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Synchrotron-Based X-ray Fluorescence Imaging Elucidates Uranium Toxicokinetics in Daphnia magna

[Image: see text] A combination of synchrotron-based elemental analysis and acute toxicity tests was used to investigate the biodistribution and adverse effects in Daphnia magna exposed to uranium nanoparticle (UNP, 3–5 nm) suspensions or to uranium reference (U(ref)) solutions. Speciation analysis...

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Autores principales: Byrnes, Ian, Rossbach, Lisa Magdalena, Brede, Dag Anders, Grolimund, Daniel, Ferreira Sanchez, Dario, Nuyts, Gert, Čuba, Václav, Reinoso-Maset, Estela, Salbu, Brit, Janssens, Koen, Oughton, Deborah, Scheibener, Shane, Teien, Hans-Christian, Lind, Ole Christian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10062025/
https://www.ncbi.nlm.nih.gov/pubmed/36921214
http://dx.doi.org/10.1021/acsnano.2c06111
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author Byrnes, Ian
Rossbach, Lisa Magdalena
Brede, Dag Anders
Grolimund, Daniel
Ferreira Sanchez, Dario
Nuyts, Gert
Čuba, Václav
Reinoso-Maset, Estela
Salbu, Brit
Janssens, Koen
Oughton, Deborah
Scheibener, Shane
Teien, Hans-Christian
Lind, Ole Christian
author_facet Byrnes, Ian
Rossbach, Lisa Magdalena
Brede, Dag Anders
Grolimund, Daniel
Ferreira Sanchez, Dario
Nuyts, Gert
Čuba, Václav
Reinoso-Maset, Estela
Salbu, Brit
Janssens, Koen
Oughton, Deborah
Scheibener, Shane
Teien, Hans-Christian
Lind, Ole Christian
author_sort Byrnes, Ian
collection PubMed
description [Image: see text] A combination of synchrotron-based elemental analysis and acute toxicity tests was used to investigate the biodistribution and adverse effects in Daphnia magna exposed to uranium nanoparticle (UNP, 3–5 nm) suspensions or to uranium reference (U(ref)) solutions. Speciation analysis revealed similar size distributions between exposures, and toxicity tests showed comparable acute effects (UNP LC(50): 402 μg L(–1) [336–484], U(ref) LC(50): 268 μg L(–1) [229–315]). However, the uranium body burden was 3- to 5-fold greater in UNP-exposed daphnids, and analysis of survival as a function of body burden revealed a ∼5-fold higher specific toxicity from the U(ref) exposure. High-resolution X-ray fluorescence elemental maps of intact, whole daphnids from sublethal, acute exposures of both treatments revealed high uranium accumulation onto the gills (epipodites) as well as within the hepatic ceca and the intestinal lumen. Uranium uptake into the hemolymph circulatory system was inferred from signals observed in organs such as the heart and the maxillary gland. The substantial uptake in the maxillary gland and the associated nephridium suggests that these organs play a role in uranium removal from the hemolymph and subsequent excretion. Uranium was also observed associated with the embryos and the remnants of the chorion, suggesting uptake in the offspring. The identification of target organs and tissues is of major importance to the understanding of uranium and UNP toxicity and exposure characterization that should ultimately contribute to reducing uncertainties in related environmental impact and risk assessments.
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spelling pubmed-100620252023-03-31 Synchrotron-Based X-ray Fluorescence Imaging Elucidates Uranium Toxicokinetics in Daphnia magna Byrnes, Ian Rossbach, Lisa Magdalena Brede, Dag Anders Grolimund, Daniel Ferreira Sanchez, Dario Nuyts, Gert Čuba, Václav Reinoso-Maset, Estela Salbu, Brit Janssens, Koen Oughton, Deborah Scheibener, Shane Teien, Hans-Christian Lind, Ole Christian ACS Nano [Image: see text] A combination of synchrotron-based elemental analysis and acute toxicity tests was used to investigate the biodistribution and adverse effects in Daphnia magna exposed to uranium nanoparticle (UNP, 3–5 nm) suspensions or to uranium reference (U(ref)) solutions. Speciation analysis revealed similar size distributions between exposures, and toxicity tests showed comparable acute effects (UNP LC(50): 402 μg L(–1) [336–484], U(ref) LC(50): 268 μg L(–1) [229–315]). However, the uranium body burden was 3- to 5-fold greater in UNP-exposed daphnids, and analysis of survival as a function of body burden revealed a ∼5-fold higher specific toxicity from the U(ref) exposure. High-resolution X-ray fluorescence elemental maps of intact, whole daphnids from sublethal, acute exposures of both treatments revealed high uranium accumulation onto the gills (epipodites) as well as within the hepatic ceca and the intestinal lumen. Uranium uptake into the hemolymph circulatory system was inferred from signals observed in organs such as the heart and the maxillary gland. The substantial uptake in the maxillary gland and the associated nephridium suggests that these organs play a role in uranium removal from the hemolymph and subsequent excretion. Uranium was also observed associated with the embryos and the remnants of the chorion, suggesting uptake in the offspring. The identification of target organs and tissues is of major importance to the understanding of uranium and UNP toxicity and exposure characterization that should ultimately contribute to reducing uncertainties in related environmental impact and risk assessments. American Chemical Society 2023-03-15 /pmc/articles/PMC10062025/ /pubmed/36921214 http://dx.doi.org/10.1021/acsnano.2c06111 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Byrnes, Ian
Rossbach, Lisa Magdalena
Brede, Dag Anders
Grolimund, Daniel
Ferreira Sanchez, Dario
Nuyts, Gert
Čuba, Václav
Reinoso-Maset, Estela
Salbu, Brit
Janssens, Koen
Oughton, Deborah
Scheibener, Shane
Teien, Hans-Christian
Lind, Ole Christian
Synchrotron-Based X-ray Fluorescence Imaging Elucidates Uranium Toxicokinetics in Daphnia magna
title Synchrotron-Based X-ray Fluorescence Imaging Elucidates Uranium Toxicokinetics in Daphnia magna
title_full Synchrotron-Based X-ray Fluorescence Imaging Elucidates Uranium Toxicokinetics in Daphnia magna
title_fullStr Synchrotron-Based X-ray Fluorescence Imaging Elucidates Uranium Toxicokinetics in Daphnia magna
title_full_unstemmed Synchrotron-Based X-ray Fluorescence Imaging Elucidates Uranium Toxicokinetics in Daphnia magna
title_short Synchrotron-Based X-ray Fluorescence Imaging Elucidates Uranium Toxicokinetics in Daphnia magna
title_sort synchrotron-based x-ray fluorescence imaging elucidates uranium toxicokinetics in daphnia magna
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10062025/
https://www.ncbi.nlm.nih.gov/pubmed/36921214
http://dx.doi.org/10.1021/acsnano.2c06111
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