Chlorpyrifos Influences Tadpole Development by Disrupting Thyroid Hormone Signaling Pathways

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

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Author(s)

  • Aoxue Wang
  • Yuanyuan Liu
  • Yujia Yan
  • Yuyao Jiang
  • Shiyao Shi
  • And 6 others
  • Jie Wang
  • Kun Qiao
  • Long Yang
  • Shuting Wang
  • Shuying Li
  • Wenjun Gui

Detail(s)

Original languageEnglish
Pages (from-to)142-151
Journal / PublicationEnvironmental Science and Technology
Volume59
Issue number1
Online published24 Dec 2024
Publication statusPublished - 14 Jan 2025
Externally publishedYes

Abstract

Chlorpyrifos (CPF) is a widely used organophosphate insecticide with serious toxicological effects on aquatic animals. Although extensively studied for neurotoxicity and endocrine disruption, its stage-specific effects on amphibian metamorphosis and receptor-level interactions remain unclear. This study investigated the effects of CPF on Xenopus laevis metamorphosis at environmentally relevant concentrations (1.8 and 18 μg/L) across key developmental stages, with end points including premetamorphic progression, thyroid hormone (TH)-responsive gene expression, and levels of triiodothyronine (T3) and thyroxine (T4). Additionally, molecular docking, surface plasmon resonance (SPR), and luciferase reporter gene assays were employed to elucidate CPF’s interaction with the thyroid hormone receptor alpha (TRα). CPF accelerated premetamorphic development and upregulated TH-responsive genes but delayed later-stage metamorphosis. After 21 days of exposure to 18 μg/L CPF, T3 and T4 levels were reduced by 28% and 39.4%, respectively, compared to controls. Cotreatment with T3 and CPF slowed tadpole development, indicating that CPF affects thyroid signaling in a stage-dependent manner. CPF competed with T3 for TRα binding and stimulated TRα-mediated luciferase activity when administered alone, but this activity decreased when CPF was coexposed to T3. These findings suggest that CPF functions as a partial agonist of TRα, disrupting thyroid signaling and adversely affecting amphibian development. © 2024 American Chemical Society.

Research Area(s)

  • chlorpyrifos, metamorphosis, thyroid hormone receptor, Xenopus laevis

Citation Format(s)

Chlorpyrifos Influences Tadpole Development by Disrupting Thyroid Hormone Signaling Pathways. / Wang, Aoxue; Liu, Yuanyuan; Yan, Yujia et al.
In: Environmental Science and Technology, Vol. 59, No. 1, 14.01.2025, p. 142-151.

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review