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Nudease-Functionalized Poly(Styrene-b-isobutylene-b-styrene) Surface with Anti-Infection and Tissue Integration Bifunctions

机译:具有抗感染和组织整合双功能的核酸酶功能化聚苯乙烯-b-异丁烯-b-苯乙烯表面

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摘要

Hydrophobic thermoplastic elastomers, e.g., poly(styrene-b-isobutylene-b-styrene) (SIBS), have found various in vivo biomedical applications. It has long been recognized that biomaterials can be adversely affected by bacterial contamination and clinical infection. However, inhibiting bacterial colonization while simultaneously preserving or enhancing tissue-cell/material interactions is a great challenge. Herein, SIBS substrates were functionalized with nucleases under mild conditions, through polycarboxylate grafts as intermediate. It was demonstrated that the nuclease-modified SIBS could effectively prevent bacterial adhesion and biofilm formation. Cell adhesion assays confirmed that nuclease coatings generally had no negative effects on L929 cell adhesion, compared with the virgin SIBS reference. Therefore, the as-reported nuclease coating may present a promising approach to inhibit bacterial infection, while preserving tissue-cell integration on polymeric biomaterials.
机译:疏水性热塑性弹性体,例如聚(苯乙烯-b-异丁烯-b-苯乙烯)(SIBS),已经发现了多种体内生物医学应用。长期以来,人们已经认识到生物材料会受到细菌污染和临床感染的不利影响。然而,在同时保持或增强组织-细胞/材料相互作用的同时抑制细菌定植是巨大的挑战。在本文中,SIBS底物在中等条件下通过聚羧酸酯接枝作为中间物用核酸酶功能化。结果表明,核酸酶修饰的SIBS可以有效防止细菌粘附和生物膜形成。细胞粘附测定证实,与原始SIBS参考相比,核酸酶涂层通常对L929细胞粘附没有负面影响。因此,如所报道的核酸酶涂层可以提供一种有前途的抑制细菌感染的方法,同时保留组织细胞在高分子生物材料上的整合。

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