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Changes in arsenate bioaccumulation, subcellular distribution, depuration, and toxicity in Artemia salina nauplii in the presence of titanium dioxide nanoparticles

机译:在二氧化钛纳米颗粒存在下,在Arsenate生物累积,亚细胞分布,钙化和毒性中的变化

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摘要

Titanium dioxide nanoparticles (nano-TiO2) can absorb ambient pollutants as well as modify their bioavailability in organisms. This study investigated the toxicity, accumulation, subcellular distribution, efflux and biochemical response of arsenate (As(v)) in the nauplii of Artemia salina after nano-TiO2 introduction. Results showed higher As(v) EC_(50) values in nauplii (by a magnitude of from 1.97 to 2.76) compared to the control (nano-TiO2 free) as we increased nano-TiO2 concentrations from 1 to 1000 mg L~(-1). Arsenic (As) accumulation was also significantly facilitated by nano-TiO2. As a result, we found that As(v) bioavailability differed between treatments (experiment and control). Moreover, As efflux rates were from 0.0584 ±0.0083 to 0.3510 ± 0.0523 h~(-1), rising as nano-TiO2 concentrations increased. Along with As adsorption onto nano-TiO2 in exposure media, enhanced efflux could be related to a possible increase in adsorption in the gut of nauplii. Furthermore, we found that the As percentage in biologically active metal (BAM) fractions significantly decreased after the addition of 10 mg L~(-1) nano-TiO2, while the fractional percentage of As increased in cellular debris. These lower As proportions in the sensitive fractions of cells could indicate As(v) toxicity inhibition, which is also supported by the callback of biochemical response in the presence of nano-TiO2. Our results indicated that nano-TiO2 could alleviate As(v) toxicity in A. salina nauplii by enhancing efflux and decreasing the proportion of As in the sensitive fractions of cells. Accordingly, more attention should be paid to the influence of nano-TiO2 on As(v) assimilation in the digestive tract.
机译:二氧化钛纳米颗粒(Nano-TiO2)可以吸收环境污染物,并在生物体中改变它们的生物利用度。本研究调查了纳米TiO2引入后蒿属盐沼的Nauplii中砷酸盐(如(v))的毒性,积累,亚细胞分布,流出和生化反应。结果显示与对照(Nano-TiO2自由)相比,Nauplii中的(v)EC_(50)值较高(V)EC_(50)值,纳米TiO2浓度从1-1000mg L〜( - 1)。纳米TiO2也显着促进砷(AS)积累。结果,我们发现(v)治疗之间的生物利用度有所不同(实验和控制)。此外,由于流出率为0.0584±0.0083至0.3510±0.0523 H〜(-1),随着纳米TiO2浓度的增加而增加。随着在暴露培养基中的吸附到纳米TiO 2上,增强的渗透可能与Nauplii的肠道中吸附的可能增加有关。此外,在加入10mg L〜(-1)纳米TiO 2后,生物活性金属(BAM)级分中的百分比显着降低,而细胞碎片中的分数百分比增加。随着细胞的敏感部分中的比例降低,可以指示(v)毒性抑制,其在纳米TiO 2存在下也通过生物化学反应的回调来支持。我们的结果表明,纳米TiO2可以通过增强流出和降低细胞敏感部分的比例来减轻A. Salina Nauplii的毒性。因此,应更多地关注纳米TiO2对消化道中的(v)同化的影响。

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  • 来源
    《Environmental Science: Nano》 |2017年第6期|共12页
  • 作者单位

    Key Laboratory of Urban Environment and Health Institute of Urban Environment Chinese Academy of Sciences Xiamen 361021 China.;

    Key Laboratory of Urban Environment and Health Institute of Urban Environment Chinese Academy of Sciences Xiamen 361021 China.;

    Key Laboratory of Urban Environment and Health Institute of Urban Environment Chinese Academy of Sciences Xiamen 361021 China.;

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  • 正文语种 eng
  • 中图分类 环境科学、安全科学;
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