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Development of robust biocompatible silicone with high resistance to protein adsorption and bacterial adhesion.

机译:开发出对蛋白质吸附和细菌粘附具有高抵抗力的强大的生物相容性有机硅。

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摘要

A new biocompatible silicone comprising a carboxybetaine (CB) ester analogue, 3-methacryloxypropyltris(trimethylsiloxy)silane (TRIS) and an organic silicone macromer (bis-alpha,omega-(methacryloxypropyl) polydimethylsiloxane) has been developed using photo-polymerisation. Following interfacial hydrolysis of the CB ester, the resulting zwitterionic material became significantly more hydrophilic and exhibited high resistance to both non-specific protein adsorption and bacterial adhesion. Moreover, the stability of these non-fouling properties was dramatically improved by using a slow and controlled rate of ester hydrolysis of the original protective hydrophobic matrix. The subsequent ability to maintain the original optical and mechanical properties of the bare silicone following surface activation makes this material an ideal candidate for preparing contact lenses and other medical devices.
机译:利用光聚合已经开发了一种新的生物相容性有机硅,该有机相容性有机硅包括羧基甜菜碱(CB)酯类似物,3-甲基丙烯酰氧基丙基三(三甲基硅氧基)硅烷(TRIS)和有机硅氧烷大分子单体(双-α,ω-(甲基丙烯酰氧基丙基)聚二甲基硅氧烷)。 CB酯的界面水解后,所得的两性离子物质变得更加亲水,并且对非特异性蛋白质吸附和细菌粘附均显示出很高的抵抗力。此外,通过使用缓慢且受控的原始保护性疏水性基质的酯水解速率,显着提高了这些防污性能的稳定性。表面活化后具有保持裸硅树脂原始光学和机械性能的后续能力,使该材料成为制备隐形眼镜和其他医疗设备的理想选择。

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