34 citations
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February 2016 in “Fertility and Sterility” This study suggests that higher PDCD4 expression may play a significant role in polycystic ovary syndrome pathogenesis through its association with obesity, insulin resistance, lipid metabolism disorders, and increased granulosa cell apoptosis.
9 citations
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May 2021 in “Frontiers in Cell and Developmental Biology” This study found that DNA methylation changes in granulosa cells from PCOS patients affect gene expression related to insulin resistance, fat cell differentiation, and steroid metabolism, suggesting an epigenetic contribution to PCOS pathogenesis.
69 citations
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September 2006 in “Human Reproduction” This study found that CD45RO+ cells, a subtype of T lymphocytes, were notably reduced in the ovarian follicles of women with PCOS, which may contribute to the condition's pathogenesis.
This study presents the G4 transgenic mouse model, which suggests a direct link between polycystic ovary syndrome and the Gm10800 gene, offering a valuable tool for understanding the disease and testing treatments.
December 2025 in “Egyptian Journal of Basic and Applied Sciences” This study observed that FOXA1 and CCL2 gene expression levels were significantly elevated in women with different PCOS phenotypes compared to healthy controls, indicating phenotype-specific molecular variations which could inform personalized treatment strategies for infertility in PCOS.