首页> 美国卫生研究院文献>Journal of Clinical Medicine >An In Vitro Study of Osteoblast Response on Fused-Filament Fabrication 3D Printed PEEK for Dental and Cranio-Maxillofacial Implants
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An In Vitro Study of Osteoblast Response on Fused-Filament Fabrication 3D Printed PEEK for Dental and Cranio-Maxillofacial Implants

机译:牙科和颅颌面植入物的熔融长丝制造3D打印PEEK成骨细胞反应的体外研究

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摘要

Polyetheretherketone (PEEK) is a prime candidate to replace metallic implants and prostheses in orthopedic, spine and cranio-maxillofacial surgeries. Fused-filament fabrication (FFF) is an economical and efficient three-dimensional (3D) printing method to fabricate PEEK implants. However, studies pertaining to the bioactivity of FFF 3D printed PEEK are still lacking. In this study, FFF 3D printed PEEK samples were fabricated and modified with polishing and grit-blasting (three alumina sizes: 50, 120, and 250 µm) to achieve varying levels of surface roughness. In vitro cellular response of a human osteosarcoma cell line (SAOS-2 osteoblasts, cell adhesion, metabolic activity, and proliferation) on different sample surfaces of untreated, polished, and grit-blasted PEEK were evaluated. The results revealed that the initial cell adhesion on different sample surfaces was similar. However, after 5 days the untreated FFF 3D printed PEEK surfaces exhibited a significant increase in cell metabolic activity and proliferation with a higher density of osteoblasts compared with the polished and grit-blasted groups (p < 0.05). Therefore, untreated FFF 3D printed PEEK with high surface roughness and optimal printing structures might have great potential as an appropriate alloplastic biomaterial for reconstructive cranio-maxillofacial surgeries.
机译:聚醚醚酮(PEEK)是替代骨科,脊柱和颅颌面外科手术中的金属植入物和假体的主要选择。熔丝制造(FFF)是一种经济有效的三维(3D)打印方法,用于制造PEEK植入物。但是,仍缺乏与FFF 3D打印PEEK的生物活性有关的研究。在这项研究中,制造了FFF 3D打印的PEEK样品,并通过抛光和喷砂处理(三种氧化铝尺寸:50、120和250 µm)进行修饰,以实现不同水平的表面粗糙度。评估了人类骨肉瘤细胞系(SAOS-2成骨细胞,细胞粘附,代谢活性和增殖)在未经处理,抛光和喷砂处理的PEEK的不同样品表面上的体外细胞反应。结果表明,不同样品表面上的初始细胞粘附力相似。但是,与经过抛光和喷砂处理的组相比,未经处理的FFF 3D打印的PEEK表面在5天后显示出细胞代谢活性和增殖的显着增加,并且成骨细胞的密度更高(p <0.05)。因此,具有高表面粗糙度和最佳印刷结构的未经处理的FFF 3D打印PEEK作为重建颅颌面外科手术的合适同种异体生物材料可能具有巨大潜力。

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