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Cell attachment functionality of bioactive conducting polymers for neural interfaces.

机译:用于神经界面的生物活性导电聚合物的细胞附着功能。

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Bioactive coatings for neural electrodes that are tailored for cell interactions have the potential to produce superior implants with improved charge transfer capabilities. In this study synthetically produced anionically modified laminin peptides DEDEDYFQRYLI and DCDPGYIGSR were used to dope poly(3,4-ethylenedioxythiophene) (PEDOT) electrodeposited on platinum (Pt) electrodes. Performance of peptide doped films was compared to conventional polymer PEDOT/paratoluene sulfonate (pTS) films using SEM, XPS, cyclic voltammetry, impedance spectroscopy, mechanical hardness and adherence. Bioactivity of incorporated peptides and their affect on cell growth was assessed using a PC12 neurite outgrowth assay. It was demonstrated that large peptide dopants produced softer PEDOT films with a minimal decrease in electrochemical stability, compared to the conventional dopant, pTS. Cell studies revealed that the YFQRYLI ligand retained neurite outgrowth bioactivity when DEDEDYFQRYLI was used as a dopant, but the effect was strongly dependant on initial cell attachment. Alternate peptide dopant, DCDPGYIGSR was found to impart superior cell attachment properties when compared to DEDEDYFQRYLI, but attachment on both peptide doped polymers could be enhanced by coating with whole native laminin.
机译:专为细胞相互作用而定制的神经电极生物活性涂层具有生产具有改善电荷转移能力的卓越植入物的潜力。在这项研究中,使用合成产生的阴离子修饰层粘连蛋白肽DEDEDYFQRYLI和DCDPGYIGSR掺杂了电沉积在铂(Pt)电极上的聚(3,4-乙撑二氧噻吩)(PEDOT)。使用SEM,XPS,循环伏安法,阻抗谱,机械硬度和附着力,将掺肽薄膜的性能与常规聚合物PEDOT /对甲苯磺酸盐(pTS)薄膜进行了比较。使用PC12神经突生长测定法评估掺入的肽的生物活性及其对细胞生长的影响。结果表明,与传统的掺杂剂pTS相比,大的肽掺杂剂可产生更柔软的PEDOT膜,且电化学稳定性的下降最小。细胞研究表明,当DEDEDYFQRYLI用作掺杂剂时,YFQRYLI配体保留了神经突向外生长的生物活性,但其作用强烈依赖于初始细胞附着。与DEDEDYFQRYLI相比,发现了替代的肽掺杂剂DCDPGYIGSR具有优异的细胞附着性能,但是可以通过涂覆整个天然层粘连蛋白来增强两种肽掺杂聚合物上的附着力。

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