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基于功能性多糖的水凝胶在骨再生中的应用:从基础到高级应用

Functional polysaccharide-based hydrogel in bone regeneration: From fundamentals to advanced applications.

作者信息

Du Jian, Zhou Tian, Peng Wei

机构信息

Senior Department of Orthopedics, the Fourth Medical Center of PLA General Hospital, Beijing, 100048, China; Hebei North University, Zhangjiakou, 075000, China.

Hebei North University, Zhangjiakou, 075000, China.

出版信息

Carbohydr Polym. 2025 Mar 15;352:123138. doi: 10.1016/j.carbpol.2024.123138. Epub 2024 Dec 13.

Abstract

Bone regeneration is limited and generally requires external intervention to promote effective repair. Autografts, allografts, and xenografts as traditional methods for addressing bone defects have been widely utilized, their clinical applicability is limited due to their respective disadvantages. Fortunately, functional polysaccharide hydrogels have gained significant attention in bone regeneration due to their exceptional drug-loading capacity, biocompatibility, and ease of chemical modification. They also provide an optimal microenvironment for bone repair and regeneration. This review provides an overview of various functional polysaccharide hydrogels derived from biocompatible materials, focusing on their applications in intelligent delivery systems, bone tissue regeneration, and cartilage defect repair. Particularly, the incorporation of bioactive molecules into the design of functional polysaccharide hydrogels has been shown to significantly enhance bone regeneration. Additionally, this review emphasizes the preparation methods for functional polysaccharide hydrogels and associated the bone healing mechanisms. Finally, the limitations and future prospects of functional polysaccharide hydrogels are thoroughly evaluated.

摘要

骨再生是有限的,通常需要外部干预以促进有效的修复。自体移植物、同种异体移植物和异种移植物作为解决骨缺损的传统方法已被广泛应用,但其临床适用性因其各自的缺点而受到限制。幸运的是,功能性多糖水凝胶因其出色的载药能力、生物相容性和易于化学修饰而在骨再生中受到了广泛关注。它们还为骨修复和再生提供了最佳的微环境。本综述概述了源自生物相容性材料的各种功能性多糖水凝胶,重点介绍了它们在智能递送系统、骨组织再生和软骨缺损修复中的应用。特别地,已证明在功能性多糖水凝胶的设计中引入生物活性分子可显著增强骨再生。此外,本综述强调了功能性多糖水凝胶的制备方法以及相关的骨愈合机制。最后,对功能性多糖水凝胶的局限性和未来前景进行了全面评估。

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