College of Polymer Science and Engineering, State Key Laboratory of Polymer, Materials Engineering, Sichuan University, Chengdu 610065, P. R. China.
State Key Laboratory of Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu 610041, P. R. China.
J Mater Chem B. 2022 Apr 6;10(14):2338-2356. doi: 10.1039/d1tb02323c.
Zwitterionic polymers, comprising hydrophilic anionic and cationic groups with the same total number of positive and negative charges on the same monomer residue, have received increasing attention due to their distinctive physico-chemical properties, including high hydration, good biocompatibility, good antifouling and good antibacterial properties, and thus show great potential as a novel type of biomedical material. Unique topological polymers with block, star, dendritic, comb, brush and cyclic structures not only meet the requirements of material structure accuracy but also provide a theoretical research template for the development of materials science. Topological structures can facilitate polymers with precise and adjustable structures, hydrodynamic size, lower viscosity, more active sites, less intermolecular entanglement, and increased colloidal stability, which can effectively achieve drug encapsulation, improve the drug-loading efficiency, achieve faster internalization, and reduce the cytotoxicity. Therefore, the synthesis of topological polymers with precise structures has become an inevitable requirement for the development of materials and their biomedical applications. The article mainly reviews the properties and application of zwitterionic polymers and their derivatives with different topological structures. In particular, the recent progress of these polymers in drug delivery, antitumor properties, biomedical diagnosis and antifouling coatings are described and introduced. Finally, the current problems in these applications are discussed, and the potential research prospects of zwitterionic-based topological polymers in current research are put forward.
两性离子聚合物由亲水性阴离子和阳离子基团组成,在同一单体残基上具有相同数量的正负电荷,由于其独特的物理化学性质而受到越来越多的关注,包括高水合性、良好的生物相容性、良好的抗污性和良好的抗菌性,因此作为一种新型的生物医学材料具有巨大的潜力。具有嵌段、星形、树枝状、梳状、刷状和环状结构的独特拓扑聚合物不仅满足了材料结构精度的要求,而且为材料科学的发展提供了理论研究模板。拓扑结构可以促进具有精确和可调结构、流体力学尺寸、较低粘度、更多活性位点、较少分子间缠结和增加胶体稳定性的聚合物,从而有效实现药物包封、提高载药效率、实现更快的内化,并降低细胞毒性。因此,合成具有精确结构的拓扑聚合物已成为材料及其生物医学应用发展的必然要求。本文主要综述了具有不同拓扑结构的两性离子聚合物及其衍生物的性质和应用。特别介绍了这些聚合物在药物传递、抗肿瘤特性、生物医学诊断和抗污涂层方面的最新进展。最后,讨论了这些应用中存在的问题,并提出了当前基于两性离子的拓扑聚合物在当前研究中的潜在研究前景。