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Mercury-Pollution Induction of Intracellular Lipid Accumulation and Lysosomal Compartment Amplification in the Benthic Foraminifer Ammonia parkinsoniana

Heavy metals such as mercury (Hg) pose a significant health hazard through bioaccumulation and biomagnification. By penetrating cell membranes, heavy metal ions may lead to pathological conditions. Here we examined the responses of Ammonia parkinsoniana, a benthic foraminiferan, to different concent...

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Autores principales: Frontalini, Fabrizio, Curzi, Davide, Cesarini, Erica, Canonico, Barbara, Giordano, Francesco M., De Matteis, Rita, Bernhard, Joan M., Pieretti, Nadia, Gu, Baohua, Eskelsen, Jeremy R., Jubb, Aaron M., Zhao, Linduo, Pierce, Eric M., Gobbi, Pietro, Papa, Stefano, Coccioni, Rodolfo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5014445/
https://www.ncbi.nlm.nih.gov/pubmed/27603511
http://dx.doi.org/10.1371/journal.pone.0162401
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author Frontalini, Fabrizio
Curzi, Davide
Cesarini, Erica
Canonico, Barbara
Giordano, Francesco M.
De Matteis, Rita
Bernhard, Joan M.
Pieretti, Nadia
Gu, Baohua
Eskelsen, Jeremy R.
Jubb, Aaron M.
Zhao, Linduo
Pierce, Eric M.
Gobbi, Pietro
Papa, Stefano
Coccioni, Rodolfo
author_facet Frontalini, Fabrizio
Curzi, Davide
Cesarini, Erica
Canonico, Barbara
Giordano, Francesco M.
De Matteis, Rita
Bernhard, Joan M.
Pieretti, Nadia
Gu, Baohua
Eskelsen, Jeremy R.
Jubb, Aaron M.
Zhao, Linduo
Pierce, Eric M.
Gobbi, Pietro
Papa, Stefano
Coccioni, Rodolfo
author_sort Frontalini, Fabrizio
collection PubMed
description Heavy metals such as mercury (Hg) pose a significant health hazard through bioaccumulation and biomagnification. By penetrating cell membranes, heavy metal ions may lead to pathological conditions. Here we examined the responses of Ammonia parkinsoniana, a benthic foraminiferan, to different concentrations of Hg in the artificial sea water. Confocal images of untreated and treated specimens using fluorescent probes (Nile Red and Acridine Orange) provided an opportunity for visualizing the intracellular lipid accumulation and acidic compartment regulation. With increased Hg over time, we observed an increased number of lipid droplets, which may have acted as a detoxifying organelle where Hg is sequestered and biologically inactivated. Further, Hg seems to promote the proliferation of lysosomes both in terms of number and dimension that, at the highest level of Hg, resulted in cell death. We report, for the first time, the presence of Hg within the foraminiferal cell: at the basal part of pores, in the organic linings of the foramen/septa, and as cytoplasmic accumulations.
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spelling pubmed-50144452016-09-27 Mercury-Pollution Induction of Intracellular Lipid Accumulation and Lysosomal Compartment Amplification in the Benthic Foraminifer Ammonia parkinsoniana Frontalini, Fabrizio Curzi, Davide Cesarini, Erica Canonico, Barbara Giordano, Francesco M. De Matteis, Rita Bernhard, Joan M. Pieretti, Nadia Gu, Baohua Eskelsen, Jeremy R. Jubb, Aaron M. Zhao, Linduo Pierce, Eric M. Gobbi, Pietro Papa, Stefano Coccioni, Rodolfo PLoS One Research Article Heavy metals such as mercury (Hg) pose a significant health hazard through bioaccumulation and biomagnification. By penetrating cell membranes, heavy metal ions may lead to pathological conditions. Here we examined the responses of Ammonia parkinsoniana, a benthic foraminiferan, to different concentrations of Hg in the artificial sea water. Confocal images of untreated and treated specimens using fluorescent probes (Nile Red and Acridine Orange) provided an opportunity for visualizing the intracellular lipid accumulation and acidic compartment regulation. With increased Hg over time, we observed an increased number of lipid droplets, which may have acted as a detoxifying organelle where Hg is sequestered and biologically inactivated. Further, Hg seems to promote the proliferation of lysosomes both in terms of number and dimension that, at the highest level of Hg, resulted in cell death. We report, for the first time, the presence of Hg within the foraminiferal cell: at the basal part of pores, in the organic linings of the foramen/septa, and as cytoplasmic accumulations. Public Library of Science 2016-09-07 /pmc/articles/PMC5014445/ /pubmed/27603511 http://dx.doi.org/10.1371/journal.pone.0162401 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Frontalini, Fabrizio
Curzi, Davide
Cesarini, Erica
Canonico, Barbara
Giordano, Francesco M.
De Matteis, Rita
Bernhard, Joan M.
Pieretti, Nadia
Gu, Baohua
Eskelsen, Jeremy R.
Jubb, Aaron M.
Zhao, Linduo
Pierce, Eric M.
Gobbi, Pietro
Papa, Stefano
Coccioni, Rodolfo
Mercury-Pollution Induction of Intracellular Lipid Accumulation and Lysosomal Compartment Amplification in the Benthic Foraminifer Ammonia parkinsoniana
title Mercury-Pollution Induction of Intracellular Lipid Accumulation and Lysosomal Compartment Amplification in the Benthic Foraminifer Ammonia parkinsoniana
title_full Mercury-Pollution Induction of Intracellular Lipid Accumulation and Lysosomal Compartment Amplification in the Benthic Foraminifer Ammonia parkinsoniana
title_fullStr Mercury-Pollution Induction of Intracellular Lipid Accumulation and Lysosomal Compartment Amplification in the Benthic Foraminifer Ammonia parkinsoniana
title_full_unstemmed Mercury-Pollution Induction of Intracellular Lipid Accumulation and Lysosomal Compartment Amplification in the Benthic Foraminifer Ammonia parkinsoniana
title_short Mercury-Pollution Induction of Intracellular Lipid Accumulation and Lysosomal Compartment Amplification in the Benthic Foraminifer Ammonia parkinsoniana
title_sort mercury-pollution induction of intracellular lipid accumulation and lysosomal compartment amplification in the benthic foraminifer ammonia parkinsoniana
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5014445/
https://www.ncbi.nlm.nih.gov/pubmed/27603511
http://dx.doi.org/10.1371/journal.pone.0162401
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