Cargando…

The Apoptosis Inhibitor Protein Survivin Is a Critical Cytoprotective Resistor against Silica-Based Nanotoxicity

Exposure to nanoparticles is inevitable as they become widely used in industry, cosmetics, and foods. However, knowledge of their (patho)physiological effects on biological entry routes of the human body and their underlying molecular mechanisms is still fragmented. Here, we examined the molecular e...

Descripción completa

Detalles Bibliográficos
Autores principales: Breder-Bonk, Christina, Docter, Dominic, Barz, Matthias, Strieth, Sebastian, Knauer, Shirley K., Gül, Désirée, Stauber, Roland H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10535920/
https://www.ncbi.nlm.nih.gov/pubmed/37764575
http://dx.doi.org/10.3390/nano13182546
_version_ 1785112743934689280
author Breder-Bonk, Christina
Docter, Dominic
Barz, Matthias
Strieth, Sebastian
Knauer, Shirley K.
Gül, Désirée
Stauber, Roland H.
author_facet Breder-Bonk, Christina
Docter, Dominic
Barz, Matthias
Strieth, Sebastian
Knauer, Shirley K.
Gül, Désirée
Stauber, Roland H.
author_sort Breder-Bonk, Christina
collection PubMed
description Exposure to nanoparticles is inevitable as they become widely used in industry, cosmetics, and foods. However, knowledge of their (patho)physiological effects on biological entry routes of the human body and their underlying molecular mechanisms is still fragmented. Here, we examined the molecular effects of amorphous silica nanoparticles (aSiNPs) on cell lines mimicking the alveolar-capillary barrier of the lung. After state-of-the-art characterization of the used aSiNPs and the cell model, we performed cell viability-based assays and a protein analysis to determine the aSiNP-induced cell toxicity and underlying signaling mechanisms. We revealed that aSiNPs induce apoptosis in a dose-, time-, and size-dependent manner. aSiNP-induced toxicity involves the inhibition of pro-survival pathways, such as PI3K/AKT and ERK signaling, correlating with reduced expression of the anti-apoptotic protein Survivin on the protein and transcriptional levels. Furthermore, induced Survivin overexpression mediated resistance against aSiNP-toxicity. Thus, we present the first experimental evidence suggesting Survivin as a critical cytoprotective resistor against silica-based nanotoxicity, which may also play a role in responses to other NPs. Although Survivin’s relevance as a biomarker for nanotoxicity needs to be demonstrated in vivo, our data give general impetus to investigate the pharmacological modulation of Survivin`s functions to attenuate the harmful effects of acute or chronic inhalative NP exposure.
format Online
Article
Text
id pubmed-10535920
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-105359202023-09-29 The Apoptosis Inhibitor Protein Survivin Is a Critical Cytoprotective Resistor against Silica-Based Nanotoxicity Breder-Bonk, Christina Docter, Dominic Barz, Matthias Strieth, Sebastian Knauer, Shirley K. Gül, Désirée Stauber, Roland H. Nanomaterials (Basel) Article Exposure to nanoparticles is inevitable as they become widely used in industry, cosmetics, and foods. However, knowledge of their (patho)physiological effects on biological entry routes of the human body and their underlying molecular mechanisms is still fragmented. Here, we examined the molecular effects of amorphous silica nanoparticles (aSiNPs) on cell lines mimicking the alveolar-capillary barrier of the lung. After state-of-the-art characterization of the used aSiNPs and the cell model, we performed cell viability-based assays and a protein analysis to determine the aSiNP-induced cell toxicity and underlying signaling mechanisms. We revealed that aSiNPs induce apoptosis in a dose-, time-, and size-dependent manner. aSiNP-induced toxicity involves the inhibition of pro-survival pathways, such as PI3K/AKT and ERK signaling, correlating with reduced expression of the anti-apoptotic protein Survivin on the protein and transcriptional levels. Furthermore, induced Survivin overexpression mediated resistance against aSiNP-toxicity. Thus, we present the first experimental evidence suggesting Survivin as a critical cytoprotective resistor against silica-based nanotoxicity, which may also play a role in responses to other NPs. Although Survivin’s relevance as a biomarker for nanotoxicity needs to be demonstrated in vivo, our data give general impetus to investigate the pharmacological modulation of Survivin`s functions to attenuate the harmful effects of acute or chronic inhalative NP exposure. MDPI 2023-09-12 /pmc/articles/PMC10535920/ /pubmed/37764575 http://dx.doi.org/10.3390/nano13182546 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
Breder-Bonk, Christina
Docter, Dominic
Barz, Matthias
Strieth, Sebastian
Knauer, Shirley K.
Gül, Désirée
Stauber, Roland H.
The Apoptosis Inhibitor Protein Survivin Is a Critical Cytoprotective Resistor against Silica-Based Nanotoxicity
title The Apoptosis Inhibitor Protein Survivin Is a Critical Cytoprotective Resistor against Silica-Based Nanotoxicity
title_full The Apoptosis Inhibitor Protein Survivin Is a Critical Cytoprotective Resistor against Silica-Based Nanotoxicity
title_fullStr The Apoptosis Inhibitor Protein Survivin Is a Critical Cytoprotective Resistor against Silica-Based Nanotoxicity
title_full_unstemmed The Apoptosis Inhibitor Protein Survivin Is a Critical Cytoprotective Resistor against Silica-Based Nanotoxicity
title_short The Apoptosis Inhibitor Protein Survivin Is a Critical Cytoprotective Resistor against Silica-Based Nanotoxicity
title_sort apoptosis inhibitor protein survivin is a critical cytoprotective resistor against silica-based nanotoxicity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10535920/
https://www.ncbi.nlm.nih.gov/pubmed/37764575
http://dx.doi.org/10.3390/nano13182546
work_keys_str_mv AT brederbonkchristina theapoptosisinhibitorproteinsurvivinisacriticalcytoprotectiveresistoragainstsilicabasednanotoxicity
AT docterdominic theapoptosisinhibitorproteinsurvivinisacriticalcytoprotectiveresistoragainstsilicabasednanotoxicity
AT barzmatthias theapoptosisinhibitorproteinsurvivinisacriticalcytoprotectiveresistoragainstsilicabasednanotoxicity
AT striethsebastian theapoptosisinhibitorproteinsurvivinisacriticalcytoprotectiveresistoragainstsilicabasednanotoxicity
AT knauershirleyk theapoptosisinhibitorproteinsurvivinisacriticalcytoprotectiveresistoragainstsilicabasednanotoxicity
AT guldesiree theapoptosisinhibitorproteinsurvivinisacriticalcytoprotectiveresistoragainstsilicabasednanotoxicity
AT stauberrolandh theapoptosisinhibitorproteinsurvivinisacriticalcytoprotectiveresistoragainstsilicabasednanotoxicity
AT brederbonkchristina apoptosisinhibitorproteinsurvivinisacriticalcytoprotectiveresistoragainstsilicabasednanotoxicity
AT docterdominic apoptosisinhibitorproteinsurvivinisacriticalcytoprotectiveresistoragainstsilicabasednanotoxicity
AT barzmatthias apoptosisinhibitorproteinsurvivinisacriticalcytoprotectiveresistoragainstsilicabasednanotoxicity
AT striethsebastian apoptosisinhibitorproteinsurvivinisacriticalcytoprotectiveresistoragainstsilicabasednanotoxicity
AT knauershirleyk apoptosisinhibitorproteinsurvivinisacriticalcytoprotectiveresistoragainstsilicabasednanotoxicity
AT guldesiree apoptosisinhibitorproteinsurvivinisacriticalcytoprotectiveresistoragainstsilicabasednanotoxicity
AT stauberrolandh apoptosisinhibitorproteinsurvivinisacriticalcytoprotectiveresistoragainstsilicabasednanotoxicity