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The Development and Lifetime Stability Improvement of Guanosine-Based Supramolecular Hydrogels through Optimized Structure

机译:通过优化结构改善基于鸟苷的超分子水凝胶的开发和终身稳定性

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摘要

Guanosine is an important building block for supramolecular gels owing to the unique self-assembly property that results from the unique hydrogen bond acceptors and donor groups. Guanosine-derived supramolecular hydrogels have promise in the fields of drug delivery, targeted release, tissue engineering applications, etc. However, the property of poor longevity and the need for excess cations hinder the widespread applications of guanosine hydrogels. Although guanosine-derived supramolecular hydrogels have been reviewed previously by Dash et al., the structural framework of this review is different, as the modification of guanosine is described at the molecular level. In this review, we summarize the development and lifetime stability improvement of guanosine-based supramolecular hydrogels through optimized structure and elaborate on three aspects: sugar modification, base modification, and binary gels. Additionally, we introduce the concept and recent research progress of self-healing gels, providing inspiration for the development of guanosine-derived supramolecular hydrogels with longer lifespans, unique physicochemical properties, and biological activities.
机译:由于独特的氢键受体和供体基团具有独特的自组装特性,因此鸟苷是超分子凝胶的重要组成部分。鸟嘌呤衍生的超分子水凝胶在药物递送,靶向释放,组织工程应用等领域中具有前景。然而,寿命差的特性和对过量阳离子的需求阻碍了鸟嘌呤水凝胶的广泛应用。尽管达什(Dash)等人先前已经审查了鸟苷衍生的超分子水凝胶,但是该综述的结构框架是不同的,因为在分子水平上描述了鸟苷的修饰。在这篇综述中,我们总结了鸟苷基超分子水凝胶通过优化结构的发展和生命周期稳定性的改进,并详细阐述了三个方面:糖修饰,碱修饰和二元凝胶。此外,我们介绍了自愈凝胶的概念和最新研究进展,为开发鸟苷衍生的超分子水凝胶(具有更长的使用寿命,独特的理化性质和生物活性)提供了启发。

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