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基于超支化大分子单体的透明质酸凝胶化用于高效脂质体包封及改善透皮递送

Hyperbranched Macromonomer-Based Gelation of Hyaluronic Acid for Efficient Liposome Encapsulation and Improved Transdermal Delivery.

作者信息

Guo Lingxi, Zhang Jing, Li Yue, Cheng Mingdong, Liu Yue, Lu Guilong, Shen Yu, Shen Haixia, Yu Ziyi

机构信息

State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Nanjing Tech University, 30 Puzhu South Road, Nanjing, 211816, P. R. China.

出版信息

Macromol Rapid Commun. 2025 Aug;46(16):e2500310. doi: 10.1002/marc.202500310. Epub 2025 May 13.

Abstract

Liposome-based formulations, while facilitating drug penetration across physiological barriers, face considerable challenges, including instability, rapid clearance in vivo, and inadequate control over drug release. Incorporating liposomes into hydrogels presents a promising approach to enhancing stability and sustaining drug delivery. However, optimizing their administration, responsiveness, and synergistic interaction with the tissue penetration process to improve drug permeation efficiency and bioavailability remains a critical challenge. To address these limitations, this study introduces an intelligent, injectable hydrogel delivery system based on the crosslinking of thiolated hyaluronic acid with a versatile hyperbranched PEG macromer (HPM). The high reactivity and acid-responsive properties of HPM enable in situ, rapid liposome encapsulation, significantly enhancing liposome stability while ensuring excellent injectability and localized therapeutic effects. As a proof of concept, this hydrogel system is applied as a skin dressing, facilitating controlled liposome release while improving stratum corneum hydration, thereby markedly enhancing the transdermal delivery of the antioxidant coenzyme Q10 (CoQ10). Compared to the direct application of free CoQ10 dispersions, this system achieves an impressive 16.6-fold increase in bioavailability, highlighting its strong potential for applications in transdermal drug delivery and localized disease treatment.

摘要

基于脂质体的制剂虽然有助于药物穿透生理屏障,但面临着诸多挑战,包括不稳定性、体内快速清除以及对药物释放的控制不足。将脂质体纳入水凝胶中是一种增强稳定性和维持药物递送的有前景的方法。然而,优化它们的给药方式、反应性以及与组织渗透过程的协同相互作用以提高药物渗透效率和生物利用度仍然是一项关键挑战。为了解决这些限制,本研究引入了一种基于硫醇化透明质酸与多功能超支化聚乙二醇大分子单体(HPM)交联的智能、可注射水凝胶递送系统。HPM的高反应性和酸响应特性能够实现原位快速脂质体包封,显著提高脂质体稳定性,同时确保出色的可注射性和局部治疗效果。作为概念验证,该水凝胶系统用作皮肤敷料,促进脂质体的可控释放,同时改善角质层水合作用,从而显著增强抗氧化剂辅酶Q10(CoQ10)的透皮递送。与直接应用游离CoQ10分散体相比,该系统的生物利用度提高了16.6倍,凸显了其在透皮药物递送和局部疾病治疗中的强大应用潜力。

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