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An electrochemical, in vitro bioactivity, and quantum chemical approach to nanostructured copolymer coatings for orthopedic applications

机译:用于骨科应用的纳米结构共聚物涂层的电化学,体外生物活性和量子化学方法

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摘要

Conducting polymers represent a promising platform toward coatingmaterials for implant technologies in recent years. In this investigation, copolymers based on pyrrole (Py) and 3,4-ethylenedioxythiophene (EDOT) were electrodeposited on 316L SS with various feed ratio of Py/ EDOT through cyclic voltammetric technique. The surface and chemical structure of the synthesized copolymers were analyzed by SEM, AFM, FT-IR, and ~1H NMR spectroscopic analysis. The influence of comonomer feed ratio on electrochemical corrosion behavior was investigated in stimulated body fluid. A significant lower corrosion current with nobler shift in corrosion potential and higher charge transfer resistance values of copolymer-coated 316L SS were obtained and the comparisons were made with uncoated as well as their homo polymers.Furthermore, in vitro cell culture studieswere performed on MG63 osteoblast human cells to confirm the biocompatibility of copolymer coatings. Quantum chemical approach was employed to verify the obtained experimental outcomes. As a result of this investigation, it was concluded that the performance of coatingswas strongly dependent to the monomer feed ratio and the copolymer synthesized with 50:50 feed ratio showed high corrosion protection efficiency with improved cell growth on MG63 osteoblast cell.
机译:导电聚合物代表了近年来用于植入技术的涂层材料的有前途的平台。在这项研究中,通过循环伏安法将基于吡咯(Py)和3,4-乙撑二氧噻吩(EDOT)的共聚物以各种Py / EDOT进料比电沉积在316L SS上。合成的共聚物的表面和化学结构通过SEM,AFM,FT-IR和〜1H NMR光谱分析。研究了共聚单体进料比对受激体液中电化学腐蚀行为的影响。获得了显着较低的腐蚀电流,较高的腐蚀电位迁移率和较高的共聚物涂层316L SS电荷转移电阻值,并与未涂层及其均聚物进行了比较。此外,还对MG63成骨细胞进行了体外细胞培养研究人体细胞,以确认共聚物涂层的生物相容性。采用量子化学方法来验证所获得的实验结果。研究结果表明,涂​​层的性能在很大程度上取决于单体的进料比,以50:50的进料比合成的共聚物在MG63成骨细胞上显示出高的防腐性能,并改善了细胞的生长。

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