Intrauterine triclosan exposure disrupts hypothalamus–pituitary–thyroid axis function in offspring rats

内科学 内分泌学 后代 甲状腺 下丘脑-垂体-甲状腺轴 DNA甲基化 甲状腺功能 内分泌系统 医学 下丘脑 激素 生物 怀孕 基因表达 三碘甲状腺素 基因 生物化学 遗传学
作者
Guilherme Henrique,Érica Kássia de Sousa Vidal,Renata Elen Costa Silva,Nuha Ahmad Dsouki,Gisele Giannocco,Caroline Serrano‐Nascimento
出处
期刊:Journal of Endocrinology [Bioscientifica]
卷期号:266 (3) 被引量:4
标识
DOI:10.1530/joe-25-0069
摘要

Triclosan (TCS), an antimicrobial agent widely used in personal care products, has been associated with impaired thyroid function and reduced thyroid hormone (TH) levels. However, its potential role in the developmental programming of thyroid dysfunction remains unclear. This study investigated the long-term effects of intrauterine TCS exposure on the hypothalamic-pituitary-thyroid (HPT) axis in adult rat offspring. Pregnant Wistar rats received oral doses of corn oil (control) or TCS (10 or 30 mg/kg/day) throughout gestation. Offspring rats were euthanized on postnatal day 90 (PND90), and tissues from the hypothalamus, pituitary, thyroid, liver, and serum were collected for analysis. Gene and protein expression were evaluated by RT-qPCR and Western blotting; thyroid histology was assessed morphologically; global DNA methylation was measured by ELISA; and serum TSH and THs were quantified through immunoassays. TCS exposure altered hypothalamic TRH content, reduced Gh mRNA expression in the pituitary, and decreased serum TSH levels. In the thyroid, Slc5a5, Tg, Tpo, Tshr, Pax8, and Nkx2.1 were downregulated, accompanied by reduced NIS and TPO protein expression and decreased circulating T4 levels. Histological analyses revealed reduced follicular diameter in both sexes. Epigenetic changes included increased global DNA methylation and H3 histone methylation in both sexes, along with reduced H3 acetylation in males. In addition, TCS exposure altered hepatic enzymes involved in TH metabolism, indicating systemic endocrine disruption. Collectively, these findings demonstrate that intrauterine TCS exposure increases susceptibility to thyroid hypofunction in adulthood, highlighting its potential role as a developmental thyroid disruptor.

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