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Risk Analysis and Technology Assessment of Emerging (Gd,Ce)(2)O(2)S Multifunctional Nanoparticles: An Attempt for Early Safer-by-Design Approach

Acceptability and relevance of nanoparticles in the society is greatly improved using a safer-by-design strategy. However, this is difficult to implement when too late in the development process or when nanoparticles are already on the market (e.g., TiO(2)). We employ this strategy for emerging nano...

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Autores principales: Nguyen, Anh-Minh, Pradas del Real, Ana Elena, Durupthy, Olivier, Lanone, Sophie, Chanéac, Corinne, Carenco, Sophie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8840297/
https://www.ncbi.nlm.nih.gov/pubmed/35159767
http://dx.doi.org/10.3390/nano12030422
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author Nguyen, Anh-Minh
Pradas del Real, Ana Elena
Durupthy, Olivier
Lanone, Sophie
Chanéac, Corinne
Carenco, Sophie
author_facet Nguyen, Anh-Minh
Pradas del Real, Ana Elena
Durupthy, Olivier
Lanone, Sophie
Chanéac, Corinne
Carenco, Sophie
author_sort Nguyen, Anh-Minh
collection PubMed
description Acceptability and relevance of nanoparticles in the society is greatly improved using a safer-by-design strategy. However, this is difficult to implement when too late in the development process or when nanoparticles are already on the market (e.g., TiO(2)). We employ this strategy for emerging nanoparticles of lanthanide oxysulfide of formula (Gd,Ce)(2)O(2)S, relevant for photocatalysis as well as for multimodal imaging, as the bandgap of the nanoparticles, related to their Ce content, impacts their ability to absorb visible light. As a first step, we investigated the production of reactive oxygen species (ROS) as a function of cerium content, in abiotic conditions and in vitro using murine macrophage RAW 264.7 cell line. We demonstrate that, at sub-lethal doses, Ce-containing oxysulfide nanoparticles are responsible for a higher ROS intracellular formation than cerium-free Gd(2)O(2)S nanoparticles, although no significant inflammatory response or oxidative stress was measured. Moreover, there was no significant loss of cerium as free cation from the nanoparticles, as evidenced by X-ray fluorescence mapping. Based on these results, we propose a risk analysis for lanthanide oxysulfide nanoparticles, leading to a technology assessment that fulfills the safer-by-design strategy.
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spelling pubmed-88402972022-02-13 Risk Analysis and Technology Assessment of Emerging (Gd,Ce)(2)O(2)S Multifunctional Nanoparticles: An Attempt for Early Safer-by-Design Approach Nguyen, Anh-Minh Pradas del Real, Ana Elena Durupthy, Olivier Lanone, Sophie Chanéac, Corinne Carenco, Sophie Nanomaterials (Basel) Article Acceptability and relevance of nanoparticles in the society is greatly improved using a safer-by-design strategy. However, this is difficult to implement when too late in the development process or when nanoparticles are already on the market (e.g., TiO(2)). We employ this strategy for emerging nanoparticles of lanthanide oxysulfide of formula (Gd,Ce)(2)O(2)S, relevant for photocatalysis as well as for multimodal imaging, as the bandgap of the nanoparticles, related to their Ce content, impacts their ability to absorb visible light. As a first step, we investigated the production of reactive oxygen species (ROS) as a function of cerium content, in abiotic conditions and in vitro using murine macrophage RAW 264.7 cell line. We demonstrate that, at sub-lethal doses, Ce-containing oxysulfide nanoparticles are responsible for a higher ROS intracellular formation than cerium-free Gd(2)O(2)S nanoparticles, although no significant inflammatory response or oxidative stress was measured. Moreover, there was no significant loss of cerium as free cation from the nanoparticles, as evidenced by X-ray fluorescence mapping. Based on these results, we propose a risk analysis for lanthanide oxysulfide nanoparticles, leading to a technology assessment that fulfills the safer-by-design strategy. MDPI 2022-01-27 /pmc/articles/PMC8840297/ /pubmed/35159767 http://dx.doi.org/10.3390/nano12030422 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Nguyen, Anh-Minh
Pradas del Real, Ana Elena
Durupthy, Olivier
Lanone, Sophie
Chanéac, Corinne
Carenco, Sophie
Risk Analysis and Technology Assessment of Emerging (Gd,Ce)(2)O(2)S Multifunctional Nanoparticles: An Attempt for Early Safer-by-Design Approach
title Risk Analysis and Technology Assessment of Emerging (Gd,Ce)(2)O(2)S Multifunctional Nanoparticles: An Attempt for Early Safer-by-Design Approach
title_full Risk Analysis and Technology Assessment of Emerging (Gd,Ce)(2)O(2)S Multifunctional Nanoparticles: An Attempt for Early Safer-by-Design Approach
title_fullStr Risk Analysis and Technology Assessment of Emerging (Gd,Ce)(2)O(2)S Multifunctional Nanoparticles: An Attempt for Early Safer-by-Design Approach
title_full_unstemmed Risk Analysis and Technology Assessment of Emerging (Gd,Ce)(2)O(2)S Multifunctional Nanoparticles: An Attempt for Early Safer-by-Design Approach
title_short Risk Analysis and Technology Assessment of Emerging (Gd,Ce)(2)O(2)S Multifunctional Nanoparticles: An Attempt for Early Safer-by-Design Approach
title_sort risk analysis and technology assessment of emerging (gd,ce)(2)o(2)s multifunctional nanoparticles: an attempt for early safer-by-design approach
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8840297/
https://www.ncbi.nlm.nih.gov/pubmed/35159767
http://dx.doi.org/10.3390/nano12030422
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