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首页> 外文期刊>Brazilian Journal of Medical and Biological Research >In vitro studies of multiwalled carbon nanotube/ultrahigh molecular weight polyethylene nanocomposites with osteoblast-like MG63 cells
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In vitro studies of multiwalled carbon nanotube/ultrahigh molecular weight polyethylene nanocomposites with osteoblast-like MG63 cells

机译:具有成骨细胞样Mg63细胞的多壁碳纳米管/超高分子量聚乙烯纳米复合材料的体外研究

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Carbon nanotubes are highly versatile materials; new applications using them are continuously being developed. Special attention is being dedicated to the possible use of multiwalled carbon nanotubes in biomaterials contacting with bone. However, carbon nanotubes are also controversial in regards to effects exerted on living organisms. Carbon nanotubes can be used to improve the tribological properties of polymer/composite materials. Ultrahigh molecular weight polyethylene (UHMWPE) is a polymer widely used in orthopedic applications that imply wear and particle generation. We describe here the response of human osteoblast-like MG63 cells after 6 days of culture in contact with artificially generated particles from both UHMWPE polymer and multiwalled carbon nanotubes (MWCNT)/UHMWPE nanocomposites. This novel composite has superior wear behavior, having thus the potential to reduce the number of revision hip arthroplasty surgeries required by wear failure of acetabular cups and diminish particle-induced osteolysis. The results of an in vitro study of viability and proliferation and interleukin-6 (IL-6) production suggest good cytocompatibility, similar to that of conventional UHMWPE (WST-1 assay results are reported as percentage of control ± SD: UHMWPE = 96.19 ± 7.92, MWCNT/UHMWPE = 97.92 ± 8.29%; total protein: control = 139.73 ± 10.78, UHMWPE = 137.07 ± 6.17, MWCNT/UHMWPE = 163.29 ± 11.81 μg/mL; IL-6: control = 90.93 ± 10.30, UHMWPE = 92.52 ± 11.02, MWCNT/UHMWPE = 108.99 ± 9.90 pg/mL). Standard cell culture conditions were considered as control. These results, especially the absence of significant elevation in the osteolysis inductor IL-6 values, reinforce the potential of this superior wear-resistant composite for future orthopedic applications, when compared to traditional UHMWPE.
机译:碳纳米管是高度通用的材料;使用它们的新应用程序不断开发。特别注意力致力于在与骨骼接触的生物材料中可能使用多壁碳纳米管。然而,碳纳米管在生物体上施加的效果方面也是有争议的。碳纳米管可用于改善聚合物/复合材料的摩擦学性质。超高分子量聚乙烯(UHMWPE)是广泛应用于嵌入磨损和颗粒的矫形应用中的聚合物。在此描述人骨细胞样Mg63细胞在6天后与来自UHMWPE聚合物和多壁的碳纳米管(MWCNT)/ UHMWPE纳米复合材料接触的培养后6天后的培养物后的响应。这种新型复合材料具有卓越的磨损行为,因此具有减少髋臼杯的磨损失效所需的修订髋关节置换术患者的潜力和减少颗粒诱导的骨溶解。活力和增殖和白细胞介素-6(IL-6)的体外研究的结果表明了良好的细胞相容性,类似于常规的UHMWPE(WST-1测定结果,报告为控制±SD的百分比:UHMWPE = 96.19± 7.92,MWCNT / UHMWPE = 97.92±8.29%;总蛋白质:控制= 139.73±10.78,UHMWPE = 137.07±6.17,MWCNT / UHMWPE = 163.29±11.81μg/ ml; IL-6:CONTROL = 90.93±10.30,UHMWPE = 92.52 ±11.02,mwcnt / uhmwpe = 108.99±9.90 pg / ml)。标准细胞培养条件被认为是对照。这些结果,特别是在骨溶解电感器IL-6值中没有显着升高,加强了与传统的UHMWPE相比,加强了这种卓越的耐磨复合材料的潜在耐磨复合材料。

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