生物医学应用的透明质酸基超分子水凝胶

Q1 Materials Science
M. Mihajlovic, Liline A. S. Fermin, Keita Ito, C. van Nostrum, T. Vermonden
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引用次数: 15

摘要

软性材料,如水凝胶,在组织工程和再生医学中用作支架,以帮助组织再生和愈合。近年来,基于非共价相互作用的超分子水凝胶越来越受欢迎,特别是在生物医学用途材料的开发中。它们的潜力在于交联的动态性、可逆性和临时性,这使得它们对刺激有反应,可注射,适合3D打印。这种多功能性和可加工性在开发用于药物输送或可植入支架的新生物材料时非常重要。与化学交联的水凝胶相比,这种水凝胶的行为和性能有所不同。本文综述了以透明质酸(HA)为主要成分的超分子水凝胶的研究进展。由于其亲水性、生物功能和易于化学修饰,透明质酸特别令人感兴趣。具体来说,我们关注的是基于ha的水凝胶,它利用氢键、疏水相互作用、静电相互作用、金属离子配位和主客相互作用,有望应用于生物医学领域,具有临床转化的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hyaluronic acid-based supramolecular hydrogels for biomedical applications
Soft materials, such as hydrogels, are used as scaffolds in tissue engineering and regenerative medicine to help tissues regenerate and heal. Recently, supramolecular hydrogels, based on non-covalent interactions, have grown in popularity, especially in the development of materials for biomedical use. Their potential lies in the dynamic, reversible and temporary nature of their crosslinks, which can make them responsive to stimuli, injectable and suitable for 3D printing. Such versatility and processability is important when developing new biomaterials for drug delivery or as implantable scaffolds. The behavior and properties of such hydrogels are different compared to those of chemically crosslinked hydrogels. In this review, we give an overview on supramolecular hydrogels which contain hyaluronic acid (HA) as one of the building blocks. HA is particularly interesting, due to its hydrophilicity, biofunctionality and ease of chemical modification. Specifically, we focus on HA-based hydrogels that make use of hydrogen bonding, hydrophobic interactions, electrostatic interactions, metal–ion coordination and guest–host interactions, and are intended for applications in the biomedical field, with potential for clinical translation.
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来源期刊
Multifunctional Materials
Multifunctional Materials Materials Science-Materials Science (miscellaneous)
CiteScore
12.80
自引率
0.00%
发文量
9
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