首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Neurotoxicity, Behavior, and Lethal Effects of Cadmium, Microplastics, and Their Mixtures on Pomatoschistus microps Juveniles from Two Wild Populations Exposed under Laboratory Conditions―Implications to Environmental and Human Risk Assessment
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Neurotoxicity, Behavior, and Lethal Effects of Cadmium, Microplastics, and Their Mixtures on Pomatoschistus microps Juveniles from Two Wild Populations Exposed under Laboratory Conditions―Implications to Environmental and Human Risk Assessment

机译:镉,微塑料及其混合物对实验室条件下暴露于两个野生种群的线虫吸虫少年的神经毒性,行为和致死作用-对环境和人类风险评估的意义

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摘要

Microplastics (MPs) were found to modulate the toxicity of other pollutants but the knowledge on the topic is still limited. The goals of this study were to investigate the short-term toxicity of cadmium (Cd) to wild Pomatochistus microps juveniles, the potential modulation of acute Cd toxicity by 1–5 µm polyethylene MPs in this species, and possible differences of sensitivity to Cd and MPs-Cd mixtures between juveniles from two distinct wild populations. Juveniles were collected in the estuaries of Minho (M-est) and Lima (L-est) Rivers (NW Portugal). One 96 h bioassay with M-est juveniles and another one with L-est juveniles were carried out in laboratory conditions. Each bioassay had 12 treatments: control, 5 Cd concentrations, 1 MPs concentration, and 5 MPs-Cd mixtures. No significant differences in Cd-induced mortality between juveniles from distinct estuaries or between juveniles exposed to Cd alone and those exposed to MPs-Cd mixtures were found. The total 96h LC10 and LC50 of Cd alone were 2 mg/L (95% CI: 0–4 mg/L) and 8 mg/L (95% CI: 2–17 mg/L), respectively. Cd alone significantly decreased the post-exposure predatory performance (PEPP) of M-est (≥6 mg/L) and L-est juveniles (≥3 mg/L), and acetylcholinesterase (AChE) activity of M-est juveniles (13 mg/L). MPs alone (0.14 mg/L) significantly reduced the PEPP and AChE activity of L-est juveniles but not of M-est juveniles. MPs-Cd mixtures (3–13 mg/L of Cd + 0.14 mg/L of MPs) significantly inhibited the PEPP of juveniles from both estuaries and AChE of L-est estuary juveniles but not of M-est juveniles. Evidences of toxicological interactions, namely antagonism, between MPs and Cd were found. Overall, the results indicate that MPs modulated the sub-lethal toxic effects of Cd in wild P. microps juveniles, especially neurotoxicity. Moreover, the environmental conditions of the natural habitats to which juveniles were exposed during pre-developmental phases influence the sub-lethal toxicity of Cd, MPs, and their mixtures. The implications to environmental and human risk assessment are discussed and further research is needed.
机译:人们发现微塑料(MPs)可以调节其他污染物的毒性,但有关该主题的知识仍然有限。这项研究的目的是调查镉对野生波马奇鱼微生鱼的短期毒性,该物种中1-5 µm聚乙烯MP对急性镉毒性的潜在调节作用以及对镉和镉敏感性的可能差异。来自两个不同野生种群的幼鱼之间的MPs-Cd混合物。在Minho(M-est)和Lima(L-est)河(NW葡萄牙)的河口收集了幼鱼。在实验室条件下进行了一次96小时的M-est少年生物测定和另一次L-est少年生物测定。每个生物测定法有12种处理方法:对照,5 Cd浓度,1 MPs浓度和5 MPs-Cd混合物。在不同河口的幼鱼之间或仅接触Cd的幼鱼和接触MPs-Cd混合物的幼鱼之间,Cd致死率均无显着差异。单独的镉的96小时LC10和LC50分别为2 mg / L(95%CI:0–4 mg / L)和8 mg / L(95%CI:2–17 mg / L)。仅镉会显着降低M-est(≥6mg / L)和L-est少年(≥3mg / L)的暴露后掠食性表现(PEPP),以及M-est少年的乙酰胆碱酯酶(AChE)活性(13毫克/升)。单独的MPs(0.14 mg / L)会显着降低L级少年的PEPP和AChE活性,而M级少年则没有。 MPs-Cd混合物(3–13 mg / L的Cd + 0.14 mg / L的MPs)显着抑制L est河口幼鱼的河口和AChE的PEPP,而M est幼鱼则没有。发现了MPs和Cd之间毒理学相互作用的证据,即拮抗作用。总的来说,结果表明,MPs调节了镉对野生假单胞菌少年的亚致死毒性作用,尤其是神经毒性。此外,在发育前阶段,少年接触过的自然栖息地的环境条件会影响Cd,MPs及其混合物的亚致死毒性。讨论了对环境和人类风险评估的影响,需要进一步研究。

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