Cargando…

Responses of A549 human lung epithelial cells to cristobalite and α‐quartz exposures assessed by toxicoproteomics and gene expression analysis

In this study, we used cytotoxicity assays, proteomic and gene expression analyses to examine the difference in response of A549 cells to two silica particles that differ in physical properties, namely cristobalite (CR) and α‐quartz (Min‐U‐Sil 5, MI). Cytotoxicity assays such as lactate dehydrogenas...

Descripción completa

Detalles Bibliográficos
Autores principales: Vuong, Ngoc Q., Goegan, Patrick, De Rose, Francesco, Breznan, Dalibor, Thomson, Errol M., O'Brien, Julie S., Karthikeyan, Subramanian, Williams, Andrew, Vincent, Renaud, Kumarathasan, Premkumari
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5434822/
https://www.ncbi.nlm.nih.gov/pubmed/27917503
http://dx.doi.org/10.1002/jat.3420
_version_ 1783237123591110656
author Vuong, Ngoc Q.
Goegan, Patrick
De Rose, Francesco
Breznan, Dalibor
Thomson, Errol M.
O'Brien, Julie S.
Karthikeyan, Subramanian
Williams, Andrew
Vincent, Renaud
Kumarathasan, Premkumari
author_facet Vuong, Ngoc Q.
Goegan, Patrick
De Rose, Francesco
Breznan, Dalibor
Thomson, Errol M.
O'Brien, Julie S.
Karthikeyan, Subramanian
Williams, Andrew
Vincent, Renaud
Kumarathasan, Premkumari
author_sort Vuong, Ngoc Q.
collection PubMed
description In this study, we used cytotoxicity assays, proteomic and gene expression analyses to examine the difference in response of A549 cells to two silica particles that differ in physical properties, namely cristobalite (CR) and α‐quartz (Min‐U‐Sil 5, MI). Cytotoxicity assays such as lactate dehydrogenase release, 5‐bromo‐2′‐deoxyuridine incorporation and cellular ATP showed that both silica particles could cause cell death, decreased cell proliferation and metabolism in the A549 human lung epithelial cells. While cytotoxicity assays revealed little difference between CR and MI exposures, proteomic and gene expression analyses unveiled both similar and unique molecular changes in A549 cells. For instance, two‐dimensional gel electrophoresis data indicated that the expression of proteins in the cell death (e.g., ALDH1A1, HTRA2 and PRDX6) and cell proliferation (e.g., FSCN1, HNRNPAB and PGK1) pathways were significantly different between the two silica particles. Reverse transcription–polymerase chain reaction data provided additional evidence supporting the proteomic findings. Preliminary assessment of the physical differences between CR and MI suggested that the extent of surface interaction between particles and cells could explain some of the observed biological effects. However, the differential dose–response curves for some other genes and proteins suggest that other physical attributes of particulate matter can also contribute to particulate matter‐related cellular toxicity. Our results demonstrated that toxicoproteomic and gene expression analyses are sensitive in distinguishing subtle toxicity differences associated with silica particles of varying physical properties compared to traditional cytotoxicity endpoints. Copyright © 2016 Her Majesty the Queen in Right of Canada. Journal of Applied Toxicology published by John Wiley & Sons, Ltd.
format Online
Article
Text
id pubmed-5434822
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-54348222017-06-01 Responses of A549 human lung epithelial cells to cristobalite and α‐quartz exposures assessed by toxicoproteomics and gene expression analysis Vuong, Ngoc Q. Goegan, Patrick De Rose, Francesco Breznan, Dalibor Thomson, Errol M. O'Brien, Julie S. Karthikeyan, Subramanian Williams, Andrew Vincent, Renaud Kumarathasan, Premkumari J Appl Toxicol Research Articles In this study, we used cytotoxicity assays, proteomic and gene expression analyses to examine the difference in response of A549 cells to two silica particles that differ in physical properties, namely cristobalite (CR) and α‐quartz (Min‐U‐Sil 5, MI). Cytotoxicity assays such as lactate dehydrogenase release, 5‐bromo‐2′‐deoxyuridine incorporation and cellular ATP showed that both silica particles could cause cell death, decreased cell proliferation and metabolism in the A549 human lung epithelial cells. While cytotoxicity assays revealed little difference between CR and MI exposures, proteomic and gene expression analyses unveiled both similar and unique molecular changes in A549 cells. For instance, two‐dimensional gel electrophoresis data indicated that the expression of proteins in the cell death (e.g., ALDH1A1, HTRA2 and PRDX6) and cell proliferation (e.g., FSCN1, HNRNPAB and PGK1) pathways were significantly different between the two silica particles. Reverse transcription–polymerase chain reaction data provided additional evidence supporting the proteomic findings. Preliminary assessment of the physical differences between CR and MI suggested that the extent of surface interaction between particles and cells could explain some of the observed biological effects. However, the differential dose–response curves for some other genes and proteins suggest that other physical attributes of particulate matter can also contribute to particulate matter‐related cellular toxicity. Our results demonstrated that toxicoproteomic and gene expression analyses are sensitive in distinguishing subtle toxicity differences associated with silica particles of varying physical properties compared to traditional cytotoxicity endpoints. Copyright © 2016 Her Majesty the Queen in Right of Canada. Journal of Applied Toxicology published by John Wiley & Sons, Ltd. John Wiley and Sons Inc. 2016-12-05 2017-06 /pmc/articles/PMC5434822/ /pubmed/27917503 http://dx.doi.org/10.1002/jat.3420 Text en Copyright © 2016 Her Majesty the Queen in Right of Canada. Journal of Applied Toxicology published by John Wiley & Sons, Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Vuong, Ngoc Q.
Goegan, Patrick
De Rose, Francesco
Breznan, Dalibor
Thomson, Errol M.
O'Brien, Julie S.
Karthikeyan, Subramanian
Williams, Andrew
Vincent, Renaud
Kumarathasan, Premkumari
Responses of A549 human lung epithelial cells to cristobalite and α‐quartz exposures assessed by toxicoproteomics and gene expression analysis
title Responses of A549 human lung epithelial cells to cristobalite and α‐quartz exposures assessed by toxicoproteomics and gene expression analysis
title_full Responses of A549 human lung epithelial cells to cristobalite and α‐quartz exposures assessed by toxicoproteomics and gene expression analysis
title_fullStr Responses of A549 human lung epithelial cells to cristobalite and α‐quartz exposures assessed by toxicoproteomics and gene expression analysis
title_full_unstemmed Responses of A549 human lung epithelial cells to cristobalite and α‐quartz exposures assessed by toxicoproteomics and gene expression analysis
title_short Responses of A549 human lung epithelial cells to cristobalite and α‐quartz exposures assessed by toxicoproteomics and gene expression analysis
title_sort responses of a549 human lung epithelial cells to cristobalite and α‐quartz exposures assessed by toxicoproteomics and gene expression analysis
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5434822/
https://www.ncbi.nlm.nih.gov/pubmed/27917503
http://dx.doi.org/10.1002/jat.3420
work_keys_str_mv AT vuongngocq responsesofa549humanlungepithelialcellstocristobaliteandaquartzexposuresassessedbytoxicoproteomicsandgeneexpressionanalysis
AT goeganpatrick responsesofa549humanlungepithelialcellstocristobaliteandaquartzexposuresassessedbytoxicoproteomicsandgeneexpressionanalysis
AT derosefrancesco responsesofa549humanlungepithelialcellstocristobaliteandaquartzexposuresassessedbytoxicoproteomicsandgeneexpressionanalysis
AT breznandalibor responsesofa549humanlungepithelialcellstocristobaliteandaquartzexposuresassessedbytoxicoproteomicsandgeneexpressionanalysis
AT thomsonerrolm responsesofa549humanlungepithelialcellstocristobaliteandaquartzexposuresassessedbytoxicoproteomicsandgeneexpressionanalysis
AT obrienjulies responsesofa549humanlungepithelialcellstocristobaliteandaquartzexposuresassessedbytoxicoproteomicsandgeneexpressionanalysis
AT karthikeyansubramanian responsesofa549humanlungepithelialcellstocristobaliteandaquartzexposuresassessedbytoxicoproteomicsandgeneexpressionanalysis
AT williamsandrew responsesofa549humanlungepithelialcellstocristobaliteandaquartzexposuresassessedbytoxicoproteomicsandgeneexpressionanalysis
AT vincentrenaud responsesofa549humanlungepithelialcellstocristobaliteandaquartzexposuresassessedbytoxicoproteomicsandgeneexpressionanalysis
AT kumarathasanpremkumari responsesofa549humanlungepithelialcellstocristobaliteandaquartzexposuresassessedbytoxicoproteomicsandgeneexpressionanalysis