Deletion of miR-122-5p Exacerbated Hyperthyroidism-Induced Liver Injury by Regulating Ferroptosis

  • Int J Endocrinol. 2026 Jun 23:2026:7047803. doi: 10.1155/ije/7047803.
Guoxian Zhu  1 Lidan Zhang  1 Wenbao Huang  1 Jiexia Ding  1 Lifei Yu  1 Xiangfei Xu  1
Affiliations
  • 1. Department of Infectious Diseases, School of Medicine, Affiliated Hangzhou First People's Hospital, Westlake University, Hangzhou, Zhejiang, China, westlake.edu.cn.
Abstract

The aim of this study was to evaluate the effect and mechanism of miR-122-5p on hepatic injury induced by hyperthyroidism. Male Sprague Dawley rats were divided into three groups: a normal thyroid function group (sham), a levothyroxine (LT4)-induced hyperthyroidism group (T4 sodium), and a hyperthyroidism group treated with a miR-122-5p inhibitor (T4 sodium + antagomir-122-5p). Liver tissue pathology, Ferroptosis and inflammatory markers, and miR-122-5p expression were assessed. Finally, rat hepatocytes (BRL-3A) were treated with carbon tetrachloride (CCL4) to explore the role of the miR-122-5p/CCDC6 axis in hepatocyte injury. We found that miR-122-5p was expressed at low levels in liver tissues from hyperthyroid rats. Inhibition of miR-122-5p aggravated liver tissue injury. Additionally, in hyperthyroid rats, inflammatory factors, iron content, and markers of Ferroptosis were upregulated by miR-122-5p inhibitors. Mechanistically, miR-122-5p was found to bind to CCDC6 and negatively regulate CCDC6 expression. Furthermore, miR-122-5p deletion induced hepatocyte injury by exacerbating the Ferroptosis process and mitochondrial damage in CCL4-treated hepatocytes, a process dependent on CCDC6 expression. The miR-122-5p/CCDC6 axis plays a protective role in hyperthyroidism-induced liver injury and serves as a potential target for the clinical treatment of hyperthyroidism-associated liver disease.

Keywords
CCDC6; ferroptosis; hyperthyroidism; liver damage; miR-122-5p.
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