Toxicity of functional nano-micro zinc oxide tetrapods: impact of cell culture conditions, cellular age and material properties.

With increasing production and applications of nanostructured zinc oxide, e.g., for biomedical and consumer products, the question of safety is getting more and more important. Different morphologies of zinc oxide structures have been synthesized and accordingly investigated. In this study, we have...

Full description

Bibliographic Details
Main Authors: Heike Papavlassopoulos, Yogendra K Mishra, Sören Kaps, Ingo Paulowicz, Ramzy Abdelaziz, Mady Elbahri, Edmund Maser, Rainer Adelung, Claudia Röhl
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3890288?pdf=render
_version_ 1819067872043859968
author Heike Papavlassopoulos
Yogendra K Mishra
Sören Kaps
Ingo Paulowicz
Ramzy Abdelaziz
Mady Elbahri
Edmund Maser
Rainer Adelung
Claudia Röhl
author_facet Heike Papavlassopoulos
Yogendra K Mishra
Sören Kaps
Ingo Paulowicz
Ramzy Abdelaziz
Mady Elbahri
Edmund Maser
Rainer Adelung
Claudia Röhl
author_sort Heike Papavlassopoulos
collection DOAJ
description With increasing production and applications of nanostructured zinc oxide, e.g., for biomedical and consumer products, the question of safety is getting more and more important. Different morphologies of zinc oxide structures have been synthesized and accordingly investigated. In this study, we have particularly focused on nano-micro ZnO tetrapods (ZnO-T), because their large scale fabrication has been made possible by a newly introduced flame transport synthesis approach which will probably lead to several new applications. Moreover, ZnO-T provide a completely different morphology then classical spherical ZnO nanoparticles. To get a better understanding of parameters that affect the interactions between ZnO-T and mammalian cells, and thus their biocompatibility, we have examined the impact of cell culture conditions as well as of material properties on cytotoxicity. Our results demonstrate that the cell density of fibroblasts in culture along with their age, i.e., the number of preceding cell divisions, strongly affect the cytotoxic potency of ZnO-T. Concerning the material properties, the toxic potency of ZnO-T is found to be significantly lower than that of spherical ZnO nanoparticles. Furthermore, the morphology of the ZnO-T influenced cellular toxicity in contrast to surface charges modified by UV illumination or O2 treatment and to the material age. Finally, we have observed that direct contact between tetrapods and cells increases their toxicity compared to transwell culture models which allow only an indirect effect via released zinc ions. The results reveal several parameters that can be of importance for the assessment of ZnO-T toxicity in cell cultures and for particle development.
first_indexed 2024-12-21T16:25:09Z
format Article
id doaj.art-c895e822e8ba48e6a59a81398e924d22
institution Directory Open Access Journal
issn 1932-6203
language English
last_indexed 2024-12-21T16:25:09Z
publishDate 2014-01-01
publisher Public Library of Science (PLoS)
record_format Article
series PLoS ONE
spelling doaj.art-c895e822e8ba48e6a59a81398e924d222022-12-21T18:57:28ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0191e8498310.1371/journal.pone.0084983Toxicity of functional nano-micro zinc oxide tetrapods: impact of cell culture conditions, cellular age and material properties.Heike PapavlassopoulosYogendra K MishraSören KapsIngo PaulowiczRamzy AbdelazizMady ElbahriEdmund MaserRainer AdelungClaudia RöhlWith increasing production and applications of nanostructured zinc oxide, e.g., for biomedical and consumer products, the question of safety is getting more and more important. Different morphologies of zinc oxide structures have been synthesized and accordingly investigated. In this study, we have particularly focused on nano-micro ZnO tetrapods (ZnO-T), because their large scale fabrication has been made possible by a newly introduced flame transport synthesis approach which will probably lead to several new applications. Moreover, ZnO-T provide a completely different morphology then classical spherical ZnO nanoparticles. To get a better understanding of parameters that affect the interactions between ZnO-T and mammalian cells, and thus their biocompatibility, we have examined the impact of cell culture conditions as well as of material properties on cytotoxicity. Our results demonstrate that the cell density of fibroblasts in culture along with their age, i.e., the number of preceding cell divisions, strongly affect the cytotoxic potency of ZnO-T. Concerning the material properties, the toxic potency of ZnO-T is found to be significantly lower than that of spherical ZnO nanoparticles. Furthermore, the morphology of the ZnO-T influenced cellular toxicity in contrast to surface charges modified by UV illumination or O2 treatment and to the material age. Finally, we have observed that direct contact between tetrapods and cells increases their toxicity compared to transwell culture models which allow only an indirect effect via released zinc ions. The results reveal several parameters that can be of importance for the assessment of ZnO-T toxicity in cell cultures and for particle development.http://europepmc.org/articles/PMC3890288?pdf=render
spellingShingle Heike Papavlassopoulos
Yogendra K Mishra
Sören Kaps
Ingo Paulowicz
Ramzy Abdelaziz
Mady Elbahri
Edmund Maser
Rainer Adelung
Claudia Röhl
Toxicity of functional nano-micro zinc oxide tetrapods: impact of cell culture conditions, cellular age and material properties.
PLoS ONE
title Toxicity of functional nano-micro zinc oxide tetrapods: impact of cell culture conditions, cellular age and material properties.
title_full Toxicity of functional nano-micro zinc oxide tetrapods: impact of cell culture conditions, cellular age and material properties.
title_fullStr Toxicity of functional nano-micro zinc oxide tetrapods: impact of cell culture conditions, cellular age and material properties.
title_full_unstemmed Toxicity of functional nano-micro zinc oxide tetrapods: impact of cell culture conditions, cellular age and material properties.
title_short Toxicity of functional nano-micro zinc oxide tetrapods: impact of cell culture conditions, cellular age and material properties.
title_sort toxicity of functional nano micro zinc oxide tetrapods impact of cell culture conditions cellular age and material properties
url http://europepmc.org/articles/PMC3890288?pdf=render
work_keys_str_mv AT heikepapavlassopoulos toxicityoffunctionalnanomicrozincoxidetetrapodsimpactofcellcultureconditionscellularageandmaterialproperties
AT yogendrakmishra toxicityoffunctionalnanomicrozincoxidetetrapodsimpactofcellcultureconditionscellularageandmaterialproperties
AT sorenkaps toxicityoffunctionalnanomicrozincoxidetetrapodsimpactofcellcultureconditionscellularageandmaterialproperties
AT ingopaulowicz toxicityoffunctionalnanomicrozincoxidetetrapodsimpactofcellcultureconditionscellularageandmaterialproperties
AT ramzyabdelaziz toxicityoffunctionalnanomicrozincoxidetetrapodsimpactofcellcultureconditionscellularageandmaterialproperties
AT madyelbahri toxicityoffunctionalnanomicrozincoxidetetrapodsimpactofcellcultureconditionscellularageandmaterialproperties
AT edmundmaser toxicityoffunctionalnanomicrozincoxidetetrapodsimpactofcellcultureconditionscellularageandmaterialproperties
AT raineradelung toxicityoffunctionalnanomicrozincoxidetetrapodsimpactofcellcultureconditionscellularageandmaterialproperties
AT claudiarohl toxicityoffunctionalnanomicrozincoxidetetrapodsimpactofcellcultureconditionscellularageandmaterialproperties