Investigation of the efficacy of 3-(4-hydroxyphenyl) propionic acid in in vitro hydrogen peroxide induced liver oxidative stress model
2021
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Advisor: Doç. Dr. Altuğ Küçükgül
Abstract (EN)
The antioxidant properties of human microbiota products of polyphenols have been demonstrated in many studies. Since the liver is the main metabolizing organ, it is heavily exposed to oxidative stress. The aim of this study is to demonstrate the antioxidant capacity of 3-(4-hydroxyphenyl) propionic acid (4-HPPA), a microbiota metabolite, in an in vitro oxidative stress model created after the application of the oxidant molecule hydrogen peroxide (H2O2) to liver cells. Liver HepG2 cells of human origin from continuous cell lines were used as material in the experiment. In trial modelling, hydrogen peroxide and 4-HPPA were provided and applied to liver cells at different concentrations for 1 day. The effective concentrations of these substances were determined by viability tests. At the end of the trial period, cDNA conversions were performed from the RNA samples taken from the groups and superoxide dismutase (SOD), glutathione peroxidase (GSH-Px) catalase (CAT) gene expression levels were determined by real-time quantitative polymerase chain reactions (QRT-PCR). According to the data obtained from the study, different concentrations of H2O2 were applied to the cells and the concentration of 100 μM, which caused 23% cell loss compared to the control group, was determined as the effective concentration. However, it was determined that 25 μg/ml 4-HPPA prevented these losses by 17%. According to these findings, gene expression analyzes were performed on cells using these concentrations. When the gene expression analyzes were examined, it was determined that the 1-day application of hydrogen peroxide suppressed the GSH-Px and CAT expressions at relative values, while 4-HPPA significantly reversed this negative picture. However, when the literature on the subject was examined, it was seen that the results of SOD could vary depending on the dose and time. As a result, according to the findings obtained from the study, it was determined that 4-HPPA may contribute to the treatment of acute liver injury caused by oxidative stress. However, in vivo trials and advanced molecular methods are needed to fully express its effectiveness with the findings obtained.
Author
Kamber Keskin
Institution
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Kamber Keskin (Master Thesis). Investigation of the efficacy of 3-(4-hydroxyphenyl) propionic acid in in vitro hydrogen peroxide induced liver oxidative stress model, 2021, Hatay Mustafa Kemal University.
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