Environmental Health Science and Research Bureau, Health Canada, Ottawa, ON K1A 0K9, Canada.
Department of Biology, University of Ottawa, Ottawa, ON K1N 6N5, Canada.
Int J Mol Sci. 2023 Dec 30;25(1):529. doi: 10.3390/ijms25010529.
The impact of solubility on the toxicity of metal oxide nanoparticles (MONPs) requires further exploration to ascertain the impact of the dissolved and particulate species on response. In this study, FE1 mouse lung epithelial cells were exposed for 2-48 h to 4 MONPs of varying solubility: zinc oxide, nickel oxide, aluminum oxide, and titanium dioxide, in addition to microparticle analogues and metal chloride equivalents. Previously published data from FE1 cells exposed for 2-48 h to copper oxide and copper chloride were examined in the context of exposures in the present study. Viability was assessed using Trypan Blue staining and transcriptomic responses via microarray analysis. Results indicate material solubility is not the sole property governing MONP toxicity. Transcriptional signaling through the 'HIF-1α Signaling' pathway describes the response to hypoxia, which also includes genes associated with processes such as oxidative stress and unfolded protein responses and represents a conserved response across all MONPs tested. The number of differentially expressed genes (DEGs) in this pathway correlated with apical toxicity, and a panel of the top ten ranked DEGs was constructed (Hmox1, Hspa1a, Hspa1b, Mmp10, Adm, Serpine1, Slc2a1, Egln1, Rasd1, Hk2), highlighting mechanistic differences among tested MONPs. The HIF-1α pathway is proposed as a biomarker of MONP exposure and toxicity that can help prioritize MONPs for further evaluation and guide specific testing strategies.
需要进一步探索溶解度对金属氧化物纳米颗粒(MONP)毒性的影响,以确定溶解态和颗粒态物质对反应的影响。在这项研究中,FE1 小鼠肺上皮细胞分别暴露于 4 种不同溶解度的 MONP(氧化锌、氧化镍、氧化铝和二氧化钛)以及微粒类似物和金属氯化物等价物中 2-48 小时。FE1 细胞暴露于氧化铜和氯化铜 2-48 小时的先前发表的数据,在本研究的暴露背景下进行了检验。采用台盼蓝染色法评估细胞活力,采用微阵列分析评估转录组反应。结果表明,材料的溶解度并不是唯一决定 MONP 毒性的特性。通过“HIF-1α 信号通路”描述缺氧反应的转录信号,该通路还包括与氧化应激和未折叠蛋白反应等过程相关的基因,代表了所有测试的 MONP 之间的保守反应。该通路中差异表达基因(DEGs)的数量与细胞毒性相关,构建了一个由前 10 个排名最高的 DEGs 组成的面板(Hmox1、Hspa1a、Hspa1b、Mmp10、Adm、Serpine1、Slc2a1、Egln1、Rasd1、Hk2),突出了测试的 MONP 之间的机制差异。HIF-1α 通路被提议作为 MONP 暴露和毒性的生物标志物,可以帮助优先考虑 MONP 进行进一步评估,并指导特定的测试策略。