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Modulation of fibroblast inflammatory response by surface modification of a perfluorinated ionomer

机译:通过全氟离聚物的表面修饰来调节成纤维细胞的炎症反应

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摘要

An ideal surface for implantable glucose sensors would be able to evade the events leading to chronic inflammation and fibrosis, thereby extending its utility in an in vivo environment. Nafion™, a perfluorinated ionomer, is the membrane material preferred for in situ glucose sensors. Unfortunately, the surface properties of Nafion™ promote random protein adsorption and eventual foreign body encapsulation, thus leading to loss of glucose signal over time. Details of the techniques to render Nafion™ nonprotein fouling are given in a previous article [T. I. Valdes et al., Biomaterials >29, 1356 (2008)]. Once random protein adsorption is prevented, a biologically active peptide can be covalently bonded to the treated Nafion™ to induce cellular adhesion. Cellular responses to these novel decorated Nafion™ surfaces are detailed here, including cell viability, cell spreading, and type I collagen synthesis. Normal human dermal fibroblasts NHDFs) were cultured on control and modified Nafion™ surfaces. Findings indicate that Nafion™ modified with 10% 2-hydroxyethyl methacrylate and 90% tetraglyme created a nonfouling surface that was subsequently decorated with the YRGDS peptide. NHDFs were shown to have exhibited decreased type I collagen production in comparison to NHDF cells on unmodified Nafion™ surfaces. Here, the authors report evidence that proves that optimizing conditions to prevent protein adsorption and enhance cellular adhesion may eliminate fibrous encapsulation of an implant.
机译:植入式葡萄糖传感器的理想表面将能够避免导致慢性炎症和纤维化的事件,从而扩展其在体内环境中的效用。 Nafion™是一种全氟离聚物,是原位葡萄糖传感器首选的膜材料。不幸的是,Nafion™的表面特性会促进蛋白质的随机吸附和最终的异物包封,从而导致葡萄糖信号随时间流逝。在先前的文章中[T.Natl.Acad.Sci.USA,87,3897]给出了使Nafion TM非蛋白质结垢的技术的细节。 I. Valdes等人,《生物材料> 29 》,1356(2008)]。一旦阻止了随机蛋白质的吸附,就可以将生物活性肽与已处理的Nafion™共价键合,以诱导细胞粘附。此处详细介绍了细胞对这些新颖装饰的Nafion™表面的反应,包括细胞活力,细胞铺展和I型胶原蛋白合成。在对照和改良的Nafion™表面上培养正常人的皮肤成纤维细胞(NHDF)。研究结果表明,用10%的甲基丙烯酸2-羟乙酯和90%的四甘醇二甲酸酯改性的Nafion™产生了无污垢表面,随后将其用YRGDS肽修饰。与未修饰的Nafion™表面上的NHDF细胞相比,NHDF已显示出降低的I型胶原蛋白生成。在这里,作者报告的证据证明,优化条件以防止蛋白质吸附并增强细胞粘附可能会消除植入物的纤维包裹。

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