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Diminishing Hepcidin via Reducing IL-6/STAT3 Pathway by Utilizing Ferulic Acid: An In Vitro Study
Ola M Al-Sanabra1, Luay F Abu-Qatouseh2, Mohammad I A Ahmad3,4
1Department of Medical Laboratory Sciences, Faculty of Allied Medical Sciences, Al-Balqa Applied University, Al-Salt 19117, Jordan.
Insights
Ferulic acid (FA) reduces hepcidin levels by inhibiting the IL-6/STAT3 inflammatory pathway. This suggests FA as a potential treatment for anemia and hypoferremia linked to inflammatory and oncological diseases.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Hepcidin regulates iron absorption and is implicated in anemia associated with inflammation and cancer.
- The pro-inflammatory cytokine IL-6/STAT3 pathway influences hepcidin levels.
- Ferulic acid (FA), a phenolic compound, possesses anti-inflammatory properties, but its effect on hepcidin is unknown.
Purpose of the Study:
- To investigate the impact of Ferulic acid (FA) on hepcidin secretion.
- To elucidate the underlying molecular mechanisms of FA's effect on hepcidin.
Main Methods:
- HepG2 cells were treated with varying concentrations of FA.
- Cell viability was assessed using the MTT assay.
- Gene expression (IL-6, HAMP) and protein levels (IL-6, STAT3, hepcidin) were measured via qRT-PCR and ELISA.
Main Results:
- FA demonstrated an inverse relationship with HepG2 cell proliferation (IC50 = 0.07669%).
- LPS treatment increased IL-6 and HAMP expression and IL-6, STAT3, and hepcidin secretion.
- FA significantly reduced LPS-induced increases in IL-6, HAMP, STAT3, and hepcidin levels.
Conclusions:
- Ferulic acid modulates inflammatory pathways, specifically the IL-6/STAT3 pathway.
- FA effectively lowers hepcidin levels.
- FA shows potential as a therapeutic agent for hypoferremia and anemia in inflammatory and oncological conditions.
Abstract:
Background/Objectives: Hepcidin is a negative regulator of iron absorption that is released by hepatocytes. It is one of the main contributors to hypoferremia and anemia in inflammatory and oncological disorders that are mediated by the proinflammatory cytokine IL-6/STAT3 pathway. Ferulic acid (FA) is a phenolic compound with pleiotropic biological activities, including anti-inflammatory activity. However, its effect on hepcidin secretion is still unknown. Thus, this study aimed to explore the impact of FA on hepcidin levels and the underlying mechanism. Methods: HepG2 cells were treated with different log percentages of FA, and their viability was determined via the MTT assay. The relative expression of IL-6 and HAMP in treated and untreated cells was measured via qRT-PCR, and the protein levels of hepcidin, IL-6 and STAT3 were measured using ELISA. Results: The MTT test showed an inverse relationship between FA concentrations and HepG2 cell proliferation; FA's IC50 value was 0.07669%. The expression levels of IL-6 and HAMP were significantly increased in HepG2 cells following 24 h of culture with 4 μg/mL LPS. Meanwhile, the addition of FA significantly decreased the relative expression levels of these two genes and the secretion levels of IL-6, STAT3 and hepcidin compared to the cells treated with LPS alone. Conclusions: Overall, these findings show that FA modifies inflammatory pathways, affecting hepcidin levels via the IL-6/STAT3 pathway. Thus, this suggests FA as a potential therapeutic agent against the hypoferremia and anemia developed due to dysregulated hepcidin levels in diseases such as inflammatory and oncological disorders.
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