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基于聚膦腈的药物传递系统的最新研究进展。

Recent research progress on polyphosphazene-based drug delivery systems.

机构信息

State Key Laboratory of Chemical Engineering, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310027, P. R. China.

Biological Surgery and Cancer Center, The First Affiliated Hospital, Zhejiang University, 310003, P. R. China.

出版信息

J Mater Chem B. 2020 Feb 26;8(8):1555-1575. doi: 10.1039/c9tb02517k.

Abstract

In recent years, synthetic polymer materials have become a research hotspot in the field of drug delivery. Compared with natural polymer materials, synthetic polymer materials have more flexible structural adjustability, and can be designed to obtain clinically required delivery vehicles. Polyphosphazenes are one of the most promising biomedical materials in the future due to their controllable degradation properties and structural flexibility. These materials can be designed by controlling the hydrophilic and hydrophobic balance, introducing functional groups or drugs to form different forms of administration, such as nanoparticles, polyphosphazene-drug conjugates, injectable hydrogels, coatings, etc. In addition, the flexible backbone of polyphosphazenes and the flexibility of substitution enable them to meet researchers' design requirements in terms of stereochemistry, nanostructures, and topologies. At present, researchers have achieved a lot of successful practices in the field of targeted delivery of anticancer drugs/proteins/genes, bone tissue engineering repair, cell imaging tracking, photothermal therapy, and immunologic preparations. This review provides a summary of the progress of the recent 10 years of polyphosphazene-based drug delivery systems in terms of of chemical structure and functions.

摘要

近年来,合成聚合物材料已成为药物传递领域的研究热点。与天然聚合物材料相比,合成聚合物材料具有更灵活的结构可调性,可以设计出具有临床所需输送载体的材料。聚膦嗪因其可控的降解性能和结构灵活性,成为未来最有前途的生物医学材料之一。这些材料可以通过控制亲水性和疏水性平衡、引入功能基团或药物来形成不同形式的给药,如纳米颗粒、聚膦嗪-药物偶联物、可注射水凝胶、涂层等。此外,聚膦嗪的柔性骨架和取代的灵活性使它们能够满足研究人员在立体化学、纳米结构和拓扑结构方面的设计要求。目前,研究人员在抗癌药物/蛋白质/基因的靶向传递、骨组织工程修复、细胞成像跟踪、光热治疗和免疫制剂等领域已经取得了许多成功的实践。本综述从化学结构和功能方面总结了近 10 年来基于聚膦嗪的药物传递系统的研究进展。

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