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用于生物医学应用的自修复水凝胶设计。

Designing self-healing hydrogels for biomedical applications.

机构信息

Department of Vascular Surgery, Nanjing Drum Tower Hospital, School of Biological Science and Medical Engineering, Southeast University, Nanjing 210096, China.

Oujiang Laboratory (Zhejiang Lab for Regenerative Medicine, Vision and Brain Health), Wenzhou Institute, University of Chinese Academy of Sciences, Wenzhou 325001, China.

出版信息

Mater Horiz. 2023 Oct 2;10(10):3929-3947. doi: 10.1039/d3mh00891f.

Abstract

Self-healing hydrogels have emerged as the most promising alternatives to conventional brittle hydrogels used in the biomedical field due to the features of long-term stability and durability. However, the incompatibility between the fast self-healing property and enough mechanical strength of hydrogels remains a challenge. Therefore, hydrogels that possess not only mechanical toughness but also autonomous self-healing capacity are sought after. This review presents a comprehensive summary of the latest self-healing mechanisms. Specifically, we review various systems based on dynamic bonds, ranging from dynamic covalent bonds to non-covalent bonds. Additionally, this review presents different characterization methods for self-healing hydrogels, and also highlights their potential applications in the biomedical field, such as tissue engineering, drug delivery, cell therapy, and wound dressing. Furthermore, this review aims to provide valuable guidance for constructing diverse self-healing hydrogels with tailored functions.

摘要

自修复水凝胶作为生物医学领域中传统脆性水凝胶的最有前途的替代品而出现,因为它们具有长期稳定性和耐用性的特点。然而,水凝胶的快速自修复性能与足够的机械强度之间的不兼容性仍然是一个挑战。因此,人们一直在寻找既具有机械韧性又具有自主自修复能力的水凝胶。本文综述了最新的自修复机制。具体来说,我们综述了各种基于动态键的系统,包括动态共价键和非共价键。此外,本文还介绍了自修复水凝胶的不同表征方法,并强调了它们在生物医学领域的潜在应用,如组织工程、药物输送、细胞治疗和伤口敷料。此外,本文旨在为构建具有特定功能的各种自修复水凝胶提供有价值的指导。

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