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Increased selenium concentration in the synthesis of <scp>CdSe</scp> m<scp>agic‐sized</scp> quantum dots affects how the brain responds to oxidative stress

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Authors: Danielle Diniz Vilela, Allisson Benatti Justino, Douglas Carvalho Caixeta, Adriele Vieira de Souza, Renata Roland Teixeira, Rodrigo Rodrigues Franco, André Lopes Saraiva, Belchiolina Beatriz Fonseca, Noelio Oliveira Dantas, Anielle Christine Almeida Silva, Foued Salmen Espindola

Year

2021

Paper ID

13663

Status

Peer-reviewed

Abstract Read

~2 min

Abstract Words

215

Citations

11

Abstract

AbstractCdSe magic‐sized quantum dots (MSQDs) have been widely used as fluorescent probes in biological systems due to their excellent optical properties with a broader fluorescence spectrum and stable luminescence in biological media. However, they can be cytotoxic and alter the redox balance depending on the amounts of Cd2+ adsorbed on their surface. Thus, the present study aimed to evaluate whether increases in selenium concentration in the synthesis of CdSe‐MSQDs decrease the oxidative stress caused by Cd2+‐based quantum dots. CdSe‐MSQDs synthesized with different concentrations of selenium were investigated against oxidative stress in the brain of chicken embryos by examining total antioxidant capacity, lipid peroxidation, thiol, and glutathione contents, as well as the activities of glutathione peroxidase, superoxide dismutase (SOD), catalase (CAT), and glutathione reductase. In addition, the vascularization of the chorioallantoic membrane (CAM) analysis was performed. Higher selenium concentrations alter the surface defect levels (decrease free Cd2+) and controlled the oxidative effects of CdSe‐MSQDs by reducing the lipid peroxidation, restoring the glutathione defense system and the antioxidant enzymes SOD and CAT, and maintaining the vascular density of the CAM. The current findings reinforce the study of the effects of the presence of Cd2+ ions on the surface of quantum dots, changing toxicity, and aiming interesting strategies of nanomaterials in biological systems.

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  • AbstractCdSe magic‐sized quantum dots (MSQDs) have been widely used as fluorescent probes in biological systems due to their excellent optical properties with a broader...

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