1. Academic Validation
  2. Decreased miR-128-3p in serum exosomes from polycystic ovary syndrome induces ferroptosis in granulosa cells via the p38/JNK/SLC7A11 axis through targeting CSF1

Decreased miR-128-3p in serum exosomes from polycystic ovary syndrome induces ferroptosis in granulosa cells via the p38/JNK/SLC7A11 axis through targeting CSF1

  • Cell Death Discov. 2025 Feb 18;11(1):64. doi: 10.1038/s41420-025-02331-0.
Yanqiu Lv # 1 Shengzhong Han # 1 2 Fuliang Sun 1 Yuyang Zhang 1 Xinglin Qu 1 Hao Li 1 Weiyu Gu 1 Qinglong Xu 1 Shunfa Yao 1 Xuan Chen 3 Yi Jin 4 5
Affiliations

Affiliations

  • 1 Department of Animal Science, College of Agriculture, Yanbian University, Jilin, China.
  • 2 Jilin Provincial Key Laboratory of Transgenic Animal and Embryo Engineering, Yanbian University, Yanji, China.
  • 3 Department of Animal Science, College of Agriculture, Yanbian University, Jilin, China. 0000008862@ybu.edu.cn.
  • 4 Department of Animal Science, College of Agriculture, Yanbian University, Jilin, China. yijin@ybu.edu.cn.
  • 5 Jilin Provincial Key Laboratory of Transgenic Animal and Embryo Engineering, Yanbian University, Yanji, China. yijin@ybu.edu.cn.
  • # Contributed equally.
Abstract

Increasing evidence suggests that non-coding small RNAs (miRNAs) carried by exosomes (EXOs) play important roles in the development and treatment of polycystic ovary syndrome (PCOS). In this study, we demonstrate that PCOS mouse serum-derived EXOs promote granulosa cells (GCs) Ferroptosis, and induce the occurrence of a PCOS-like phenotype in vivo. Notably, EXO miRNA Sequencing combined with in vitro gain- and loss-of-function assays revealed that miR-128-3p, which is absent in the serum-derived EXOs of mice with PCOS, regulates lipid peroxidation and GC sensitivity to Ferroptosis inducers. Mechanistically, overexpression of CSF1, a direct target of miR-128-3p, reversed the anti-ferroptotic effect of miR-128-3p. Conversely, Ferroptosis induction was mitigated in CSF1-downregulated GCs. Furthermore, we demonstrated that miR-128-3p inhibition activates the p38/JNK pathway via CSF1, leading to NRF2-mediated down-regulation of SLC7A11 transcription, which triggers GC iron overload. Moreover, intrathecal miR-128-3p AgomiR injection into mouse ovaries ameliorated PCOS-like characteristics and restored fertility in letrozole-induced mice. The study reveals the pathological mechanisms of PCOS based on circulating EXOs and provides the first evidence of the roles of miR-128-3p and CSF1 in ovarian GCs. This discovery is expected to provide promising therapeutic targets for the treatment of PCOS.

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