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一种现实的持久性有机污染物混合物通过抑制凝聚素I复合物影响斑马鱼的发育、行为,尤其是眼睛形成。

A Realistic Mixture of Persistent Organic Pollutants Affects Zebrafish Development, Behavior, and Specifically Eye Formation by Inhibiting the Condensin I Complex.

作者信息

Guerrero-Limón Gustavo, Nivelle Renaud, Bich-Ngoc Nguyen, Duy-Thanh Dinh, Muller Marc

机构信息

Laboratory for Organogenesis and Regeneration, GIGA Institute, University of Liège, 4000 Liège, Belgium.

VNU School of Interdisciplinary Studies, Vietnam National University (VNU), Hanoi 10000, Vietnam.

出版信息

Toxics. 2023 Apr 9;11(4):357. doi: 10.3390/toxics11040357.

Abstract

Persistent organic pollutants (POPs) are posing major environmental and health threats due to their stability, ubiquity, and bioaccumulation. Most of the numerous studies of these compounds deal with single chemicals, although real exposures always consist of mixtures. Thus, using different tests, we screened the effects on zebrafish larvae caused by exposure to an environmentally relevant POP mixture. Our mixture consisted of 29 chemicals as found in the blood of a Scandinavian human population. Larvae exposed to this POP mix at realistic concentrations, or sub-mixtures thereof, presented growth retardation, edemas, retarded swim bladder inflation, hyperactive swimming behavior, and other striking malformations such as microphthalmia. The most deleterious compounds in the mixture belong to the per- and polyfluorinated acids class, although chlorinated and brominated compounds modulated the effects. Analyzing the changes in transcriptome caused by POP exposure, we observed an increase of insulin signaling and identified genes involved in brain and eye development, leading us to propose that the impaired function of the condensin I complex caused the observed eye defect. Our findings contribute to the understanding of POP mixtures, their consequences, and potential threats to human and animal populations, indicating that more mechanistic, monitoring, and long-term studies are imperative.

摘要

持久性有机污染物(POPs)因其稳定性、普遍性和生物累积性而对环境和健康构成重大威胁。尽管实际接触总是由混合物组成,但众多关于这些化合物的研究大多针对单一化学物质。因此,我们采用不同的测试方法,筛选了暴露于与环境相关的持久性有机污染物混合物对斑马鱼幼体的影响。我们的混合物由29种在斯堪的纳维亚人群血液中发现的化学物质组成。暴露于这种实际浓度的持久性有机污染物混合物或其亚混合物中的幼体出现生长迟缓、水肿、鳔充气延迟、过度活跃的游泳行为以及其他明显的畸形,如小眼症。混合物中最具有害性的化合物属于全氟和多氟辛酸类,尽管氯代和溴代化合物也会调节这些影响。通过分析持久性有机污染物暴露引起的转录组变化,我们观察到胰岛素信号增加,并确定了参与大脑和眼睛发育的基因,这使我们提出凝缩素I复合物功能受损导致了观察到的眼睛缺陷。我们的研究结果有助于理解持久性有机污染物混合物、其后果以及对人类和动物种群的潜在威胁,表明需要开展更多的机制研究、监测和长期研究。

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