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水凝胶载药系统的综合评价:分类、性质、最新趋势和应用。

A Comprehensive Review of Hydrogel-Based Drug Delivery Systems: Classification, Properties, Recent Trends, and Applications.

机构信息

Faculty of Pharmaceutical Sciences, University of Central Punjab, Lahore, 54000, Pakistan.

Department of Pharmaceutical Technology, Faculty of Pharmacy of the University of Coimbra, University of Coimbra, 3000-548, Coimbra, Portugal.

出版信息

AAPS PharmSciTech. 2024 Mar 21;25(4):64. doi: 10.1208/s12249-024-02786-x.

Abstract

As adaptable biomaterials, hydrogels have shown great promise in several industries, which include the delivery of drugs, engineering of tissues, biosensing, and regenerative medicine. These hydrophilic polymer three-dimensional networks have special qualities like increased content of water, soft, flexible nature, as well as biocompatibility, which makes it excellent candidates for simulating the extracellular matrix and promoting cell development and tissue regeneration. With an emphasis on their design concepts, synthesis processes, and characterization procedures, this review paper offers a thorough overview of hydrogels. It covers the various hydrogel material types, such as natural polymers, synthetic polymers, and hybrid hydrogels, as well as their unique characteristics and uses. The improvements in hydrogel-based platforms for controlled drug delivery are examined. It also looks at recent advances in bioprinting methods that use hydrogels to create intricate tissue constructions with exquisite spatial control. The performance of hydrogels is explored through several variables, including mechanical properties, degradation behaviour, and biological interactions, with a focus on the significance of customizing hydrogel qualities for particular applications. This review paper also offers insights into future directions in hydrogel research, including those that promise to advance the discipline, such as stimuli-responsive hydrogels, self-healing hydrogels, and bioactive hydrogels. Generally, the objective of this review paper is to provide readers with a detailed grasp of hydrogels and all of their potential uses, making it an invaluable tool for scientists and researchers studying biomaterials and tissue engineering.

摘要

作为适应性生物材料,水凝胶在多个领域显示出巨大的应用前景,包括药物输送、组织工程、生物传感和再生医学。这些亲水性聚合物三维网络具有高含水量、柔软、灵活的特性以及生物相容性,使其成为模拟细胞外基质、促进细胞发育和组织再生的优秀候选材料。本文重点介绍了水凝胶的设计概念、合成工艺和特性分析,对其进行了全面综述。涵盖了各种水凝胶材料类型,如天然聚合物、合成聚合物和杂化水凝胶,以及它们独特的特性和用途。探讨了水凝胶基药物控释平台的改进。还介绍了使用水凝胶进行生物打印的最新进展,这种方法可以创建具有精细空间控制的复杂组织结构。通过研究水凝胶的几个变量,包括机械性能、降解行为和生物相互作用,探讨了水凝胶的性能,重点介绍了为特定应用定制水凝胶特性的重要性。本文还展望了水凝胶研究的未来方向,包括刺激响应水凝胶、自修复水凝胶和生物活性水凝胶等有望推动该领域发展的方向。总的来说,本文的目的是为读者提供对水凝胶及其所有潜在应用的详细了解,为研究生物材料和组织工程的科学家和研究人员提供了宝贵的工具。

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