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用于货物运输和光触发递送的聚合物微/纳米载体及微纳马达

Polymeric Micro/Nanocarriers and Motors for Cargo Transport and Phototriggered Delivery.

作者信息

Mena-Giraldo Pedro, Orozco Jahir

机构信息

Max Planck Tandem Group in Nanobioengineering, Institute of Chemistry, Faculty of Natural and Exact Sciences, University of Antioquia, Complejo Ruta N, Calle 67 # 52-20, Medellin 050010, Colombia.

出版信息

Polymers (Basel). 2021 Nov 12;13(22):3920. doi: 10.3390/polym13223920.

Abstract

Smart polymer-based micro/nanoassemblies have emerged as a promising alternative for transporting and delivering a myriad of cargo. Cargo encapsulation into (or linked to) polymeric micro/nanocarrier (PC) strategies may help to conserve cargo activity and functionality when interacting with its surroundings in its journey to the target. PCs for cargo phototriggering allow for excellent spatiotemporal control via irradiation as an external stimulus, thus regulating the delivery kinetics of cargo and potentially increasing its therapeutic effect. Micromotors based on PCs offer an accelerated cargo-medium interaction for biomedical, environmental, and many other applications. This review collects the recent achievements in PC development based on nanomicelles, nanospheres, and nanopolymersomes, among others, with enhanced properties to increase cargo protection and cargo release efficiency triggered by ultraviolet (UV) and near-infrared (NIR) irradiation, including light-stimulated polymeric micromotors for propulsion, cargo transport, biosensing, and photo-thermal therapy. We emphasize the challenges of positioning PCs as drug delivery systems, as well as the outstanding opportunities of light-stimulated polymeric micromotors for practical applications.

摘要

基于智能聚合物的微/纳米组装体已成为一种很有前景的用于运输和递送多种货物的替代方案。将货物封装到聚合物微/纳米载体(PC)中(或与聚合物微/纳米载体相连)的策略,可能有助于在货物前往目标的过程中与周围环境相互作用时保持其活性和功能。用于货物光触发的PC通过照射作为外部刺激实现出色的时空控制,从而调节货物的递送动力学,并有可能提高其治疗效果。基于PC的微马达为生物医学、环境及许多其他应用提供了加速的货物-介质相互作用。本综述收集了基于纳米胶束、纳米球和纳米聚合物囊泡等的PC开发的最新成果,这些PC具有增强的性能,可提高货物保护和由紫外线(UV)和近红外(NIR)照射触发的货物释放效率,包括用于推进、货物运输、生物传感和光热治疗的光刺激聚合物微马达。我们强调了将PC定位为药物递送系统的挑战,以及光刺激聚合物微马达在实际应用中的突出机遇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f67a/8621231/e83bdad00f9e/polymers-13-03920-g007.jpg

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