Cadmium exposure promotes thyroid pyroptosis and endocrine dysfunction by inhibiting Nrf2/Keap1 signaling

上睑下垂 甲状腺 内分泌系统 KEAP1型 氧化应激 内分泌学 内科学 细胞凋亡 化学 氯化镉 甲状腺功能 平衡 程序性细胞死亡 生物 医学 转录因子 生物化学 激素 基因 有机化学
作者
Yuying Chen,Chengcong Zhou,Yishan Bian,Fangda Fu,Bian'an Zhu,Xuyan Zhao,Muxin Zhang,Chunyuan Zhou,Sai Yao,Zhiguo Zhang,Huan Luo,Yuying Ge,Chengliang Wu,Hongfeng Ruan
出处
期刊:Ecotoxicology and Environmental Safety [Elsevier]
卷期号:249: 114376-114376 被引量:1
标识
DOI:10.1016/j.ecoenv.2022.114376
摘要

Cadmium (Cd) is a ubiquitous toxic metal and environmental pollutant. Increasing studies have shown that Cd exposure increases the incidence of various endocrine system diseases, including thyrotoxicity reflected by thyroid structural damage and endocrine toxicity. However, the observed outcomes are complex and conflicting, leading to the mechanism of Cd-induced thyrotoxicity remaining obscure. In this study, 4-week-old male C57BL/6 mice were given 2 or 7 mg/kg Cadmium Chloride (CdCl2) intragastrically for 4 and 8 weeks, and the Cd-mediated thyrotoxicity was evaluated by determining alterations in thyroid structure and endocrine function, and alterations of oxidant stress, apoptosis, and pyroptosis. Our data showed that Cd exposure could reduce body weight and induce thyrotoxicity by impairing thyroid follicular morphology and endocrine function, accompanied by elevated oxidative stress and apoptosis, macrophage infiltration, and inflammatory cytokine secretion. Importantly, Cd significantly promoted thyroid follicular cell pyroptosis by increasing Nlrp3, Asc, Caspase-1, Gsdmd, IL-1β, and IL-18 expression. Mechanistical analysis suggested that Cd treatment could inhibit antioxidant pathway by downregulating antioxidant response protein, Nrf2, and upregulating its negative feedback regulator, Keap1. Collectively, our in vivo findings suggest that Cd exposure could facilitate thyroid follicular cell pyroptosis by inhibiting Nrf2/Keap1 signaling, thereby disrupting thyroid tissue structure and endocrine function, which offers novel insights into the Cd-mediated detrimental consequences on thyroid homeostasis.
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