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Assessment of the Tolerance of a Chlorophyte Desmodesmus to CuO-NP for Evaluation of the Nanopollution Bioremediation Potential of This Microalga

Broad application of CuO nanoparticles (CuO-NP) for industrial and household purposes leads to a continuous increase in their discharge to, and, hence, ever-increasing environmental hazards for aquatic ecosystems. Microalgae-based technologies hold promise for bioremediation of diverse hazardous mic...

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Autores principales: Chebotaryova, Svetlana P., Zakharova, Olga V., Gusev, Alexander A., Baranchikov, Petr A., Kolesnikov, Evgenii A., Yakusheva, Anastasia S., Skripnikova, Elena V., Lobakova, Elena S., Xu, Jingliang, Alam, Md. Asraful, Solovchenko, Alexei E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9959455/
https://www.ncbi.nlm.nih.gov/pubmed/36839106
http://dx.doi.org/10.3390/nano13040737
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author Chebotaryova, Svetlana P.
Zakharova, Olga V.
Gusev, Alexander A.
Baranchikov, Petr A.
Kolesnikov, Evgenii A.
Yakusheva, Anastasia S.
Skripnikova, Elena V.
Lobakova, Elena S.
Xu, Jingliang
Alam, Md. Asraful
Solovchenko, Alexei E.
author_facet Chebotaryova, Svetlana P.
Zakharova, Olga V.
Gusev, Alexander A.
Baranchikov, Petr A.
Kolesnikov, Evgenii A.
Yakusheva, Anastasia S.
Skripnikova, Elena V.
Lobakova, Elena S.
Xu, Jingliang
Alam, Md. Asraful
Solovchenko, Alexei E.
author_sort Chebotaryova, Svetlana P.
collection PubMed
description Broad application of CuO nanoparticles (CuO-NP) for industrial and household purposes leads to a continuous increase in their discharge to, and, hence, ever-increasing environmental hazards for aquatic ecosystems. Microalgae-based technologies hold promise for bioremediation of diverse hazardous micropollutants (HMP), including NP, from wastewater. In this study, we tested the ability of the green microalga Desmodesmus sp. to accumulate CuO-NP or their components. We also assessed the tolerance of this microalga to the environmentally relevant concentrations of CuO-NP. Using scanning electron microscopy, we demonstrated that the average size of CuO-NP was 50–100 nm, and their purity was confirmed with elemental composition analysis. Tests of the colloidal suspensions of CuO-NP showed that the hydrodynamic diameter of CuO-NP and their aggregates was below 100 nm. Flow cytometry analysis showed that CuO-NP at a concentration of 100 µg L(−1) slightly inhibited the viability of microalgae cells and led to an increase in their oxidative stress. The assessment of the condition of photosystem II showed that CuO-NP exert a multifaceted effect on the photosynthetic apparatus of Desmodesmus sp., depending on the concentration of and the exposure to the CuO-NP. Desmodesmus sp. turned to be relatively tolerant to CuO-NP. In addition, the ICP-MS method revealed increased bioaccumulation of copper by microalgae cells in the experimental groups. The outcomes of this study indicate that the Desmodesmus sp. has a significant potential for bioremoval of the copper-based nanostructured HMP from an aquatic environment.
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spelling pubmed-99594552023-02-26 Assessment of the Tolerance of a Chlorophyte Desmodesmus to CuO-NP for Evaluation of the Nanopollution Bioremediation Potential of This Microalga Chebotaryova, Svetlana P. Zakharova, Olga V. Gusev, Alexander A. Baranchikov, Petr A. Kolesnikov, Evgenii A. Yakusheva, Anastasia S. Skripnikova, Elena V. Lobakova, Elena S. Xu, Jingliang Alam, Md. Asraful Solovchenko, Alexei E. Nanomaterials (Basel) Article Broad application of CuO nanoparticles (CuO-NP) for industrial and household purposes leads to a continuous increase in their discharge to, and, hence, ever-increasing environmental hazards for aquatic ecosystems. Microalgae-based technologies hold promise for bioremediation of diverse hazardous micropollutants (HMP), including NP, from wastewater. In this study, we tested the ability of the green microalga Desmodesmus sp. to accumulate CuO-NP or their components. We also assessed the tolerance of this microalga to the environmentally relevant concentrations of CuO-NP. Using scanning electron microscopy, we demonstrated that the average size of CuO-NP was 50–100 nm, and their purity was confirmed with elemental composition analysis. Tests of the colloidal suspensions of CuO-NP showed that the hydrodynamic diameter of CuO-NP and their aggregates was below 100 nm. Flow cytometry analysis showed that CuO-NP at a concentration of 100 µg L(−1) slightly inhibited the viability of microalgae cells and led to an increase in their oxidative stress. The assessment of the condition of photosystem II showed that CuO-NP exert a multifaceted effect on the photosynthetic apparatus of Desmodesmus sp., depending on the concentration of and the exposure to the CuO-NP. Desmodesmus sp. turned to be relatively tolerant to CuO-NP. In addition, the ICP-MS method revealed increased bioaccumulation of copper by microalgae cells in the experimental groups. The outcomes of this study indicate that the Desmodesmus sp. has a significant potential for bioremoval of the copper-based nanostructured HMP from an aquatic environment. MDPI 2023-02-15 /pmc/articles/PMC9959455/ /pubmed/36839106 http://dx.doi.org/10.3390/nano13040737 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
Chebotaryova, Svetlana P.
Zakharova, Olga V.
Gusev, Alexander A.
Baranchikov, Petr A.
Kolesnikov, Evgenii A.
Yakusheva, Anastasia S.
Skripnikova, Elena V.
Lobakova, Elena S.
Xu, Jingliang
Alam, Md. Asraful
Solovchenko, Alexei E.
Assessment of the Tolerance of a Chlorophyte Desmodesmus to CuO-NP for Evaluation of the Nanopollution Bioremediation Potential of This Microalga
title Assessment of the Tolerance of a Chlorophyte Desmodesmus to CuO-NP for Evaluation of the Nanopollution Bioremediation Potential of This Microalga
title_full Assessment of the Tolerance of a Chlorophyte Desmodesmus to CuO-NP for Evaluation of the Nanopollution Bioremediation Potential of This Microalga
title_fullStr Assessment of the Tolerance of a Chlorophyte Desmodesmus to CuO-NP for Evaluation of the Nanopollution Bioremediation Potential of This Microalga
title_full_unstemmed Assessment of the Tolerance of a Chlorophyte Desmodesmus to CuO-NP for Evaluation of the Nanopollution Bioremediation Potential of This Microalga
title_short Assessment of the Tolerance of a Chlorophyte Desmodesmus to CuO-NP for Evaluation of the Nanopollution Bioremediation Potential of This Microalga
title_sort assessment of the tolerance of a chlorophyte desmodesmus to cuo-np for evaluation of the nanopollution bioremediation potential of this microalga
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9959455/
https://www.ncbi.nlm.nih.gov/pubmed/36839106
http://dx.doi.org/10.3390/nano13040737
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