Posada Olga M, Tate Rothwelle J, Grant M Helen
Biomedical Engineering Department, University of Strathclyde, Wolfson Centre, Glasgow G4 0NW, UK.
Strathclyde Institute for Pharmacy & Biomedical Sciences, University of Strathclyde, Glasgow G4 0RE, UK.
Toxicol In Vitro. 2015 Mar;29(2):271-80. doi: 10.1016/j.tiv.2014.11.006. Epub 2014 Nov 27.
Hip resurfacing with cobalt-chromium (CoCr) alloy was developed as a surgical alternative to total hip replacement. However, the biological effects of nanoparticles generated by wear at the metal-on-metal articulating surfaces has limited the success of such implants. The aim of this study was to investigate the effects of the combined exposure to CoCr nanoparticles and cobalt ions released from a resurfacing implant on monocytes (U937 cells) and whether these resulted in morphology changes, proliferation alterations, toxicity and cytokine release. The interaction between prior exposure to Co ions and the cellular response to nanoparticulate debris was determined to simulate the situation in patients with metal-on-metal implants receiving a second implant. Effects on U937 cells were mainly seen after 120h of treatment. Prior exposure to Co ions increased the toxic effects induced by the debris, and by Co ions themselves, suggesting the potential for interaction in vivo. Increased TNF-α secretion by resting cells exposed to nanoparticles could contribute to osteolysis processes in vivo, while increased IFN-γ production by activated cells could represent cellular protection against tissue damage. Data suggest that interactions between Co ions and CoCr nanoparticles would occur in vivo, and could threaten the survival of a CoCr metal implant.
钴铬(CoCr)合金髋关节表面置换术是作为全髋关节置换术的一种手术替代方法而开发的。然而,金属对金属关节表面磨损产生的纳米颗粒的生物学效应限制了此类植入物的成功率。本研究的目的是调查联合暴露于CoCr纳米颗粒和表面置换植入物释放的钴离子对单核细胞(U937细胞)的影响,以及这些是否导致形态变化、增殖改变、毒性和细胞因子释放。确定预先暴露于钴离子与细胞对纳米颗粒碎片的反应之间的相互作用,以模拟接受二次植入的金属对金属植入物患者的情况。对U937细胞的影响主要在处理120小时后出现。预先暴露于钴离子会增加碎片以及钴离子本身诱导的毒性作用,表明体内存在相互作用的可能性。暴露于纳米颗粒的静息细胞中TNF-α分泌增加可能会导致体内骨溶解过程,而活化细胞中IFN-γ产生增加可能代表细胞对组织损伤的保护作用。数据表明,钴离子与CoCr纳米颗粒之间会在体内发生相互作用,并可能威胁CoCr金属植入物的存活。