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由伯胺和聚乙二醇酰基三氟硼酸盐(PEG-KATs)形成的共价功能化酰胺交联水凝胶。

Covalently functionalized amide cross-linked hydrogels from primary amines and polyethylene glycol acyltrifluoroborates (PEG-KATs).

作者信息

Schauenburg Dominik, Osuna Gálvez Alberto, Bode Jeffrey W

机构信息

Laboratorium für Organische Chemie, Department of Chemistry and Applied Biosciences, ETH Zürich, 8093 Zürich, Switzerland.

出版信息

J Mater Chem B. 2018 Aug 7;6(29):4775-4782. doi: 10.1039/c8tb01028e. Epub 2018 Jul 5.

DOI:10.1039/c8tb01028e
PMID:32254304
Abstract

A new method for the rapid preparation of chemically cross-linked hydrogels based on a multi-arm polyethylene glycol (PEG) bearing potassium acyl trifluoroborate (KAT) functional groups with multi-dentate amines is described. These scaffolds - prepared in aqueous buffer - give strong, transparent hydrogels. At pH 3, the gel formation is complete within seconds, and the reaction rate can be tuned by modulating the pH. Rheology measurements show that the hydrogel properties can be tuned as a function of both the weight percent of solids in the gel and the denticity of amine cross-linker, allowing for predictable formation of gels with desired traits. This process relies on a rapid amide-forming reaction of KATs and in situ generated N-chloroamines. Numerous commercially available amines, including di-, tri- and tetra-functional amines as well as peptides and carbohydrates serve as effective cross-linkers. Monodentate amines included in the gelation mixture are covalently linked into the gel matrix by amide-bonds, allowing gels containing immobilized molecules including dyes, sensors, or biotin amine, to be prepared in a single step from simple starting materials. The ability to induce gelation only upon addition of equimolar amounts of an inexpensive inducer (N-chlorosuccinimide) allows premixed components to be stored as an aqueous solution for weeks and converted to gels on demand.

摘要

本文描述了一种基于带有三氟硼酸钾酰基(KAT)官能团的多臂聚乙二醇(PEG)与多齿胺快速制备化学交联水凝胶的新方法。这些在水性缓冲液中制备的支架能形成坚固、透明的水凝胶。在pH 3时,凝胶形成在数秒内完成,且反应速率可通过调节pH来调控。流变学测量表明,水凝胶的性质可根据凝胶中固体的重量百分比和胺交联剂的配位数进行调节,从而可预测地形成具有所需特性的凝胶。该过程依赖于KAT与原位生成的N - 氯胺的快速酰胺形成反应。许多市售胺,包括二官能、三官能和四官能胺以及肽和碳水化合物都可作为有效的交联剂。凝胶化混合物中包含的单齿胺通过酰胺键共价连接到凝胶基质中,使得包含固定化分子(如染料、传感器或生物素胺)的凝胶能够从简单原料一步制备而成。仅在加入等摩尔量的廉价诱导剂(N - 氯代琥珀酰亚胺)时才诱导凝胶化的能力,使得预混合的组分能够作为水溶液储存数周,并可按需转化为凝胶。

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