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Possible Interaction between ZnS Nanoparticles and Phosphonates on Mediterranean Clams Ruditapes decussatus

This study aims to evaluate the toxicity of ZnS nanoparticles (ZnS NP50 = 50 µg/L and ZnS NP100 = 100 µg/L) and diethyl (3-cyano-1-hydroxy-2-methyl-1-phenylpropyl)phosphonate or P (P50 = 50 µg/L and P100 = 100 µg/L) in the clams Ruditapes decussatus using chemical and biochemical approaches. The res...

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Autores principales: Saidani, Wiem, Bouzidi, Imen, Khazri, Abdelhafidh, Ghannem, Samir, Aouani, Iyadh, Fkiri, Anis, Touil, Soufiane, Alghonaim, Mohammed I., Alsalamah, Sulaiman A., Qurtam, Ashraf A., Beyrem, Hamouda, Boufahja, Fehmi, Sellami, Badreddine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10059899/
https://www.ncbi.nlm.nih.gov/pubmed/36985432
http://dx.doi.org/10.3390/molecules28062460
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author Saidani, Wiem
Bouzidi, Imen
Khazri, Abdelhafidh
Ghannem, Samir
Aouani, Iyadh
Fkiri, Anis
Touil, Soufiane
Alghonaim, Mohammed I.
Alsalamah, Sulaiman A.
Qurtam, Ashraf A.
Beyrem, Hamouda
Boufahja, Fehmi
Sellami, Badreddine
author_facet Saidani, Wiem
Bouzidi, Imen
Khazri, Abdelhafidh
Ghannem, Samir
Aouani, Iyadh
Fkiri, Anis
Touil, Soufiane
Alghonaim, Mohammed I.
Alsalamah, Sulaiman A.
Qurtam, Ashraf A.
Beyrem, Hamouda
Boufahja, Fehmi
Sellami, Badreddine
author_sort Saidani, Wiem
collection PubMed
description This study aims to evaluate the toxicity of ZnS nanoparticles (ZnS NP50 = 50 µg/L and ZnS NP100 = 100 µg/L) and diethyl (3-cyano-1-hydroxy-2-methyl-1-phenylpropyl)phosphonate or P (P50 = 50 µg/L and P100 = 100 µg/L) in the clams Ruditapes decussatus using chemical and biochemical approaches. The results demonstrated that clams accumulate ZnS NPs and other metallic elements following exposure. Moreover, ZnS NPs and P separately lead to ROS overproduction, while a mixture of both contaminants has no effect. In addition, data showed that exposure to P100 resulted in increased levels of oxidative stress enzyme activities catalase (CAT) in the gills and digestive glands. A similar trend was also observed in the digestive glands of clams treated with ZnS100. In contrast, CAT activity was decreased in the gills at the same concentration. Exposure to ZnS100 and P100 separately leads to a decrease in acetylcholinesterase (AChE) levels in both gills and digestive glands. Thus, AChE and CAT after co-exposure to an environmental mixture of nanoparticles (ZnS100) and phosphonate (P100) did not show any differences between treated and non-treated clams. The outcome of this work certifies the use of biomarkers and chemical assay when estimating the effects of phosphonate and nanoparticles as part of an ecotoxicological assessment program. An exceptional focus was given to the interaction between ZnS NPs and P. The antioxidant activity of P has been demonstrated to have an additive effect on metal accumulation and antagonistic agents against oxidative stress in clams treated with ZnS NPs.
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spelling pubmed-100598992023-03-30 Possible Interaction between ZnS Nanoparticles and Phosphonates on Mediterranean Clams Ruditapes decussatus Saidani, Wiem Bouzidi, Imen Khazri, Abdelhafidh Ghannem, Samir Aouani, Iyadh Fkiri, Anis Touil, Soufiane Alghonaim, Mohammed I. Alsalamah, Sulaiman A. Qurtam, Ashraf A. Beyrem, Hamouda Boufahja, Fehmi Sellami, Badreddine Molecules Article This study aims to evaluate the toxicity of ZnS nanoparticles (ZnS NP50 = 50 µg/L and ZnS NP100 = 100 µg/L) and diethyl (3-cyano-1-hydroxy-2-methyl-1-phenylpropyl)phosphonate or P (P50 = 50 µg/L and P100 = 100 µg/L) in the clams Ruditapes decussatus using chemical and biochemical approaches. The results demonstrated that clams accumulate ZnS NPs and other metallic elements following exposure. Moreover, ZnS NPs and P separately lead to ROS overproduction, while a mixture of both contaminants has no effect. In addition, data showed that exposure to P100 resulted in increased levels of oxidative stress enzyme activities catalase (CAT) in the gills and digestive glands. A similar trend was also observed in the digestive glands of clams treated with ZnS100. In contrast, CAT activity was decreased in the gills at the same concentration. Exposure to ZnS100 and P100 separately leads to a decrease in acetylcholinesterase (AChE) levels in both gills and digestive glands. Thus, AChE and CAT after co-exposure to an environmental mixture of nanoparticles (ZnS100) and phosphonate (P100) did not show any differences between treated and non-treated clams. The outcome of this work certifies the use of biomarkers and chemical assay when estimating the effects of phosphonate and nanoparticles as part of an ecotoxicological assessment program. An exceptional focus was given to the interaction between ZnS NPs and P. The antioxidant activity of P has been demonstrated to have an additive effect on metal accumulation and antagonistic agents against oxidative stress in clams treated with ZnS NPs. MDPI 2023-03-08 /pmc/articles/PMC10059899/ /pubmed/36985432 http://dx.doi.org/10.3390/molecules28062460 Text en © 2023 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
Saidani, Wiem
Bouzidi, Imen
Khazri, Abdelhafidh
Ghannem, Samir
Aouani, Iyadh
Fkiri, Anis
Touil, Soufiane
Alghonaim, Mohammed I.
Alsalamah, Sulaiman A.
Qurtam, Ashraf A.
Beyrem, Hamouda
Boufahja, Fehmi
Sellami, Badreddine
Possible Interaction between ZnS Nanoparticles and Phosphonates on Mediterranean Clams Ruditapes decussatus
title Possible Interaction between ZnS Nanoparticles and Phosphonates on Mediterranean Clams Ruditapes decussatus
title_full Possible Interaction between ZnS Nanoparticles and Phosphonates on Mediterranean Clams Ruditapes decussatus
title_fullStr Possible Interaction between ZnS Nanoparticles and Phosphonates on Mediterranean Clams Ruditapes decussatus
title_full_unstemmed Possible Interaction between ZnS Nanoparticles and Phosphonates on Mediterranean Clams Ruditapes decussatus
title_short Possible Interaction between ZnS Nanoparticles and Phosphonates on Mediterranean Clams Ruditapes decussatus
title_sort possible interaction between zns nanoparticles and phosphonates on mediterranean clams ruditapes decussatus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10059899/
https://www.ncbi.nlm.nih.gov/pubmed/36985432
http://dx.doi.org/10.3390/molecules28062460
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