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聚合材料向酶接枝和交联的活化。

Activation of polymeric materials towards enzymatic postgrafting and cross-linking.

机构信息

Next Technology Tecnotessile s.r.l., via del Gelso 13, 59100 Prato, Italy.

出版信息

Enzyme Microb Technol. 2012 Oct 10;51(5):252-7. doi: 10.1016/j.enzmictec.2012.07.005. Epub 2012 Jul 25.

Abstract

A methodology to activate inert polymeric materials to enzymatic functionalisation is described herein. Plasma irradiation can be used to graft compounds containing a moiety that is reactive towards an enzyme of interest. Subsequently, such enzyme can be used to either postgraft functional compounds or cross-link the polymeric materials. Argon plasma was utilised to graft 2-aminoethyl methacrylate onto cotton and wool fibres, introducing surface alkylamine groups to impart reactivity towards transglutaminase and tyrosinase. The efficiency of plasma grafting was verified by ATR-FTIR. Enzyme postgrafting of fluorescent peptides coupled with confocal microscopy was used to demonstrate transglutaminase activity towards cotton, a material typically inert to this enzyme. The grafting of alkylamines onto wool resulted in additional cross-linking by both enzymes, leading to significantly increased yarn breaking load and elongation at break. This technology permits the activation of inert materials towards enzymatic postgrafting, with applications in fields as diverse as textiles and biomaterials.

摘要

本文介绍了一种将惰性聚合物材料激活进行酶功能化的方法。等离子体辐射可用于接枝含有对感兴趣的酶具有反应性的部分的化合物。随后,可以使用该酶对后接枝官能化合物或对聚合物材料进行交联。氩等离子体被用于将 2-氨基乙基甲基丙烯酸酯接枝到棉和羊毛纤维上,引入表面烷基胺基团以赋予对转谷氨酰胺酶和酪氨酸酶的反应性。ATR-FTIR 验证了等离子体接枝的效率。用带有共聚焦显微镜的荧光肽进行酶后接枝,证明了转谷氨酰胺酶对棉的活性,棉通常对这种酶惰性。烷基胺接枝到羊毛上导致两种酶的进一步交联,从而显著增加纱线断裂负荷和断裂伸长率。这项技术可以使惰性材料能够进行酶后接枝,在纺织品和生物材料等多个领域有应用。

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