药物输送
材料科学
生物医学工程
纳米技术
药品
靶向给药
药理学
医学
作者
Seungmin Lee,Jin‐young Kim,Junyoung Kim,Ali Kafash Hoshiar,Jongeon Park,Sunkey Lee,Jonghyun Kim,Salvador Pané,Bradley J. Nelson,Hongsoo Choi
标识
DOI:10.1002/adhm.201901697
摘要
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 (TiO2 ) 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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