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早期发育性纳米塑料暴露会扰乱与压力抵抗下降相关的昼夜节律,并通过 C. elegans 中的 DAF-16 和 PRDX-2 进行调节。

Early developmental nanoplastics exposure disturbs circadian rhythms associated with stress resistance decline and modulated by DAF-16 and PRDX-2 in C. elegans.

机构信息

Department of Bioenvironmental Systems Engineering, National Taiwan University, No. 1, Section 4, Roosevelt Road, Taipei 106, Taiwan.

Institute of Molecular and Cellular Biology, National Taiwan University, No. 1, Section 4, Roosevelt Road, Taipei 106, Taiwan.

出版信息

J Hazard Mater. 2022 Feb 5;423(Pt A):127091. doi: 10.1016/j.jhazmat.2021.127091. Epub 2021 Sep 1.

Abstract

Plastics pollution is an emerging environmental problem and nanoplastics (NPs) toxicity has received great concern. This study investigated whether early developmental exposure to polystyrene NPs influence the circadian rhythms and the possible underlying mechanisms in C. elegans. We show that early developmental NPs exposure disturbs circadian rhythms in C. elegans and ASH neurons and G protein-coupled receptor kinase (GRK-2) are involved in the level of chemotaxis response. A higher bioconcentration factor in entrained worms was observed, suggesting that circadian interference results in increased NPs bioaccumulation in C. elegans. In addition, we show that reactive oxygen species produced by NPs exposure and peroxiredoxin-2 (PRDX-2) are related to the disturbed circadian rhythms. We further show that the NPs-induced circadian rhythms disruption is associated with stress resistance decline and modulated by transcription DAF-16/FOXO signaling. Because circadian rhythms are found in most living organisms and the fact that DAF-16 and PRDX-2 are evolutionarily conserved, our findings suggest a possible negative impact of NPs on circadian rhythms and stress resistance in higher organisms including humans.

摘要

塑料污染是一个新出现的环境问题,纳米塑料(NPs)的毒性引起了极大的关注。本研究探讨了早期发育阶段暴露于聚苯乙烯 NPs 是否会影响秀丽隐杆线虫的昼夜节律和可能的潜在机制。我们发现,早期发育阶段 NPs 的暴露会扰乱秀丽隐杆线虫和 ASH 神经元的昼夜节律,G 蛋白偶联受体激酶(GRK-2)参与了趋化反应的水平。在被驯化的蠕虫中观察到更高的生物浓缩系数,这表明昼夜节律的干扰导致 NPs 在秀丽隐杆线虫中的生物积累增加。此外,我们还表明,NPs 暴露产生的活性氧物质和过氧化物酶-2(PRDX-2)与昼夜节律紊乱有关。我们进一步表明,NPs 诱导的昼夜节律紊乱与应激抵抗能力下降有关,并受转录因子 DAF-16/FOXO 信号的调节。由于昼夜节律存在于大多数生物体中,并且 DAF-16 和 PRDX-2 在进化上是保守的,我们的研究结果表明 NPs 可能对包括人类在内的高等生物的昼夜节律和应激抵抗能力产生负面影响。

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