
摘要
Abstract Penetration of cell membrane at micro/nano‐scale with untethered probe is of great scientific significance, yet still challenging. Here, a carbon nanocoil based magnetic nanorobot, which can precisely target single cell and perform cell membrane penetration, is reported. The nanorobots are as‐synthesized by chemical vapor deposition with high yield, followed by physical deposition of Ni and Au nanofilms. Rotating electromagnetic fields are used to steer the nanorobots to navigate following any pre‐designed path. The helical nanorobots can realize mechanical perforation of the plasma membrane and even nuclear envelope with precise position at the subcellular level. With the aid of the externally deposited Au nanofilm, surface enhanced Raman scattering bio‐sensing signals can be collected from cellular plasma and nucleus. Furthermore, the nanorobots demonstrate capability of efficient photothermal therapy against targeted cancer cells and serve as an integrated theranostic platform, providing promising prospects in future precision medicine.
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