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Updated: Jul 18, 2025

Author Spotlight: Investigating the Mechanisms and Inducing Models of Polycystic Ovary Syndrome
Published on: July 5, 2024
Non-coding RNA genes modulate PI3K/AKT signaling pathway in polycystic ovary syndrome
Heba S Omar1, Osama Ahmed Ibrahim2, Maha Gomaa Sayed3
1Medical Biochemistry and Molecular Biology Department, Kasr Al Ainy School of Medicine, Cairo University, Kasr Al Ainy St., El Manial, Cairo, 11562, Egypt.
Background:
The PI3K protein kinase B (PI3K/AKT) signaling pathway has crucial roles in insulin signaling and other endocrine disorders. The purpose of this study is to validate the association of PCOS with PI3K/AKT pathway target genes, miRNA486-5p, and miRNA483-5p as well as to evaluate the outcome of metformin on the pathogenesis of PCOS. METHODS: This case-controlled study included 3 subject groups: twenty healthy females (control group), twenty PCOS females before treatment, and twenty PCOS females treated with metformin at a dose (500 mg 3 times per day for 3 months). The following gene expressions were assessed by real-time PCR: PI3K, AKT, ERK, GLUT4, miRNA486-5p, and miRNA483-5p in the whole blood.
Results:
There was a significant decrease in miRNA486-5p and miRNA483-5p in the PCOS group with a significant negative correlation between miRNA486-5p and PI3K and a significant negative correlation between miRNA483-5p and ERK. Metformin treatment resulted in significant elevation of the studied miRNA, significant downregulation of PI3K/AKT target genes, and significant amelioration of the gonadotrophic hormonal imbalance and insulin resistance markers: fasting blood glucose, HBA1C, fasting insulin, and GLUT4 gene expression.
Conclusions:
miRNA486 and miRNA483 downregulation may contribute to the etiology of PCOS, influence glucose metabolism, and result in IR in PCOS. Metformin's upregulation of those miRNAs affects glucose metabolism by controlling the expression of GLUT4, ameliorates PCOS-related insulin resistance, and improves PCOS-related hormonal imbalance by controlling the PI3K/AKT signaling pathway.
Insights
Polycystic ovary syndrome (PCOS) is linked to lower levels of miRNA486-5p and miRNA483-5p, impacting glucose metabolism and insulin resistance. Metformin treatment increases these miRNAs, improving PCOS symptoms and insulin sensitivity.
Area of Science:
- Endocrinology
- Molecular Biology
- Genetics
Background:
- The PI3K/AKT signaling pathway is vital for insulin signaling and endocrine functions.
- Polycystic ovary syndrome (PCOS) involves disruptions in this pathway.
- Investigating specific microRNAs (miRNAs) and their role in PCOS pathogenesis is crucial.
Purpose of the Study:
- To validate the association between PCOS and the PI3K/AKT pathway target genes, miRNA486-5p, and miRNA483-5p.
- To evaluate the therapeutic effect of metformin on PCOS pathogenesis.
Main Methods:
- A case-controlled study involving 60 females (20 healthy, 40 with PCOS).
- PCOS patients were divided into pre-treatment and metformin-treated groups (500 mg thrice daily for 3 months).
- Real-time PCR was used to assess gene expression of PI3K, AKT, ERK, GLUT4, miRNA486-5p, and miRNA483-5p in whole blood.
Main Results:
- PCOS patients exhibited significantly decreased levels of miRNA486-5p and miRNA483-5p.
- A negative correlation was observed between miRNA486-5p and PI3K, and between miRNA483-5p and ERK.
- Metformin treatment significantly increased miRNA levels, downregulated PI3K/AKT target genes, and improved insulin resistance markers (fasting blood glucose, HbA1c, fasting insulin, GLUT4 expression).
Conclusions:
- Downregulation of miRNA486 and miRNA483 may contribute to PCOS etiology, glucose metabolism dysfunction, and insulin resistance (IR).
- Metformin upregulates these miRNAs, positively affecting glucose metabolism via GLUT4 expression.
- Metformin ameliorates PCOS-related insulin resistance and hormonal imbalance by modulating the PI3K/AKT signaling pathway.
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