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急性暴露于氟虫腈会破坏斑马鱼胚胎(Danio rerio)的甲状腺系统和代谢,揭示其毒性的发育机制。

Acute exposure of zebrafish embryo (Danio rerio) to flutolanil reveals its developmental mechanism of toxicity via disrupting the thyroid system and metabolism.

机构信息

College of Sciences, China Agricultural University, Beijing, 100193, China.

Institute of Apiculture Research, Chinese Academy of Agricultural Sciences, Beijing, 100093, China.

出版信息

Environ Pollut. 2018 Nov;242(Pt B):1157-1165. doi: 10.1016/j.envpol.2018.07.092. Epub 2018 Jul 31.

Abstract

Flutolanil, an amide fungicide, had been detected frequently in aquatic environments; it is thus potentially a great risk to aquatic organisms and human health. Therefore, we investigated the developmental toxicity and the potential mechanism of thyroid endocrine disruption induced by flutolanil based on H NMR metabolomics analysis using a zebrafish model. Hatching of zebrafish embryo exposed to flutolanil was inhibited at 72 hpf (hour post-fertilization) and survival and body length at 96 hpf. In addition, increased teratogenic effects on embryos were observed, including pericardial edema, spine deformation, and tail malformation. Furthermore, flutolanil induced slower heartbeat and larger pericardial area in the treated groups than control group. Transcription levels of TRH, TSHR, TPO, Dio1, TRα, and UGT1ab were significantly altered after flutolanil exposure. Metabolomics analysis further indicated that flutolanil induced alterations of energy, amino acids, nucleotide, lipids, and fatty acid metabolism. Our study also indicated that flutolanil exposure led to alterations of endogenous metabolites, which induced the thyroid endocrine disruption in zebrafish. Ultimately, embryonic developmental toxicity was caused by flutolanil.

摘要

氟噻唑菌胺是一种酰胺类杀菌剂,在水生环境中经常被检出,因此对水生生物和人类健康具有潜在的巨大风险。因此,我们基于核磁共振代谢组学分析,使用斑马鱼模型研究了氟噻唑菌胺诱导的甲状腺内分泌干扰的发育毒性及其潜在机制。暴露于氟噻唑菌胺的斑马鱼胚胎在 72 hpf(受精后小时)时孵化被抑制,在 96 hpf 时存活和体长受到影响。此外,还观察到胚胎出现了更多的致畸效应,包括心包水肿、脊柱畸形和尾巴畸形。此外,与对照组相比,处理组的心跳速度更慢,心包面积更大。TRH、TSHR、TPO、Dio1、TRα 和 UGT1ab 的转录水平在氟噻唑菌胺暴露后显著改变。代谢组学分析进一步表明,氟噻唑菌胺诱导了能量、氨基酸、核苷酸、脂质和脂肪酸代谢的改变。我们的研究还表明,氟噻唑菌胺暴露导致内源性代谢物的改变,从而引起斑马鱼的甲状腺内分泌干扰。最终,氟噻唑菌胺导致了胚胎发育毒性。

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