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Preparation of anti-fouling silicone elastomers by covalent immobilization of carboxybetaine

机译:通过羧基甜菜碱的共价固定制备防污硅弹性体

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摘要

Polydimethylsiloxane (PDMS) is a widely used material for biomedical applications. In this work, a convenient method for the covalent modification of PDMS with carboxybetaine was developed and used to construct a biocompatible and anti-fouling coating. Following the preparation of a Si-H functionalized PDMS film by adjusting the molar ratio of the two components used in Sylgard 184 silicone elastomer networks, the allyl carboxybetaine (ACB) was grafted to the PDMS surface via a hydrosilylation reaction in the presence of a Karstedt's catalyst. ATR-FTIR and water contact angle measurements revealed that carboxybetaine was introduced to the PDMS surface successfully. The biocompatibilities of PDMS and carboxybetaine-modified PDMS (PDMS-CB) films were evaluated by cytotoxicity, hemocompatibility, and dynamic clotting time. The anti-fouling properties of PDMS-CB were evaluated by protein adsorption and bacterial adhesion measurements. The results showed that the carboxybetaine layer could enhance the biocompatibility of PDMS and reduce the adsorption of protein and adhesion of bacteria efficiently.
机译:聚二甲基硅氧烷(PDMS)是生物医学应用中广泛使用的材料。在这项工作中,开发了一种方便的方法,用羧基甜菜碱对PDMS进行共价修饰,并将其用于构建生物相容性和防污涂料。通过调节Sylgard 184硅橡胶弹性体网络中使用的两种组分的摩尔比制备Si-H功能化的PDMS膜后,烯丙基羧基甜菜碱(ACB)在Karstedt's存在下通过氢化硅烷化反应接枝到PDMS表面催化剂。 ATR-FTIR和水接触角测量表明,羧基甜菜碱已成功引入PDMS表面。通过细胞毒性,血液相容性和动态凝血时间评估PDMS和羧基甜菜碱修饰的PDMS(PDMS-CB)膜的生物相容性。 PDMS-CB的防污性能通过蛋白质吸附和细菌粘附力测量进行评估。结果表明,羧基甜菜碱层可增强PDMS的生物相容性,并有效降低蛋白质的吸附和细菌的粘附。

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