Effects of selenium oxide nanoparticles on the morphofunctional state of the liver: Experimental data

Y. Ryabova, М.P. Sutunkova, А.I. Chemezov, I. Minigalieva, Т.V. Bushueva, I. G. Shelomentsev, S. Klinova, R. R. Sakhautdinova
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Abstract

Copper smelters are the sources of emission of complex aerosols containing, inter alia, selenium-containing nanoparticles (NPs). It is very difficult to adequately estimate the hazard posed by such particles since available data on them are scarce and have been obtained in comparatively few experimental studies with rather contradicting results. The aim of our study was to determine toxic health effects of selenium-containing nanoparticles more precisely with a focus on liver as a target organ. Liver toxicity following exposure to suspended selenium oxide nanoparticles was investigated in a sub-chronic experiment on outbred male albino rats. The suspension was prepared by laser ablation of 99%-pure selenium plates. We examined ultrastructural changes by electron microscopy, did cytological and histological analyses of the liver, biochemical blood testing and metabolomic blood screening. We observed lesions in the liver and inhibited secretory functions at various levels, from molecular to organismic, in the exposed animals. The microscopic examination showed that the number of normal and normal-vesicular mitochondria in liver cells went down by 7.78 %, p < 0.05; the metabolomic screening established lower levels of glycocholic acid in blood serum, р < 0.001; levels of alanine aminotransferase in blood serum grew by 30 %, p < 0.05; the number of acaryotic hepatocytes demonstrated a 3.1-fold increase, p < 0.05, according to the results of histological assessment of liver specimens. The touch smears of the liver examined showed a 2.2-fold increase in the number of degenerated hepatocytes (p < 0.05). These experimental data can be used to estimate a potential hazard of selenium-containing nanoparticles within social-hygienic monitoring and biomedical predictions of health damage caused by exposure to such NPs. Altered levels of lysophos-phatidylinositol can be a marker of exposure to the examined NPs and necessitate the search for early diagnostic predictors of associated health disorders.
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氧化硒纳米颗粒对肝脏形态功能状态的影响:实验数据
铜冶炼厂是复杂气溶胶的排放源,其中包括含硒纳米颗粒。很难充分估计这种颗粒造成的危害,因为关于它们的现有数据很少,而且在相对较少的实验研究中获得的结果相当矛盾。我们研究的目的是更准确地确定含硒纳米颗粒对健康的毒性影响,重点是将肝脏作为靶器官。在一项亚慢性实验中,对雄性白化大鼠暴露于悬浮氧化硒纳米颗粒后的肝脏毒性进行了研究。通过激光烧蚀99%纯度的硒板制备悬浮液。我们用电子显微镜检查了超微结构的变化,对肝脏进行了细胞学和组织学分析,进行了血液生化测试和代谢组学血液筛查。我们在暴露的动物中观察到肝脏病变,并在从分子到组织的不同水平上抑制分泌功能。显微镜检查显示,肝细胞中正常和正常的囊泡线粒体数量下降了7.78%,p<0.05;代谢组学筛查确定血清中甘胆酸水平较低,р<0.001;血清丙氨酸氨基转移酶水平升高30%,p<0.05;根据肝脏标本的组织学评估结果,无螨肝细胞的数量增加了3.1倍,p<0.05。所检查的肝脏触摸涂片显示,退化肝细胞的数量增加了2.2倍(p<0.05)。这些实验数据可用于在社会卫生监测和生物医学预测中估计含硒纳米颗粒对暴露于此类纳米颗粒造成的健康损害的潜在危害。溶血磷脂酰肌醇水平的改变可能是暴露于所检查的NP的标志,并需要寻找相关健康障碍的早期诊断预测因素。
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来源期刊
Health Risk Analysis
Health Risk Analysis Medicine-Health Policy
CiteScore
1.30
自引率
0.00%
发文量
38
审稿时长
20 weeks
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