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Toxicity and oxidative stress responses induced by nano-and micro-CoCrMo particles

机译:纳米和微卡斗草颗粒诱导的毒性和氧化应激反应

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摘要

Metal implants are used routinely during total hip and knee replacements and are typically composed of cobalt chromium molybdenum (CoCrMo) alloys. CoCrMo "wear particles'', in the nano-and micro-size ranges, are generated in situ. Meanwhile, occupational exposure to CoCrMo particles may be associated with the development of industrial dental worker's pneumoconiosis. In this study, we report that both nano-and micro-CoCrMo induced a time and dose-dependent toxicity in various cell types (i.e. lung epithelial cells, osteoblasts, and macrophages), and the effects of particle size on cell viability and oxidative responses were interesting and cell specific. Our findings highlight the potential roles that nano-and micro-CoCrMo, whether exposure is due to inhalation or implant wear, and the associated oxidative stress may play in the increasingly reported implant loosening, osteolysis, and systemic complications in orthopaedic patients, and may explain the risk of lung diseases in dental workers.
机译:金属植入物在总臀部和膝关节置换期间常规使用,并且通常由钴铬钼(CocroMo)合金组成。 COCRMO在纳米和微尺寸范围内的“磨损颗粒”是原位产生的。同时,对COCRMO颗粒的职业暴露可能与工业牙科工业肺炎的发展有关。在这项研究中,我们报告说纳米 - 微cocro在各种细胞类型中诱导时间和剂量依赖性毒性(即肺上皮细胞,成骨细胞和巨噬细胞),并且粒度对细胞活力和氧化反应的影响是有趣的和细胞特异性。我们的研究结果突出了纳米和微卡斗草是由于吸入或植入磨损的潜在作用,以及相关的氧化应激可能在越来越报告的植入物松动,骨解和整形外科患者的全身并发症中起作用,并可解释风险牙科工人的肺病。

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