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体内评估银纳米颗粒诱导的活性氧揭示了线虫秀丽隐杆线虫细胞氧化还原状态的组织特异性影响。

In vivo assessment of silver nanoparticle induced reactive oxygen species reveals tissue specific effects on cellular redox status in the nematode Caenorhabditis elegans.

机构信息

Norwegian University of Life Sciences, Faculty of Environmental Sciences and Natural Resource Management, P.O. BOX 5003 NMBU, No-1432 Ås, Norway.

Norwegian University of Life Sciences, Faculty of Environmental Sciences and Natural Resource Management, P.O. BOX 5003 NMBU, No-1432 Ås, Norway.

出版信息

Sci Total Environ. 2020 Jun 15;721:137665. doi: 10.1016/j.scitotenv.2020.137665. Epub 2020 Mar 2.

DOI:10.1016/j.scitotenv.2020.137665
PMID:32169641
Abstract

The current study provides an in vivo analysis of the production of reactive oxygen species (ROS) and oxidative stress in the nematode Caenorhabditis elegans following exposure to EU reference silver nanoparticles NM300K and AgNO. Induction of antioxidant defenses was measured through the application of a SOD-1 reporter, and the HyPer and GRX biosensor strains to monitor changes in the cellular redox state. Both forms of Ag resulted in an increase in sod-1 expression, elevated HO levels and an imbalance in the cellular GSSG/GSH redox status. Microscopy analysis of the strains revealed that AgNO induced ROS-related effects in multiple tissues, including the pharynx, intestinal cells and muscle tissues. In contrast, NM300K resulted in localized ROS production and oxidative stress, specifically in tissues surrounding the intestinal lumen. This indicates that Ag from AgNO exposure was readily transported across the whole body, while Ag or ROS from NM300K exposure was predominantly confined within the luminal tissues. Concentrations resulting in an increase in ROS production and changes in GSSG/GSH ratio were in line with the levels associated with observed physiological toxic effects. However, sod-1 was not induced at the lowest Ag concentrations, although reprotoxicity was seen at these levels. While both forms of Ag caused oxidative stress, impaired development, and reprotoxicity, the results suggest different involvement of ROS production to the toxic effects of AgNOversus NM300K.

摘要

本研究通过 SOD-1 报告基因、HyPer 和 GRX 生物传感器株系的应用,对暴露于 EU 参考银纳米颗粒 NM300K 和 AgNO 后的秀丽隐杆线虫体内活性氧(ROS)和氧化应激的产生进行了体内分析,以测量抗氧化防御的诱导。这两种形式的 Ag 均导致 sod-1 表达增加、HO 水平升高以及细胞 GSSG/GSH 氧化还原状态失衡。对这些菌株的显微镜分析表明,AgNO 诱导了包括咽部、肠细胞和肌肉组织在内的多种组织中的 ROS 相关效应。相比之下,NM300K 导致局部 ROS 产生和氧化应激,特别是在肠腔周围的组织中。这表明 AgNO 暴露释放的 Ag 可轻易地在全身范围内运输,而 NM300K 暴露释放的 Ag 或 ROS 主要局限于肠腔组织内。导致 ROS 产生增加和 GSSG/GSH 比值变化的浓度与观察到的生理毒性作用相关的水平一致。然而,在最低 Ag 浓度下并没有诱导 sod-1,但在这些水平下观察到生殖毒性。尽管这两种形式的 Ag 均引起氧化应激、发育受损和生殖毒性,但结果表明,与 NM300K 相比,AgNO 对 ROS 产生的不同参与与 Ag 的毒性作用有关。

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