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Recent advances in crosslinking chemistry of biomimetic poly(ethylene glycol) hydrogels

机译:仿生聚乙二醇水凝胶的交联化学研究进展

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The designs and applications of biomimetic hydrogels have become an important and integral part of modern tissue engineering and regenerative medicine. Many of these hydrogels are prepared from synthetic macromers (e.g., poly(ethylene glycol) or PEG) as they provide high degrees of tunability for matrix crosslinking, degradation, and modification. For a hydrogel to be considered biomimetic, it has to recapitulate key features that are found in the native extracellular matrix, such as the appropriate matrix mechanics and permeability, the ability to sequester and deliver drugs, proteins, or nucleic acids, as well as the ability to provide receptor-mediated cell-matrix interactions and protease-mediated matrix cleavage. A variety of chemistries have been employed to impart these biomimetic features into hydrogel crosslinking. These chemistries, such as radical-mediated polymerizations, enzyme-mediated crosslinking, bio-orthogonal click reactions, and supramolecular assembly, may be different in their crosslinking mechanisms but are required to be efficient for gel crosslinking and ligand bioconjugation under aqueous reaction conditions. The prepared biomimetic hydrogels should display a diverse array of functionalities and should also be cytocompatible for in vitro cell culture and/or in situ cell encapsulation. The focus of this article is to review recent progress in the crosslinking chemistries of biomimetic hydrogels with a special emphasis on hydrogels crosslinked from poly(ethylene glycol)-based macromers.
机译:仿生水凝胶的设计和应用已成为现代组织工程和再生医学的重要组成部分。这些水凝胶中的许多是由合成大分子单体(例如,聚乙二醇或PEG)制备的,因为它们为基质的交联,降解和修饰提供了高度的可调谐性。对于要被认为是仿生的水凝胶,它必须概括天然细胞外基质中发现的关键特征,例如适当的基质力学和通透性,螯合和递送药物,蛋白质或核酸的能力,以及提供受体介导的细胞-基质相互作用和蛋白酶介导的基质裂解的能力。已经采用多种化学方法将这些仿生特征赋予水凝胶交联。这些化学方法,例如自由基介导的聚合反应,酶介导的交联,生物正交点击反应和超分子组装,在交联机理上可能有所不同,但需要在水性反应条件下有效进行凝胶交联和配体生物缀合。制备的仿生水凝胶应显示多种功能,并且还应具有细胞相容性,可用于体外细胞培养和/或原位细胞封装。本文的重点是回顾仿生水凝胶在交联化学方面的最新进展,特别强调从基于聚乙二醇的大分子单体交联的水凝胶。

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