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多糖修饰的脂质体及其在癌症研究中的应用。

Polysaccharide-modified liposomes and their application in cancer research.

作者信息

Peng Peichun, Chen Zeshan, Wang Miaodong, Wen Bin, Deng Xin

机构信息

International Zhuang Medical Hospital Affiliated to Guangxi University of Chinese Medicine, Nanning, China.

Department of Traditional Chinese Medicine, Guangxi Academy of Medical Sciences, Nanning, China.

出版信息

Chem Biol Drug Des. 2023 Apr;101(4):998-1011. doi: 10.1111/cbdd.14201. Epub 2023 Jan 5.

Abstract

Nanodrug delivery systems have been widely used in cancer treatment. Among these, liposomal drug carriers have gained considerable attention due to their biocompatibility, biodegradability, and low toxicity. However, conventional liposomes have several shortcomings, such as poor stability, rapid clearance, aggregation, fusion, degradation, hydrolysis, and oxidation of phospholipids. Polysaccharides are natural polymers of biological origin that exhibit structural stability, excellent biocompatibility and biodegradability, flexibility, non-immunogenicity, low toxicity, and targetability. Therefore, they represent a promising class of polymers for the modification of the surface properties of liposomes to overcome their shortcomings. In addition, polysaccharides can be readily combined with other materials to develop new composite materials. Hence, they represent the optimal choice for liposomal modification to improve pharmacokinetics and clinical utility. Polysaccharide-coated liposomes exhibit better stability, drug release kinetics, and cellular uptake than conventional liposomes. The oncologic application of polysaccharide-coated liposomes has become a research hotspot. We summarize the preparation, physicochemical properties, and antineoplastic effects of polysaccharide-coated liposomes to facilitate antitumor drug development.

摘要

纳米药物递送系统已广泛应用于癌症治疗。其中,脂质体药物载体因其生物相容性、生物可降解性和低毒性而备受关注。然而,传统脂质体存在一些缺点,如稳定性差、快速清除、聚集、融合、降解、水解以及磷脂的氧化。多糖是生物来源的天然聚合物,具有结构稳定性、优异的生物相容性和生物可降解性、柔韧性、非免疫原性、低毒性和靶向性。因此,它们是一类很有前途的聚合物,可用于修饰脂质体的表面性质以克服其缺点。此外,多糖可以很容易地与其他材料结合以开发新型复合材料。因此,它们是脂质体修饰以改善药代动力学和临床应用的最佳选择。多糖包被的脂质体比传统脂质体表现出更好的稳定性、药物释放动力学和细胞摄取。多糖包被脂质体的肿瘤学应用已成为研究热点。我们总结了多糖包被脂质体的制备、理化性质和抗肿瘤作用,以促进抗肿瘤药物的开发。

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