药物输送
材料科学
流体学
生物医学工程
纳米技术
药品
靶向给药
紫杉醇
药理学
医学
工程类
外科
航空航天工程
化疗
作者
Seungmin Lee,Jin‐young Kim,Junyoung Kim,Ali Kafash Hoshiar,Jongeon Park,Sunkey Lee,Jong-Hyun Kim,Salvador Pané,Bradley J. Nelson,Hongsoo Choi
标识
DOI:10.1002/adhm.201901697
摘要
Abstract A needle‐type microrobot (MR) for targeted drug delivery is developed to stably deliver drugs to a target microtissue (MT) for a given period time without the need for an external force after affixing. The MRs are fabricatedby 3D laser lithography and nickel (Ni)/titanium oxide (TiO 2 ) layers are coated by physical vapor deposition. The translational velocity of the MR is 714 µm s −1 at 20 mT and affixed to the target MT under the control of a rotating magnetic field. The manipulability of the MR is shown by using both manual and automatic controls. Finally, drug release from the paclitaxel‐loaded MR is characterized to determine the efficiency of targeted drug delivery. This study demonstrates the utility of the proposed needle‐type MR for targeted drug delivery to MT with various flow rates in vitro physiological fluidic environments.
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