Cytoprotective and genoprotective effects of taxifolin against oxidative damage in HTR-8/SVneo human trophoblast cells

Author:

Bruić Marija1,Pirković Andrea2ORCID,Vilotić Aleksandra2,Jovanović-Krivokuća Milica2,Spremo-Potparević Biljana1

Affiliation:

1. Faculty of Pharmacy, Department of Pathobiology, University of Belgrade , Belgrade , Serbia

2. Department for Biology of Reproduction, University of Belgrade, Institute for the Application of Nuclear Energy (INEP) , Belgrade , Serbia

Abstract

Abstract An increase of reactive oxygen species in the placenta and oxidative disbalance has been recognized as a significant factor contributing to pregnancy complications. Dietary intake of food rich in antioxidants during pregnancy could exert a protective role in the prevention of adverse outcomes such as preeclampsia, miscarriage, and others. Flavonoid taxifolin has shown numerous health-promoting effects in a large number of studies conducted on animals, as well as various human cell types in vitro. However, its effects on human placental cells—trophoblasts—have yet to be determined. Therefore, cytoprotective and genoprotective effects of taxifolin on trophoblast cell line HTR-8/SVneo under induced oxidative stress were explored in this study. Cytotoxicity of a range of taxifolin concentrations (1–150 µM) was evaluated using the MTT and crystal violet assays. A model of oxidative stress was achieved by exposing HTR-8/SVneo cells to H2O2. To determine cytoprotective and antigenotoxic effects, the cells were pre-incubated with three concentrations of taxifolin (10, 50, and 100 µM) and then exposed to H2O2. Taxifolin in concentrations of 1, 5, 10, 25, 50, and 100 µM showed no cytotoxic effects on HTR-8/SVneo cells, but 150 µM of taxifolin caused a significant decrease in adherent cell number, as detected by crystal violet assay. Pretreatment with the chosen concentrations of taxifolin showed a significant cytoprotective effect on H2O2-induced cytotoxicity, as determined by the MTT assay. Furthermore, taxifolin showed a significant reduction in H2O2-induced DNA damage, measured by comet assay. This study showed protective effects of taxifolin on human trophoblast cells exposed to oxidative damage. Further studies are needed to explore the underlying mechanisms.

Funder

Ministry of Education, Science and Technological Development

University of Belgrade-Faculty of Pharmacy

Publisher

Oxford University Press (OUP)

Subject

Health, Toxicology and Mutagenesis,Genetics (clinical),Toxicology,Genetics

Reference37 articles.

1. Free radicals, reactive oxygen species, oxidative stress and its classification;Lushchak;Chem. Biol. Interact.,2014

2. Reactive Oxygen Species, Oxdiative Damage, and Antioxidative Defense Mechanism in Plants under Stressful Conditions;Sharma;Journal of Botany,2012

3. Oxidative Stress: Harms and Benefits for Human Health;Pizzino;Oxid Med Cell Longev,2017

4. The role of oxidative stress in female reproduction and pregnancy;Lazar;Oxidative Stress Dis InTech,2012

5. Uterine Vascular Control Preconception and During Pregnancy;Fournier;Compr Physiol,2021

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