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Sanjay Yadav

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Jul 2026

Integration of miRNA profiling and proteomics to determine the target(s) implicated in endometrial cancer cells exposed to zearalenone.

Zearalenone (ZEA), a natural estrogenic mycotoxin, can cause serious harmful effects on human and animal health. Several studies have reported that ZEA induces proliferation in endometrial cancer; however, its role in modulating microRNA (miRNA) and protein expression profiles remains poorly established. This study investigates the effects of low-dose ZEA exposure on endometrial cancer cells using an integrated approach combining miRNA and proteome profiling. Ishikawa cells were exposed to 25 nM ZEA or 10 nM 17-β-estradiol (E2) for 10 days. miRNA profiling using a customized cancer-specific 56-miRNA array panel revealed significant alterations in miRNA expression, with miR-204 highly upregulated in both the E2 and ZEA treatment groups. For the global protein profiling, liquid chromatography-tandem mass spectrometry (LC-MS/MS) was employed. Proteomics analysis identified 243 upregulated and 227 downregulated proteins following ZEA exposure, and, in the case of E2, 286 were upregulated and 123 were downregulated. Notably, miR-204 upregulation correlated with the downregulation of three target proteins: RETSAT, IPO8, and LRRC59. Gain- and loss-of-function studies using miR-204 mimics and inhibitors confirmed its role in promoting cell proliferation, growth, and migration. The present study provides novel insights into the molecular mechanism underlying ZEA-induced promotion of endometrial cancer, highlighting the potential role of miR-204 as a key mediator. Our findings contribute to understanding the role of environmental factors in cancer development and may inform future strategies for the prevention and treatment of endometrial cancer.

Varsha Singh, Saria Anjum, Payal Mandal et al. · 0 citations