Iron Oxide Nanoparticles Reduced Retinoic Acid Induced-neuronal Differentiation of Mouse Embryonic Stem Cells By ROS Generation

Archives of Iranian Medicine
Ali Akbar RostamiRahman Fakheri

Abstract

In recent years the increasing use of nanoparticles has led researchers to study their effects on biological systems. The most important effects of nanoparticles on cells are their ability to induce or suppress production of reactive oxygen species (ROS). Changes in reactive oxygen species play an important role in various developmental processes, including proliferation and differentiation in several diseases such as Parkinson. The aim of this study was to investigate the effect of iron oxide nanoparticle with dimensions of less than 20 nanometers on the viability and neuronal differentiation of mouse embryonic stem cell (Royan B1). To assess the effects of Fe2O3 nanoparticles on neuronal differentiation of Royan B1 cells, embryoid bodies were divided into eight groups receiving different amounts of nanoparticle (10, 20, 30 μg/mL) for 12 hours, retinoic acid (1 μM), and both. Differentiation was examined under phase contrast microscope and using immunocytochemistry. Data analysis showed that cell death was increased by a time and concentration manner and there was a direct relevance between iron oxide amount and H2O2 level in cells. Statistical analysis of embryoid bodies showed that neural differentiation of mouse embryonic s...Continue Reading

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