Mohite Popat, Shah Sunny R, Singh Sudarshan, Rajput Tanavirsing, Munde Shubham, Ade Nitin, Prajapati Bhupendra G, Paliwal Himanshu, Mori Dhaval D, Dudhrejiya Ashvin V
AETs St. John Institute of Pharmacy and Research, Palghar, Maharashtra, India.
B. K. Mody Government Pharmacy College, Gujarat Technological University, Rajkot, India.
Front Bioeng Biotechnol. 2023 May 19;11:1190879. doi: 10.3389/fbioe.2023.1190879. eCollection 2023.
Chito-oligosaccharides (COS), derived from chitosan (CH), are attracting increasing attention as drug delivery carriers due to their biocompatibility, biodegradability, and mucoadhesive properties. Grafting, the process of chemically modifying CH/COS by adding side chains, has been used to improve their drug delivery performance by enhancing their stability, targeted delivery, and controlled release. In this review, we aim to provide an in-depth study on the recent advances in the grafting of CH/COS for multifarious applications. Moreover, the various strategies and techniques used for grafting, including chemical modification, enzymatic modification, and physical modification, are elaborated. The properties of grafted CH/COS, such as stability, solubility, and biocompatibility, were reported. Additionally, the review detailed the various applications of grafted CH/COS in drug delivery, including the delivery of small drug molecule, proteins, and RNA interference therapeutics. Furthermore, the effectiveness of grafted CH/COS in improving the pharmacokinetics and pharmacodynamics of drugs was included. Finally, the challenges and limitations associated with the use of grafted CH/COS for drug delivery and outline directions for future research are addressed. The insights provided in this review will be valuable for researchers and drug development professionals interested in the application of grafted CH/COS for multifarious applications.
壳寡糖(COS)由壳聚糖(CH)衍生而来,因其生物相容性、生物降解性和粘膜粘附特性,作为药物递送载体正受到越来越多的关注。接枝是通过添加侧链对CH/COS进行化学修饰的过程,已被用于通过增强其稳定性、靶向递送和控释来提高其药物递送性能。在这篇综述中,我们旨在对CH/COS接枝在多种应用中的最新进展进行深入研究。此外,还阐述了用于接枝的各种策略和技术,包括化学修饰、酶促修饰和物理修饰。报告了接枝后的CH/COS的性质,如稳定性、溶解性和生物相容性。此外,该综述详细介绍了接枝后的CH/COS在药物递送中的各种应用,包括小分子药物、蛋白质和RNA干扰治疗药物的递送。此外,还包括接枝后的CH/COS在改善药物药代动力学和药效学方面的有效性。最后,讨论了与使用接枝后的CH/COS进行药物递送相关的挑战和局限性,并概述了未来的研究方向。本综述提供的见解对于对将接枝后的CH/COS应用于多种用途感兴趣的研究人员和药物开发专业人员将是有价值的。