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斑马鱼(Danio rerio)幼年期暴露于四溴联苯(BB-80)和 OH-BB-80 后,中断暴露对甲状腺功能的影响。

Thyroid Dysfunction of Zebrafish () after Early-Life Exposure and Discontinued Exposure to Tetrabromobiphenyl (BB-80) and OH-BB-80.

机构信息

Key Laboratory of Environment Remediation and Ecological Health, Ministry of Education, College of Environmental and Resource Sciences, Zhejiang University, Hangzhou 310058, China.

College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou 310018, China.

出版信息

Environ Sci Technol. 2022 Feb 15;56(4):2519-2528. doi: 10.1021/acs.est.1c07767. Epub 2022 Jan 25.

Abstract

3,3',5,5'-Tetrabromobiphenyl (BB-80) was once used as additive flame retardants. Whether its early exposure and discontinued exposure alter thyroid function remains unknown. We investigate adverse effects after early-life exposure and discontinued exposure to BB-80 and hydroxylated BB-80 (OH-BB-80) on thyroid hormone (TH) levels, thyroid tissue, and transcriptome profiles in zebrafish larvae. BB-80 at 10 μg/L induces pathological changes of thyroid with reduced thyroid follicles in larvae ( < 0.05), whereas OH-BB-80 significantly increases T4 and T3 contents (1.8 and 2.5 times of the control, < 0.05) at 14 days postfertilization (dpf) without morphological thyroid alterations. BB-80 and OH-BB-80 cause transcriptome aberrations with key differentially expressed genes involved in the disruption of TH synthesis and signal transduction (BB-80 at 14 dpf) or TH pathway activation (OH-BB-80 at 21 dpf). After 7 days of discontinued exposure, thyroglobulin () and thyroid peroxidase () genes are downregulated ( < 0.05) by 52 and 48% for BB-80 and by 49 and 39% for OH-BB-80, respectively; however, the whole-body TH levels fail to fully recover, and the locomotor activity is impaired more by BB-80. Our results indicate significant adverse impacts of BB-80 and OH-BB-80 on TH homeostasis and thyroid function of zebrafish.

摘要

3,3',5,5'-四溴联苯(BB-80)曾被用作添加型阻燃剂。其早期暴露和已停止暴露是否会改变甲状腺功能尚不清楚。我们研究了 BB-80 和羟基化 BB-80(OH-BB-80)对仔鱼甲状腺激素(TH)水平、甲状腺组织和转录组谱的早期和已停止暴露的不良影响。10μg/L 的 BB-80 可诱导仔鱼甲状腺发生病理变化,甲状腺滤泡减少(<0.05),而 14 天孵化后(dpf)OH-BB-80 可显著增加 T4 和 T3 含量(分别为对照组的 1.8 和 2.5 倍,<0.05),而甲状腺形态无改变。BB-80 和 OH-BB-80 导致转录组异常,关键差异表达基因涉及 TH 合成和信号转导的破坏(14 dpf 的 BB-80)或 TH 途径的激活(21 dpf 的 OH-BB-80)。停止暴露 7 天后,BB-80 和 OH-BB-80 分别使甲状腺球蛋白()和甲状腺过氧化物酶()基因下调(<0.05)52%和 48%和 49%和 39%;然而,全身 TH 水平未能完全恢复,且仔鱼的运动活性受 BB-80 的影响更大。我们的研究结果表明 BB-80 和 OH-BB-80 对斑马鱼的 TH 动态平衡和甲状腺功能有显著的不良影响。

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