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单独及与镉联合存在时,底泥中聚苯乙烯纳米塑料的慢性毒性效应对关键底栖物种铜锈环棱螺的影响。

Chronic toxicity effects of sediment-associated polystyrene nanoplastics alone and in combination with cadmium on a keystone benthic species Bellamya aeruginosa.

机构信息

College of Biology and Environmental Sciences, Jishou University, Jishou 416000, People's Republic of China.

College of Biology and Environmental Sciences, Jishou University, Jishou 416000, People's Republic of China.

出版信息

J Hazard Mater. 2022 Jul 5;433:128800. doi: 10.1016/j.jhazmat.2022.128800. Epub 2022 Mar 27.

Abstract

Nanoplastics (NPs) are emerging pollutants that may adversely affect aquatic fauna. However, the adverse effects of NPs and heavy metals, both alone and combined on freshwater benthic fauna remain largely unclear. Here, we performed a 28-day sediment toxicity test with Bellamya aeruginosa to examine the effects of exposure to polystyrene nanoplastics (PSNPs) and co-exposure to PSNPs and Cd. Cd bioavailability, the bioaccumulation of PSNPs and Cd, and changes in multiple biomarkers were determined. The results revealed that PSNPs significantly increased Cd bioavailability and thereby facilitated Cd bioaccumulation; however, PSNPs displayed a negligible vector role in Cd uptake by B. aeruginosa. The results demonstrated that PSNPs can accumulate in B. aeruginosa and induce oxidative damage and DNA damage. Co-exposure to PSNPs and Cd significantly enhanced oxidative damage and DNA damage and reduced metallothionein levels. The integrated biomarker response index analysis showed that co-exposure to PSNPs and Cd considerably increased toxic stress in B. aeruginosa compared to single PSNPs or Cd exposure, suggesting that PSNPs may have a synergistic effect with Cd. Collectively, our findings highlight that PSNPs not only cause toxicity to B. aeruginosa but also significantly enhance the toxicity of Cd by increasing Cd bioavailability in the sediment.

摘要

纳米塑料(NPs)是新兴的污染物,可能对水生动物产生不利影响。然而,纳米颗粒和重金属单独及联合作用对淡水底栖动物的不良影响在很大程度上仍不清楚。在这里,我们用铜锈环棱螺进行了 28 天的沉积物毒性试验,以研究暴露于聚苯乙烯纳米塑料(PSNPs)和 PSNPs 与 Cd 共暴露对其的影响。测定了 Cd 的生物可利用性、PSNPs 和 Cd 的生物累积、以及多种生物标志物的变化。结果表明,PSNPs 显著增加了 Cd 的生物可利用性,从而促进了 Cd 的生物累积;然而,PSNPs 在铜锈环棱螺对 Cd 的摄取中表现出微不足道的载体作用。结果表明,PSNPs 可以在铜锈环棱螺中积累,并诱导氧化损伤和 DNA 损伤。PSNPs 与 Cd 的共暴露显著增强了氧化损伤和 DNA 损伤,并降低了金属硫蛋白水平。综合生物标志物响应指数分析表明,与单一 PSNPs 或 Cd 暴露相比,PSNPs 与 Cd 的共暴露大大增加了铜锈环棱螺的毒性应激,表明 PSNPs 与 Cd 可能具有协同作用。总之,我们的研究结果表明,PSNPs 不仅对铜锈环棱螺造成毒性,而且通过增加沉积物中 Cd 的生物可利用性,显著增强了 Cd 的毒性。

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