Publications by authors named "Victoria Simoes Bernardo"

The speciation of arsenic in fish has been widely investigated, but bioaccumulation and biotransformation of inorganic As in different tissues of Nile tilapia (Oreochromis niloticus) are not fully understood. The present study aimed to investigate the bioaccumulation of As in Nile tilapia, as well as to evaluate the distribution of the main arsenic species (As(III), As(V), MMA, DMA, and AsB) in liver, stomach, gill, and muscle, after controlled exposures to As(III) and As(V) at concentrations of 5.0 and 10.

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The red blood cells (RBCs) are essential to transport oxygen (O) and nutrients throughout the human body. Changes in the structure or functioning of the erythrocytes can lead to several deficiencies, such as hemolytic anemias, in which an increase in reactive oxidative species generation is involved in the pathophysiological process, playing a significant role in the severity of several clinical manifestations. There are important lines of defense against the damage caused by oxidizing molecules.

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Oxidative stress is a major cause of morbidity and mortality in human health and disease. In this review, we focus on the Forkhead Box (Fox) subclass O3 (FoxO3), an extensively studied transcription factor that plays a pleiotropic role in a wide range of physiological and pathological processes by regulating multiple gene regulatory networks involved in the modulation of numerous aspects of cellular metabolism, including fuel metabolism, cell death, and stress resistance. This review will also focus on regulatory mechanisms of FoxO3 expression and activity, such as crucial post-translational modifications and non-coding RNAs.

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Article Synopsis
  • - The study investigated how ergothioneine (ERT) affects red blood cell adaptation by analyzing gene expression in specific signaling pathways during erythroid differentiation and oxidative stress using K562 cells.
  • - Two concentrations of ERT (1 nM and 100 µM) were tested with and without oxidative stress, revealing that lower concentration ERT significantly enhanced several protective gene expressions at different stages of cell differentiation.
  • - The findings suggest that ERT has a cytoprotective role mainly through the Nrf2-ARE pathway and potentially aids in red blood cell proliferation and differentiation via the FoxO3 pathway.
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  • * The study analyzed how MEL affects specific signaling pathways in K562 erythroleukemic cells when subjected to OS induced by hydrogen peroxide, by evaluating cell viability and gene expression.
  • * Results showed that MEL can restore Nrf2 levels and that different concentrations of MEL had distinct impacts on gene expression related to antioxidants and apoptosis, highlighting its potential as a therapeutic approach for diseases linked to oxidative stress.
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