首页> 外文期刊>Materials Research Bulletin >Controllable nanoporous fibril-like morphology by layer-by- layer self- assembled films of bioelectronics poly(pyrrole-co-formyl pyrrole)/ polystyrene sulfonate for biocompatible electrode
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Controllable nanoporous fibril-like morphology by layer-by- layer self- assembled films of bioelectronics poly(pyrrole-co-formyl pyrrole)/ polystyrene sulfonate for biocompatible electrode

机译:通过生物电子的聚(吡咯-共-甲酰基吡咯)/聚苯乙烯磺酸盐的逐层自组装膜可控制的纳米多孔原纤维状形态,用于生物相容性电极

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摘要

We demonstrate a new class of nanocoating materials for biocompatible electrode based on poly (pyrrole-co-formyl pyrrole) (P(Py-co-Fpy)) multilayered with polystyrene sulfonate (PSS) using layer by layer (LBL) self-assembly technique. By modulating the number layer of deposition, the unique surface properties of P(Py-co-Fpy) are evaluated for bioaffinity. Atomic force microscopy (AFM) demonstrates the controllable morphology of the degree fibril network structure of P(Py-co-Fpy)/PSS surface. The direct adsorption of bovine serum albumin (BSA) onto the top surface of P(Py-co-Fpy)/PSS film by AFM analysis reveals the forming of BSA multilayer at high degree of fibril structure P(Py-co-Fpy). In addition, the adsorbed fibrinogen (Fgn) reveals the reversible conformation change on surface of P(Py-co-Fpy)/PSS. The effect of P(Py-co-Fpy)/PSS morphology on primary mouse embryonic fibroblasts (MEF) is investigated. Cell morphology and proliferation on P(Py-co-Fpy)/PSS LBL film at different number of layer deposition are evaluated, demonstrating that P(Py-co-Fpy)/PSS LBL nano-coating surface is non-cytotoxic as morphology-dependent.
机译:我们展示了一种新型的生物相容性电极纳米涂层材料,该材料基于聚(吡咯-共-甲酰基吡咯)(P(Py-co-Fpy))与聚苯乙烯磺酸盐(PSS)进行多层层合(LBL)自组装技术。通过调节沉积的数量层,可以评估P(Py-co-Fpy)的独特表面特性的生物亲和力。原子力显微镜(AFM)证明了P(Py-co-Fpy)/ PSS表面的原纤维网络结构的可控形态。通过AFM分析将牛血清白蛋白(BSA)直接吸附到P(Py-co-Fpy)/ PSS膜的顶表面上,揭示了在高度原纤维结构P(Py-co-Fpy)下BSA多层的形成。此外,吸附的纤维蛋白原(Fgn)揭示了P(Py-co-Fpy)/ PSS表面可逆的构象变化。研究了P(Py-co-Fpy)/ PSS形态对原代小鼠胚胎成纤维细胞(MEF)的影响。对P(Py-co-Fpy)/ PSS LBL薄膜在不同层数沉积下的细胞形态和增殖进行了评估,证明P(Py-co-Fpy)/ PSS LBL纳米涂层表面具有无细胞毒性。依赖。

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