Altınsoy Şakir, Kızılbey Kadriye, İlim Hümeyra Berfin
Biomedical Engineering Department, Faculty of Engineering and Architecture, İstanbul Yeni Yüzyıl University, Zeytinburnu, İstanbul 34010, Türkiye.
Department of Natural Sciences, Faculty of Engineering and Natural Sciences, Acıbadem University, Ataşehir, İstanbul 34752, Türkiye.
Materials (Basel). 2024 Nov 11;17(22):5501. doi: 10.3390/ma17225501.
PEEK-based implant materials have gained increasing attention as an alternative to titanium due to their biocompatibility and bone-like elasticity. However, PEEK's surface quality and wear resistance are lower than those of metals. This study aimed to enhance the bioactivity and surface quality of PEEK by coating it with silver and copper nanoparticles synthesized via a green method using Ehrh. extract. PEEK samples (Ø 25 mm, 3 mm thick) were coated with single and double layers using spray (airbrush-spray) and drop-coating methods. Comprehensive analyses including SEM, EDX, FT-IR, UV-Vis, surface roughness, release studies, antioxidant and cytotoxicity activity, and antibacterial tests were conducted on the coated samples. The results demonstrated that AgNPs and CuNPs coatings significantly improved the surface quality of PEEK. SEM analysis revealed particle sizes ranging from 48 to 160 nm for AgNPs and 50-135 nm for CuNPs, with superior dispersion obtained using the airbrush-spray method. Surface roughness measurements showed a reduction of 17-33% for AgNPs-coated samples and 7-15% for CuNPs-coated samples compared to uncoated PEEK, with airbrush-spray coatings providing smoother surfaces. Antioxidant activity tests indicated that AgNPs provided 35% higher antioxidant activity compared to CuNPs. Additionally, antibacterial tests revealed that AgNPs exhibited a higher zone of inhibition (up to 14 mm for and 18 mm for ) compared to CuNPs, which exhibited zones of 8 mm and 10 mm, respectively. This study concludes that green-synthesized AgNPs, in particular, enhance the bioactivity and surface properties of PEEK, making it a promising material for biomedical applications such as infection-resistant implants.
基于聚醚醚酮(PEEK)的植入材料因其生物相容性和类骨弹性作为钛的替代品而受到越来越多的关注。然而,PEEK的表面质量和耐磨性低于金属。本研究旨在通过用使用 Ehrh. 提取物通过绿色方法合成的银和铜纳米颗粒涂覆PEEK来提高其生物活性和表面质量。使用喷雾(喷枪喷雾)和滴涂方法对PEEK样品(直径25mm,厚3mm)进行单层和双层涂覆。对涂覆后的样品进行了包括扫描电子显微镜(SEM)、能谱分析(EDX)、傅里叶变换红外光谱(FT-IR)、紫外可见光谱(UV-Vis)、表面粗糙度、释放研究、抗氧化和细胞毒性活性以及抗菌测试在内的综合分析。结果表明,银纳米颗粒(AgNPs)和铜纳米颗粒(CuNPs)涂层显著改善了PEEK的表面质量。SEM分析显示,AgNPs的粒径范围为48至160nm,CuNPs的粒径范围为50 - 135nm,使用喷枪喷雾法获得了更好的分散性。表面粗糙度测量显示,与未涂覆的PEEK相比,AgNPs涂覆的样品降低了17 - 33%,CuNPs涂覆的样品降低了7 - 15%,喷枪喷雾涂层提供了更光滑的表面。抗氧化活性测试表明,AgNPs的抗氧化活性比CuNPs高35%。此外,抗菌测试显示,AgNPs的抑菌圈比CuNPs更高(分别为 时高达14mm和 时高达18mm),CuNPs的抑菌圈分别为8mm和10mm。本研究得出结论,特别是绿色合成的AgNPs增强了PEEK的生物活性和表面性能,使其成为用于抗感染植入物等生物医学应用的有前途的材料。