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用于靶向运输和触发释放的精确药物输送的微/纳米机器人:综述。

Micro/nanorobots for precise drug delivery via targeted transport and triggered release: A review.

机构信息

Institute of Pharmaceutics, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, China.

Institute of Pharmaceutics, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, China.

出版信息

Int J Pharm. 2022 Mar 25;616:121551. doi: 10.1016/j.ijpharm.2022.121551. Epub 2022 Feb 5.

Abstract

Micro/nanorobots that can effectively convert diverse energy sources into movement can revolutionize the field of pharmaceutical, particularly targeted drug delivery. By targeted transport and triggered release, drug can be delivered to targeted tissues or body sites. Targeted transport is discussed with different actuation energy sources including self-propelled (HO and enzymes), external field-propelled (light, electrical, acoustics and magnetic field) and motile microorganism-propelled (bacterium, sperm, and contractile and immune cells) types. Triggered release systems including physiological environment, external fields and other mechanisms categories are also discussed here for the first time. With different transport and triggered release systems, micro/nanorobots achieved the goal of precise delivery of therapeutics. This review may provide a different perspective or referable guidance for the future development of more flexible targeted delivery systems.

摘要

能够将多种能量有效转化为运动的微型/纳米机器人将彻底改变制药领域,特别是靶向药物输送。通过靶向运输和触发释放,可以将药物递送到靶向组织或身体部位。讨论了不同的致动能源驱动的靶向运输,包括自主推进(HO 和酶)、外部场驱动(光、电、声和磁场)和运动微生物驱动(细菌、精子以及收缩和免疫细胞)类型。触发释放系统包括生理环境、外部场和其他机制类别,这也是首次在这里进行讨论。通过不同的运输和触发释放系统,微型/纳米机器人实现了精确输送治疗药物的目标。这篇综述可能为未来更灵活的靶向输送系统的发展提供了一个不同的视角或参考指导。

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