首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Surface Functionalization of Poly(N-Vinylpyrrolidone) onto Poly(Dimethylsiloxane) for Anti-Biofilm Application
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Surface Functionalization of Poly(N-Vinylpyrrolidone) onto Poly(Dimethylsiloxane) for Anti-Biofilm Application

机译:聚(N-乙烯基吡咯烷酮)对抗生物膜施用聚(二甲基硅氧烷)的表面官能化

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摘要

Poly(dimethylsiloxane) (PDMS) has been widely used in the field of microfluidics, optical systems, and sensors. However, the hydrophobic nature of PDMS leads to low surface wettability and biofouling problems due to the nonspecific proteins-hydrophobic surface interactions and cell/bacterial adhesion. In this work, the PDMS surface was first introduced with amino groups (PDMS-NH2) via KOH-catalyzed reaction with 3-aminopropyltriethoxysilane (APTES). The PDMS-NH2 was then grafted with poly(N-vinylpyrrolidone) (PVP) based on the self-adhesion reaction between the amino surface and catechol-functionalized PVP (CA-PLL-PVP). CA-PLL-PVP as a comb-polymer was synthesized by conjugating PVP-COOH along with caffeic acid to the epsilon-polylysine backbone. A significantly enhanced water wettability was observed with contact angles dropped from 116 degrees to 14 degrees after coating with CA-PLL-PVP. The coated surface demonstrated excellent antifouling performance that no appreciableStaphylococcus epidermidisbiofilm formation could be observed. This novel facile antifouling coating on PDMS surface may find greater biomedical applications to eliminate the potential adherence problems caused by natural biofouling.
机译:聚(二甲基硅氧烷)(PDMS)已广泛用于微流体,光学系统和传感器领域。然而,由于非特异性蛋白质 - 疏水表面相互作用和细胞/细菌粘合,PDMS的疏水性质导致低表面润湿性和生物膨胀问题。在这项工作中,首先通过与3-氨基丙基三乙氧基硅烷(Aptes)的KOH催化反应将PDMS表面引入氨基(PDMS-NH2)。然后基于氨基表面和儿茶酚官能化PVP(CA-PLL-PVP)之间的自粘反应接枝PDMS-NH2与聚(N-乙烯基吡咯烷酮)(PVP)接枝。通过将PVP-COOH与咖啡酸与ePSILON-聚赖氨酸骨架共轭合成Ca-PLL-PVP作为梳状聚合物合成。在用Ca-PLL-PVP涂覆后,通过接触角观察到显着增强的水润湿性,接触角从116度降至14度。涂层表面展示了可以观察到不可能培养的甲状平神霉菌症癫痫菌丝形成的优异防污性能。 PDMS表面上的这种新型轻度防污涂层可以找到更大的生物医学应用,以消除由天然生物污染引起的潜在的粘附问题。

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