Li Xuebing, Liu Junda, Qiu Neng
Institute of Fundamental and Frontier Sciences, University of Electronic Science and Technology of China, Chengdu 611731, China.
Department of Chemical Engineering, College of Materials and Chemistry and Chemical Engineering, Chengdu University of Technology, Chengdu 610059, China.
Polymers (Basel). 2023 Mar 11;15(6):1400. doi: 10.3390/polym15061400.
Cyclodextrins (CDs) are one of the most extensively studied cyclic-oligosaccharides due to their low toxicity, good biodegradability and biocompatibility, facile chemical modification, and unique inclusion capacity. However, problems such as poor pharmacokinetics, plasma membrane disruption, hemolytic effects and a lack of target specificity still exist for their applications as drug carriers. Recently, polymers have been introduced into CDs to combine the advantages of both biomaterials for the superior delivery of anticancer agents in cancer treatment. In this review, we summarize four types of CD-based polymeric carriers for the delivery of chemotherapeutics or gene agents for cancer therapy. These CD-based polymers were classified based on their structural properties. Most of the CD-based polymers were amphiphilic with the introduction of hydrophobic/hydrophilic segments and were able to form nanoassemblies. Anticancer drugs could be included in the cavity of CDs, encapsulated in the nanoparticles or conjugated on the CD-based polymers. In addition, the unique structures of CDs enable the functionalization of targeting agents and stimuli-responsive materials to realize the targeting and precise release of anticancer agents. In summary, CD-based polymers are attractive carriers for anticancer agents.
环糊精(CDs)是研究最为广泛的环状低聚糖之一,因其毒性低、良好的生物降解性和生物相容性、易于化学修饰以及独特的包合能力。然而,作为药物载体应用时,它们仍然存在药代动力学差、质膜破坏、溶血作用以及缺乏靶向特异性等问题。最近,聚合物已被引入到环糊精中,以结合这两种生物材料的优势,从而在癌症治疗中实现抗癌药物的卓越递送。在这篇综述中,我们总结了四种用于递送化疗药物或基因药物以进行癌症治疗的基于环糊精的聚合物载体。这些基于环糊精的聚合物根据其结构特性进行分类。大多数基于环糊精的聚合物通过引入疏水/亲水链段而具有两亲性,并且能够形成纳米聚集体。抗癌药物可以包含在环糊精的空腔中,封装在纳米颗粒中或偶联在基于环糊精的聚合物上。此外,环糊精的独特结构能够实现靶向剂和刺激响应材料的功能化,以实现抗癌药物的靶向和精确释放。总之,基于环糊精的聚合物是有吸引力的抗癌药物载体。