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Investigating the toxicities of different functionalized polystyrene nanoplastics on Daphnia magna

机译:研究不同功能化的聚苯乙烯纳米塑料对水蚤的毒性

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摘要

Nanoplastics (NPs) spread widely with water and air current, and they can accumulate in aquatic organisms, even penetrating biofilms, which may cause persistent toxicity and potential hazards. This current study aimed to reveal the toxicological mechanism of different functionalized polystyrene (PS) NPs on Daphnia magna (D. magna) by investigating toxicity endpoints in individual level and biochemical level. In this study, acute toxicity, behavioral parameters and biomarker responses of D. magna was measured in the exposure of different functionalized PS NPs (plain PS, PS-p-NH2, PS-n-NH2 and PS-COOH). The results indicated that when exposed to the plain PS, ROS induction would activate MAPKs, thereby causing lethality and adverse behavior effects on D. magna; while the functionalized PS NPs were less toxic than the plain PS, especially for PS-p-NH2 which was severely flocculated after exposure, thus showing no immobilization at the investigated concentrations. Also, the antioxidant system was mainly stimulated due to the direct interaction with the cell surface receptor, which was different from the plain PS. Consequently, this work suggests significant effects of functional groups on NPs for environmental toxicity studies, and provides a better understanding of the toxicological mechanism on the toxicity of PS NPs toward D. magna.
机译:纳米塑料(NPs)在水和气流中广泛传播,并且可以在水生生物中积累,甚至渗透到生物膜中,这可能引起持久的毒性和潜在的危害。这项当前的研究旨在通过研究个体水平和生化水平的毒性终点来揭示不同功能化聚苯乙烯(PS)NP对水蚤(D. magna)的毒理机制。在这项研究中,D.magna的急性毒性,行为参数和生物标志物反应是通过不同功能化的PS NPs(普通PS,PS-p-NH2,PS-n-NH2和PS-COOH)的暴露来测量的。结果表明,当暴露于普通PS时,ROS诱导会激活MAPK,从而对D. magna造成致死性和不良行为影响。而功能化的PS NPs的毒性要比普通PS低,特别是对于暴露后严重絮凝的PS-p-NH2,因此在所研究的浓度下没有固定化。同样,抗氧化剂系统主要是由于与细胞表面受体的直接相互作用而受到刺激的,这与普通的PS不同。因此,这项工作表明官能团对NPs的环境毒性研究有重大影响,并提供了对PS NPs对D. magna毒性的毒理学机制的更好理解。

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