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Iron oxide nanoparticles trigger endoplasmic reticulum damage in steatotic hepatic cells

Iron oxide nanoparticles (IONPs) are being actively researched in various biomedical applications, particularly as magnetic resonance imaging (MRI) contrast agents for diagnosing various liver pathologies like nonalcoholic fatty liver diseases, nonalcoholic steatohepatitis, and cirrhosis. Emerging e...

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Autores principales: Uzhytchak, Mariia, Lunova, Mariia, Smolková, Barbora, Jirsa, Milan, Dejneka, Alexandr, Lunov, Oleg
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10408607/
https://www.ncbi.nlm.nih.gov/pubmed/37560414
http://dx.doi.org/10.1039/d3na00071k
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author Uzhytchak, Mariia
Lunova, Mariia
Smolková, Barbora
Jirsa, Milan
Dejneka, Alexandr
Lunov, Oleg
author_facet Uzhytchak, Mariia
Lunova, Mariia
Smolková, Barbora
Jirsa, Milan
Dejneka, Alexandr
Lunov, Oleg
author_sort Uzhytchak, Mariia
collection PubMed
description Iron oxide nanoparticles (IONPs) are being actively researched in various biomedical applications, particularly as magnetic resonance imaging (MRI) contrast agents for diagnosing various liver pathologies like nonalcoholic fatty liver diseases, nonalcoholic steatohepatitis, and cirrhosis. Emerging evidence suggests that IONPs may exacerbate hepatic steatosis and liver injury in susceptible livers such as those with nonalcoholic fatty liver disease. However, our understanding of how IONPs may affect steatotic cells at the sub-cellular level is still fragmented. Generally, there is a lack of studies identifying the molecular mechanisms of potential toxic and/or adverse effects of IONPs on “non-heathy” in vitro models. In this study, we demonstrate that IONPs, at a dose that does not cause general toxicity in hepatic cells (Alexander and HepG2), induce significant toxicity in steatotic cells (cells loaded with non-toxic doses of palmitic acid). Mechanistically, co-treatment with PA and IONPs resulted in endoplasmic reticulum (ER) stress, accompanied by the release of cathepsin B from lysosomes to the cytosol. The release of cathepsin B, along with ER stress, led to the activation of apoptotic cell death. Our results suggest that it is necessary to consider the interaction between IONPs and the liver, especially in susceptible livers. This study provides important basic knowledge for the future optimization of IONPs as MRI contrast agents for various biomedical applications.
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spelling pubmed-104086072023-08-09 Iron oxide nanoparticles trigger endoplasmic reticulum damage in steatotic hepatic cells Uzhytchak, Mariia Lunova, Mariia Smolková, Barbora Jirsa, Milan Dejneka, Alexandr Lunov, Oleg Nanoscale Adv Chemistry Iron oxide nanoparticles (IONPs) are being actively researched in various biomedical applications, particularly as magnetic resonance imaging (MRI) contrast agents for diagnosing various liver pathologies like nonalcoholic fatty liver diseases, nonalcoholic steatohepatitis, and cirrhosis. Emerging evidence suggests that IONPs may exacerbate hepatic steatosis and liver injury in susceptible livers such as those with nonalcoholic fatty liver disease. However, our understanding of how IONPs may affect steatotic cells at the sub-cellular level is still fragmented. Generally, there is a lack of studies identifying the molecular mechanisms of potential toxic and/or adverse effects of IONPs on “non-heathy” in vitro models. In this study, we demonstrate that IONPs, at a dose that does not cause general toxicity in hepatic cells (Alexander and HepG2), induce significant toxicity in steatotic cells (cells loaded with non-toxic doses of palmitic acid). Mechanistically, co-treatment with PA and IONPs resulted in endoplasmic reticulum (ER) stress, accompanied by the release of cathepsin B from lysosomes to the cytosol. The release of cathepsin B, along with ER stress, led to the activation of apoptotic cell death. Our results suggest that it is necessary to consider the interaction between IONPs and the liver, especially in susceptible livers. This study provides important basic knowledge for the future optimization of IONPs as MRI contrast agents for various biomedical applications. RSC 2023-07-18 /pmc/articles/PMC10408607/ /pubmed/37560414 http://dx.doi.org/10.1039/d3na00071k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Uzhytchak, Mariia
Lunova, Mariia
Smolková, Barbora
Jirsa, Milan
Dejneka, Alexandr
Lunov, Oleg
Iron oxide nanoparticles trigger endoplasmic reticulum damage in steatotic hepatic cells
title Iron oxide nanoparticles trigger endoplasmic reticulum damage in steatotic hepatic cells
title_full Iron oxide nanoparticles trigger endoplasmic reticulum damage in steatotic hepatic cells
title_fullStr Iron oxide nanoparticles trigger endoplasmic reticulum damage in steatotic hepatic cells
title_full_unstemmed Iron oxide nanoparticles trigger endoplasmic reticulum damage in steatotic hepatic cells
title_short Iron oxide nanoparticles trigger endoplasmic reticulum damage in steatotic hepatic cells
title_sort iron oxide nanoparticles trigger endoplasmic reticulum damage in steatotic hepatic cells
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10408607/
https://www.ncbi.nlm.nih.gov/pubmed/37560414
http://dx.doi.org/10.1039/d3na00071k
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