PhD Scientific Days 2025

Budapest, 7-9 July 2025

Poster Session I. - F: Pharmaceutical Sciences and Health Technologies

Resveratrol and Its Derivatives Reduce Adipogenesis in Mouse Embryonic Fibroblasts - Study on Mechanism of Action

Előadó neve

Ms. Sikur Noémi Blanka

Neptun code

X2VO94

Előadó munkahelye

Semmelweis University Department of Pharmacodynamics

Előadó telefonszáma

+36 70 414 6030

Előadó e-mail címe

sikurnoemi@gmail.com

Az előadás címe

Resveratrol and Its Derivatives Reduce Adipogenesis in Mouse Embryonic Fibroblasts - Study on Mechanism of Action

Szerző(k) neve és munkahelye

Noémi Sikur1, Alexandra Paszternak1, Kamilla Varga1, Tamás Tábi1

1: Semmelweis University Department of Pharmacodynamics

Bemutatás módja

Poszter

Szekció

Poster Session I. - F: Pharmaceutical Sciences and Health Technologies

Language of the presentation

English

Preferred session

Pharmaceutical Sciences and Health Technologies

Összefoglaló szövege

Introduction: Resveratrol, a dietary polyphenolic compound, has been a widely researched antioxidant molecule. Recent studies also reported, that it might have beneficial effects in obesity-related complications, however its mechanism of action and exact molecular targets are yet unclear. Its poor bioavailability hinders its therapeutic use, which could be addressed by testing structurally modified analogues.
Aim: In our present study we aimed at observing the metabolic effects of resveratrol and its analogues on adipogenesis in vitro.
Method: Mouse embryonic fibroblasts were differentiated into adipocytes over 21 days when cells were also treated with resveratrol or one of its derivatives (oxyresveratrol, mono- or trimethylated resveratrol). To investigate molecular pathways, specific inhibitors (PI3K: Wortmannin, SIRT1: EX-527, p38: SB202190 and PGC-1α: SR18292, autophagy: chloroquin, ERK: PD98059, JNK: SP600125) were applied simultaniously. Intracellular lipid accumulation was assessed by Oil Red O staining. Glucose uptake was assessed by 2-NBDG, a fluorescent glucose analogue. Mitochondrial activity was estimated by resazurin reduction.
Results: Although each analogue significantly reduced intracellular lipid content, oxyresveratrol was the most potent (IC50=4.2 μM), while the lowest potency was observed with trimethylated resveratrol (IC50=27.4 μM). Inhibition of PI3K attenuated differentiation, with p38, ERK inhibitors the adipogenesis reducing effect remained, however with SIRT1, PGC-1α, autophagy and JNK inhibition the lipid content decreasing effect of the derivatives disappeared. Enhanced insulin stimulated glucose uptake was normalised by every analogue with similar efficiency. In adipocytes increased mitochondrial activity was observed, which was restored by methylated resveratrols, while oxyresveratrol had minimal if any effect in this case.
Conclusions: Based on our results we concluded, that modifications like oxidation and methylation may affect the mechanism of action, as oxyresveratrol had a robust lipid reducing effect, while methylated analogues had stronger effect on mitochondrial activity and autophagy. Resveratrol and its analogues might mimic caloric restriction through various molecular targets like SIRT1, PGC1α, and JNK, making them possible drug candidates to treat obesity-related diseases.
Funding: EKÖP-2024-259

University

Semmelweis University

Supervisor

Kamilla Varga, Tamás Tábi

Publication of my abstract

I give consent to the publication of my abstract on the website of the congress.

phd.section.field

before finishing undergraduate studies (TDK, MD-PhD)

Kind

Szabad

Status

elfogadva

Accepted presentation method

poszter

Előadás fájl jóváhagyás

nem rendelkezett róla

Előadó

9077

Start

16:30

End

16:36