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The Differential Effect of Carbon Dots on Gene Expression and DNA Methylation of Human Embryonic Lung Fibroblasts as a Function of Surface Charge and Dose

This study presents a toxicological evaluation of two types of carbon dots (CD), similar in size (<10 nm) but differing in surface charge. Whole-genome mRNA and miRNA expression (RNAseq), as well as gene-specific DNA methylation changes, were analyzed in human embryonic lung fibroblasts (HEL 1246...

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Autores principales: Sima, Michal, Vrbova, Kristyna, Zavodna, Tana, Honkova, Katerina, Chvojkova, Irena, Ambroz, Antonin, Klema, Jiri, Rossnerova, Andrea, Polakova, Katerina, Malina, Tomas, Belza, Jan, Topinka, Jan, Rossner, Pavel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7369946/
https://www.ncbi.nlm.nih.gov/pubmed/32635498
http://dx.doi.org/10.3390/ijms21134763
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author Sima, Michal
Vrbova, Kristyna
Zavodna, Tana
Honkova, Katerina
Chvojkova, Irena
Ambroz, Antonin
Klema, Jiri
Rossnerova, Andrea
Polakova, Katerina
Malina, Tomas
Belza, Jan
Topinka, Jan
Rossner, Pavel
author_facet Sima, Michal
Vrbova, Kristyna
Zavodna, Tana
Honkova, Katerina
Chvojkova, Irena
Ambroz, Antonin
Klema, Jiri
Rossnerova, Andrea
Polakova, Katerina
Malina, Tomas
Belza, Jan
Topinka, Jan
Rossner, Pavel
author_sort Sima, Michal
collection PubMed
description This study presents a toxicological evaluation of two types of carbon dots (CD), similar in size (<10 nm) but differing in surface charge. Whole-genome mRNA and miRNA expression (RNAseq), as well as gene-specific DNA methylation changes, were analyzed in human embryonic lung fibroblasts (HEL 12469) after 4 h and 24 h exposure to concentrations of 10 and 50 µg/mL (for positive charged CD; pCD) or 10 and 100 µg/mL (for negative charged CD, nCD). The results showed a distinct response for the tested nanomaterials (NMs). The exposure to pCD induced the expression of a substantially lower number of mRNAs than those to nCD, with few commonly differentially expressed genes between the two CDs. For both CDs, the number of deregulated mRNAs increased with the dose and exposure time. The pathway analysis revealed a deregulation of processes associated with immune response, tumorigenesis and cell cycle regulation, after exposure to pCD. For nCD treatment, pathways relating to cell proliferation, apoptosis, oxidative stress, gene expression, and cycle regulation were detected. The expression of miRNAs followed a similar pattern: more pronounced changes after nCD exposure and few commonly differentially expressed miRNAs between the two CDs. For both CDs the pathway analysis based on miRNA-mRNA interactions, showed a deregulation of cancer-related pathways, immune processes and processes involved in extracellular matrix interactions. DNA methylation was not affected by exposure to any of the two CDs. In summary, although the tested CDs induced distinct responses on the level of mRNA and miRNA expression, pathway analyses revealed a potential common biological impact of both NMs independent of their surface charge.
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spelling pubmed-73699462020-07-21 The Differential Effect of Carbon Dots on Gene Expression and DNA Methylation of Human Embryonic Lung Fibroblasts as a Function of Surface Charge and Dose Sima, Michal Vrbova, Kristyna Zavodna, Tana Honkova, Katerina Chvojkova, Irena Ambroz, Antonin Klema, Jiri Rossnerova, Andrea Polakova, Katerina Malina, Tomas Belza, Jan Topinka, Jan Rossner, Pavel Int J Mol Sci Article This study presents a toxicological evaluation of two types of carbon dots (CD), similar in size (<10 nm) but differing in surface charge. Whole-genome mRNA and miRNA expression (RNAseq), as well as gene-specific DNA methylation changes, were analyzed in human embryonic lung fibroblasts (HEL 12469) after 4 h and 24 h exposure to concentrations of 10 and 50 µg/mL (for positive charged CD; pCD) or 10 and 100 µg/mL (for negative charged CD, nCD). The results showed a distinct response for the tested nanomaterials (NMs). The exposure to pCD induced the expression of a substantially lower number of mRNAs than those to nCD, with few commonly differentially expressed genes between the two CDs. For both CDs, the number of deregulated mRNAs increased with the dose and exposure time. The pathway analysis revealed a deregulation of processes associated with immune response, tumorigenesis and cell cycle regulation, after exposure to pCD. For nCD treatment, pathways relating to cell proliferation, apoptosis, oxidative stress, gene expression, and cycle regulation were detected. The expression of miRNAs followed a similar pattern: more pronounced changes after nCD exposure and few commonly differentially expressed miRNAs between the two CDs. For both CDs the pathway analysis based on miRNA-mRNA interactions, showed a deregulation of cancer-related pathways, immune processes and processes involved in extracellular matrix interactions. DNA methylation was not affected by exposure to any of the two CDs. In summary, although the tested CDs induced distinct responses on the level of mRNA and miRNA expression, pathway analyses revealed a potential common biological impact of both NMs independent of their surface charge. MDPI 2020-07-04 /pmc/articles/PMC7369946/ /pubmed/32635498 http://dx.doi.org/10.3390/ijms21134763 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sima, Michal
Vrbova, Kristyna
Zavodna, Tana
Honkova, Katerina
Chvojkova, Irena
Ambroz, Antonin
Klema, Jiri
Rossnerova, Andrea
Polakova, Katerina
Malina, Tomas
Belza, Jan
Topinka, Jan
Rossner, Pavel
The Differential Effect of Carbon Dots on Gene Expression and DNA Methylation of Human Embryonic Lung Fibroblasts as a Function of Surface Charge and Dose
title The Differential Effect of Carbon Dots on Gene Expression and DNA Methylation of Human Embryonic Lung Fibroblasts as a Function of Surface Charge and Dose
title_full The Differential Effect of Carbon Dots on Gene Expression and DNA Methylation of Human Embryonic Lung Fibroblasts as a Function of Surface Charge and Dose
title_fullStr The Differential Effect of Carbon Dots on Gene Expression and DNA Methylation of Human Embryonic Lung Fibroblasts as a Function of Surface Charge and Dose
title_full_unstemmed The Differential Effect of Carbon Dots on Gene Expression and DNA Methylation of Human Embryonic Lung Fibroblasts as a Function of Surface Charge and Dose
title_short The Differential Effect of Carbon Dots on Gene Expression and DNA Methylation of Human Embryonic Lung Fibroblasts as a Function of Surface Charge and Dose
title_sort differential effect of carbon dots on gene expression and dna methylation of human embryonic lung fibroblasts as a function of surface charge and dose
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7369946/
https://www.ncbi.nlm.nih.gov/pubmed/32635498
http://dx.doi.org/10.3390/ijms21134763
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