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基于脂质体复合水凝胶微球的药物递送系统研究进展。

Advances in drug delivery systems based on liposome-composite hydrogel microspheres.

作者信息

Yang Shuanghong, Li Ze, Li Sicheng, Zhang Jinpeng, Huang Jinjian, Ren Jianan, Wu Xiuwen

机构信息

Jinling Clinical Medical College, Nanjing University of Chinese Medicine, 305 East Zhongshan Road, Nanjing 210002, P.R. China.

Research Institute of General Surgery, Jinling Hospital, Affiliated Hospital of Medical School, Nanjing University, Nanjing 210002, P.R. China.

出版信息

J Mater Chem B. 2025 Oct 1;13(38):11885-11908. doi: 10.1039/d5tb01369k.

Abstract

Research on liposome-composite hydrogel microspheres (LHMs) drug delivery systems, primarily composed of drugs, liposomes, and hydrogels, has garnered growing scientific interest. LHMs exhibit biosafety, modifiability, a wide range of loaded drug categories (water-soluble or fat-soluble), controlled and sustainable drug release capability, and specific cell-targeted performance, which compensate for the shortcomings of conventional drug delivery methods due to the complementary advantages of liposome and hydrogel microspheres. In this review, we systematically analyze the existing literature on LHMs and provide a comprehensive overview of their preparation methods. Specifically, we detail the fabrication techniques for liposomes, including thin-film hydration, solvent injection, multiple emulsion, reverse-phase evaporation, gradient, freeze-drying, supercritical fluid, and microfluidic approaches as well as methodologies for LHMs, such as microfluidics, electrospraying, 3D printing, reverse-phase microemulsion, and physical adsorption. We also summarize the optimization approaches for LHMs properties when combining liposomes and hydrogel microspheres. Finally, we present the applications and challenges of LHMs. We hope that this review will foster more insights into LHMs in drug delivery fields.

摘要

对主要由药物、脂质体和水凝胶组成的脂质体复合水凝胶微球(LHMs)药物递送系统的研究已引起越来越多的科学关注。LHMs具有生物安全性、可修饰性、广泛的载药种类(水溶性或脂溶性)、可控且可持续的药物释放能力以及特定的细胞靶向性能,由于脂质体和水凝胶微球的互补优势,弥补了传统药物递送方法的不足。在本综述中,我们系统地分析了关于LHMs的现有文献,并对其制备方法进行了全面概述。具体而言,我们详细介绍了脂质体的制备技术,包括薄膜水化法、溶剂注入法、复乳法、反相蒸发法、梯度法、冷冻干燥法、超临界流体法和微流控法,以及LHMs的制备方法,如微流控法、电喷雾法、3D打印法、反相微乳液法和物理吸附法。我们还总结了将脂质体和水凝胶微球结合时LHMs性能的优化方法。最后,我们介绍了LHMs的应用和挑战。我们希望本综述能促进在药物递送领域对LHMs有更多的深入了解。

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