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    <dc:date>2025-12-06T10:43:13Z</dc:date>
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    <title>Identificação dos efeitos toxicológicos da coexposição de nanopartículas de prata e glifosato para o microcrustáceo Daphnia magna</title>
    <link>https://rd.uffs.edu.br/handle/prefix/3687</link>
    <description>Title: Identificação dos efeitos toxicológicos da coexposição de nanopartículas de prata e glifosato para o microcrustáceo Daphnia magna
Author: Silva, Marlon Luiz Neves da
First advisor: Matias, William Gerson
Abstract: Glyphosate (Gly) and metallic nanoparticles are coexisting in the environment due to&#xD;
their demand and use in agriculture and industry. However, the effects of these&#xD;
combinations on the environment and biota are not fully understood. This work aims to&#xD;
identify the possible toxicological effects at acute levels, as well as at chronic&#xD;
multigenerational levels of the binary mixture (MR) of silver nanoparticles (AgNP) with&#xD;
glyphosate (Gly) in D. magna. We used Abbott's method to analyze possible acute&#xD;
interactions. The oxidative stress induced by the AgNP/Gly binary mixture, regarding&#xD;
the Toxic Unit (TU), it was evaluated for the level of Reactive Oxygen Species (ROS)&#xD;
and MDA. We also evaluated the activity of the antioxidant enzymes named Catalase&#xD;
(CAT), Superoxide Dismutase (SOD) and Glutathione (GSH) at 0, 1.5, 1 and 1.75 UT.&#xD;
In the chronic tests, we evaluated, after 21 days, the parameters of survival, growth,&#xD;
reproduction and age of the first brood for parental individuals, and exposed (F1E) and&#xD;
unexposed (recovery) (F1NE). For individuals fed with MR, the contaminants tested&#xD;
individually were used in their highest and lowest concentrations of the individual&#xD;
chronic ones. The binary AgNP/Gly mixture, at an acute level, presented an&#xD;
antagonistic effect in 1, 1.5 and 1.75 TU and an additive effect in 0.25, 0.50 and 2 TU,&#xD;
results possibly associated to the complexation of AgNP by Gly. There was&#xD;
deregulation of the biochemical biomarkers related to the antioxidant defense system&#xD;
in D. magna exposed to treatments, whose antioxidant enzymes evaluated CAT, SOD&#xD;
and GSH were not able to modulate the production of ROS, resulting in oxidative stress&#xD;
and damage by lipid peroxidation. We observed the chronic multigenerational effects&#xD;
related to the parameters of reproduction and age of the first brood in the descendants&#xD;
of the individual compounds, with no recovery for F1E and F1NE. There was a relevant&#xD;
change in the age of the first litter in organisms exposed to MR, with delay in all&#xD;
treatments for F1E and F1NE. There was a significant change (p &lt;0.05) in the&#xD;
reproduction parameter, with a strong reduction for the parental F1E and F1NE, which&#xD;
indicates more toxicity than the compounds alone, being cumulative and harmful to the&#xD;
environmental balance over time. Although the results in the acute tests did not provide&#xD;
clear evidence about the interaction between AgNP and Gly, chronic multigenerational&#xD;
tests with MR resulted in unexpected combined toxicity compared to individual&#xD;
treatments. This raises a concern for this coexposure in other settings. Therefore,&#xD;
although exposure time and dose are variables to be considered, the action mode of&#xD;
mixtures in organisms still needs answers. However, this study brings relevant results&#xD;
for future researches.
Publisher: Universidade Federal de Santa Catarina
Type: Tese</description>
    <dc:date>2020-01-01T00:00:00Z</dc:date>
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