药物输送
推进
有效载荷(计算)
胶囊
胃肠道
体内
生物医学工程
纳米技术
生物
化学
材料科学
计算机科学
医学
工程类
生物技术
生物化学
航空航天工程
网络数据包
植物
计算机网络
作者
Fangyu Zhang,Zhengxing Li,Yaou Duan,Amal Abbas,Rodolfo Mundaca‐Uribe,Lu Yin,Hao Luan,Weiwei Gao,Ronnie H. Fang,Liangfang Zhang,Joseph Wang
出处
期刊:Science robotics
[American Association for the Advancement of Science (AAAS)]
日期:2022-09-28
卷期号:7 (70)
被引量:60
标识
DOI:10.1126/scirobotics.abo4160
摘要
The use of micromotors for active drug delivery via oral administration has recently gained considerable interest. However, efficient motor-assisted delivery into the gastrointestinal (GI) tract remains challenging, owing to the short propulsion lifetime of currently used micromotor platforms. Here, we report on an efficient algae-based motor platform, which takes advantage of the fast and long-lasting swimming behavior of natural microalgae in intestinal fluid to prolong local retention within the GI tract. Fluorescent dye or cell membrane-coated nanoparticle functionalized algae motors were further embedded inside a pH-sensitive capsule to enhance delivery to the small intestines. In vitro, the algae motors displayed a constant motion behavior in simulated intestinal fluid after 12 hours of continuous operation. When orally administered in vivo into mice, the algae motors substantially improved GI distribution of the dye payload compared with traditional magnesium-based micromotors, which are limited by short propulsion lifetimes, and they also enhanced retention of a model chemotherapeutic payload in the GI tract compared with a passive nanoparticle formulation. Overall, combining the efficient motion and extended lifetime of natural algae-based motors with the protective capabilities of oral capsules results in a promising micromotor platform capable of achieving greatly improved cargo delivery in GI tissue for practical biomedical applications.
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