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Updated: Sep 9, 2025

In Vivo Inhibition of MicroRNA to Decrease Tumor Growth in Mice
Published on: August 23, 2019
Euxanthone Inhibits Hepatocellular Carcinoma Progression by Targeting the miR-199a-5p/E2F3 Regulatory Axis
1Department of Clinical Laboratory Sciences, Faculty of Applied Medical Sciences, Najran University, 1988, Najran, 61441, Saudi Arabia.
Background:
Hepatocellular carcinoma (HCC) ranks among the leading causes of cancer-related deaths on a global scale. This study aimed to evaluate the effects of euxanthone on the proliferation of HCC cell lines and elucidate the underlying molecular mechanisms.
Methods:
HCC cell lines (HepG2, Huh-7, SNU-398, SK-HEP-1, Hep3B) and the normal liver cell line THLE-2 were cultured and treated with euxanthone at concentrations between 0 and 100 μM. Cell viability was evaluated using the MTT assay, while phase contrast microscopy and cell cycle analysis were performed to evaluate morphological changes and cell cycle distribution. qRT-PCR was utilized to measure miRNA and mRNA expression levels, while a dual luciferase reporter assay validated the interaction between miR-199a-5p and E2F3.
Results:
Euxanthone significantly (P < 0.05) inhibited cell proliferation in all HCC cell lines, with IC₂⁽ values between 6.25 and 25 μM. HepG2 cells exhibited pronounced sensitivity, with an IC₂⁽ of 6.25 μM. Euxanthone induced a G1 phase arrest, characterized by decreased expression of Cyclin D1 and E, and increased levels of p21. Additionally, it upregulated miR-199a-5p, which was identified as a mediator of the antiproliferative effects by targeting E2F3. Euxanthone treatment also significantly (P < 0.05) inhibited HepG2 cell migration in a wound healing assay.
Conclusion:
Taken together, euxanthone exerts antiproliferative effects on HCC cells via the miR-199a-5p-E2F3 axis and inhibits cell migration. These findings support its potential as a therapeutic agent for HCC, highlighting the need for further investigation into its clinical applications.
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