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In vitro macrophage response to nanometer-size particles from materials used in hip implants.

机译:髋关节植入物中使用的材料对纳米级颗粒的体外巨噬细胞反应。

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摘要

Wear particle-induced inflammation leading to periprosthetic osteolysis remains a major cause of hip implant failure. As polyethylene particles from conventional metal-on-polyethylene implants have been associated with these failures, an interest in lower wear metal-on-metal (MM) bearings has emerged. However, the biological effects of nanometer-size chromium oxide particles, predominant type of wear particles produced by MM implants, remain mostly unknown. Therefore, this study aimed to determine the cytotoxicity of nanometer-size Cr2O3 particles on macrophages in vitro, by analyzing their effects on cell mortality and cytokine release and comparing them with those of similarly-sized alumina (Al2O3) particles (known to be relatively bioinert). Results showed that at high concentrations, nanometer-size Cr2O3 particles can be cytotoxic to macrophages, inducing significant decreases in total cell numbers and increases in necrosis. Results also showed that, at high concentrations, the cytotoxicity of Cr 2O3 particles was overall higher than that of Al2O 3 particles, even though Cr2O3 and Al2O 3 are both stable forms of ceramic materials. However, it appeared to be lower than that of previously reported conventional polyethylene and CoCrMo particles. Therefore, chromium oxide particles may not be the main culprit in initiating the inflammatory reaction in MM periprosthetic tissues.
机译:磨损引起的炎症导致假体周围骨质溶解仍然是髋关节植入物衰竭的主要原因。由于来自传统的金属对聚乙烯植入物的聚乙烯颗粒与这些故障有关,因此人们对低磨损金属对金属(MM)轴承产生了兴趣。然而,纳米尺寸的氧化铬颗粒(由MM植入物产生的主要磨损颗粒类型)的生物效应仍然未知。因此,本研究旨在通过分析纳米级Cr2O3颗粒对细胞死亡和细胞因子释放的影响,并将其与相似尺寸的氧化铝(Al2O3)颗粒(已知具有相对生物惰性)进行比较,从而确定纳米级Cr2O3颗粒对巨噬细胞的体外细胞毒性。 )。结果表明,在高浓度下,纳米级的Cr2O3颗粒可对巨噬细胞产生细胞毒性,导致总细胞数显着减少和坏死增加。结果还表明,即使Cr2O3和Al2O3都是陶瓷材料的稳定形式,高浓度时Cr 2O3颗粒的细胞毒性也总体上高于Al2O 3颗粒。但是,它似乎低于先前报道的常规聚乙烯和CoCrMo颗粒。因此,氧化铬颗粒可能不是引发MM假体周围组织炎症反应的主要元凶。

著录项

  • 作者

    VanOs, Robilyn.;

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Engineering Biomedical.;Engineering Materials Science.
  • 学位 M.A.Sc.
  • 年度 2011
  • 页码 89 p.
  • 总页数 89
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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