Francis Wendy Rachel, Liu Zhao, Owens Sian E, Wang Xiao, Xue Huaming, Lord Alex, Kanamarlapudi Venkateswarlu, Xia Zhidao
Centre for Nanohealth, Swansea University Medical School, Swansea, UK.
Department of Orthopaedic Surgery, Orthopaedic Institute, The First Affiliated Hospital of Soochow University, Suzhou, Jiangsu Province, China.
Biomater Transl. 2021 Jun 28;2(2):143-150. doi: 10.12336/biomatertransl.2021.02.004. eCollection 2021.
Cobalt is one of the main components of metal hip prostheses and cobalt nanoparticles (CoNPs) produced from wear cause inflammation, bone lyses and cytotoxicity at high concentrations. Cobalt ions mimic hypoxia in the presence of normal oxygen levels, and activate hypoxic signalling by stabilising hypoxia inducible transcription factor 1α (HIF1α). This study aimed to assess in vitro the functional role of HIF1α in CoNP induced cellular cytotoxicity. HIF1α, lysosomal pH, tumour necrosis factor α and interleukin 1β expression were analysed in THP-1 macrophages treated with CoNP (0, 10 and 100 μg/mL). HIF1α knock out assays were performed using small interfering RNA to assess the role of HIF1α in CoNP-induced cytotoxicity. Increasing CoNP concentration increased lysosomal activity and acidity in THP-1 macrophages. Higher doses of CoNP significantly reduced cell viability, stimulated caspase 3 activity and apoptosis. Reducing HIF1αactivity increased the pro-inflammatory activity of tumour necrosis factorαand interleukin 1β,but had no significant impact on cellular cytotoxicity. This suggests that whilst CoNP promotes cytotoxicity and cellular inflammation, the apoptotic mechanism is not dependent on HIF1α.
钴是金属髋关节假体的主要成分之一,磨损产生的钴纳米颗粒(CoNP)在高浓度时会引发炎症、骨质溶解和细胞毒性。在正常氧水平下,钴离子会模拟缺氧状态,并通过稳定缺氧诱导转录因子1α(HIF1α)来激活缺氧信号通路。本研究旨在体外评估HIF1α在CoNP诱导的细胞毒性中的功能作用。在用CoNP(0、10和100μg/mL)处理的THP-1巨噬细胞中分析了HIF1α、溶酶体pH值、肿瘤坏死因子α和白细胞介素1β的表达。使用小干扰RNA进行HIF1α敲除试验,以评估HIF1α在CoNP诱导的细胞毒性中的作用。CoNP浓度的增加会提高THP-1巨噬细胞中的溶酶体活性和酸度。更高剂量的CoNP会显著降低细胞活力,刺激半胱天冬酶3活性并引发细胞凋亡。降低HIF1α活性会增加肿瘤坏死因子α和白细胞介素1β的促炎活性,但对细胞毒性没有显著影响。这表明,虽然CoNP会促进细胞毒性和细胞炎症,但凋亡机制并不依赖于HIF1α。