In Vitro Study of Influence of Au Nanoparticles on HT29 and SPEV Cell Lines
Abstract Cell culture models are excellent tools for potential toxicity of nanoparticles and fundamental investigations in cancer research. Thus, information about AuNP potential toxicity and effects on human health is necessary for the use of nanomaterials in clinical settings. The aim of our resea...
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doaj-56f24e6144c2457e97aadd614a59b91b2020-11-25T00:50:50ZengSpringerOpenNanoscale Research Letters1931-75731556-276X2017-08-011211910.1186/s11671-017-2264-9In Vitro Study of Influence of Au Nanoparticles on HT29 and SPEV Cell LinesElena Pavlovich0Nataliia Volkova1Elena Yakymchuk2Olena Perepelitsyna3Michail Sydorenko4Anatoliy Goltsev5Institute for Problems of Cryobiology and Cryomedicine, National Academy of Science of UkraineInstitute for Problems of Cryobiology and Cryomedicine, National Academy of Science of UkraineDepartment for Biotechnical Problems of Diagnostic, Institute for Problems of Cryobiology and Cryomedicine, National Academy of Science of UkraineDepartment for Biotechnical Problems of Diagnostic, Institute for Problems of Cryobiology and Cryomedicine, National Academy of Science of UkraineDepartment for Biotechnical Problems of Diagnostic, Institute for Problems of Cryobiology and Cryomedicine, National Academy of Science of UkraineInstitute for Problems of Cryobiology and Cryomedicine, National Academy of Science of UkraineAbstract Cell culture models are excellent tools for potential toxicity of nanoparticles and fundamental investigations in cancer research. Thus, information about AuNP potential toxicity and effects on human health is necessary for the use of nanomaterials in clinical settings. The aim of our research is to examine the effects of AuNPs on the epithelial origin cell lines: continuous and oncogenic. Embryonic porcine kidney epithelial inoculated (SPEV) cell line and colorectal carcinoma cell line (HT29) were used. In the test cultures, the cell proliferation, necrosis/apoptosis, and multicellular spheroids generation were evaluated. We demonstrated that AuNP concentrations of 6–12 μg/ml reduced the proliferation of SPEV and HT29 cells and increased the cell number at early and late stages of apoptosis and necrosis. It was shown that small concentrations of AuNPs (1–3 μg/ml) stimulate multicellular spheroid formation by HT29 and SPEV cells. However, higher AuNP concentrations (6–12 μg/ml) had both cytotoxic and anti-cohesive effects on cell in suspension. The large sensitiveness to the action of AuNPs was shown by the line of HT29 (6 μg/ml) as compared to the SPEV cells (12 μg/ml). This experimental study of the effect of AuNPs on SPEV and HT29 cell lines will justify their further application in AuNP-mediated anticancer treatment.http://link.springer.com/article/10.1186/s11671-017-2264-961.46+w61.48+c61.48De87.15−v87.64−t |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Elena Pavlovich Nataliia Volkova Elena Yakymchuk Olena Perepelitsyna Michail Sydorenko Anatoliy Goltsev |
spellingShingle |
Elena Pavlovich Nataliia Volkova Elena Yakymchuk Olena Perepelitsyna Michail Sydorenko Anatoliy Goltsev In Vitro Study of Influence of Au Nanoparticles on HT29 and SPEV Cell Lines Nanoscale Research Letters 61.46+w 61.48+c 61.48De 87.15−v 87.64−t |
author_facet |
Elena Pavlovich Nataliia Volkova Elena Yakymchuk Olena Perepelitsyna Michail Sydorenko Anatoliy Goltsev |
author_sort |
Elena Pavlovich |
title |
In Vitro Study of Influence of Au Nanoparticles on HT29 and SPEV Cell Lines |
title_short |
In Vitro Study of Influence of Au Nanoparticles on HT29 and SPEV Cell Lines |
title_full |
In Vitro Study of Influence of Au Nanoparticles on HT29 and SPEV Cell Lines |
title_fullStr |
In Vitro Study of Influence of Au Nanoparticles on HT29 and SPEV Cell Lines |
title_full_unstemmed |
In Vitro Study of Influence of Au Nanoparticles on HT29 and SPEV Cell Lines |
title_sort |
in vitro study of influence of au nanoparticles on ht29 and spev cell lines |
publisher |
SpringerOpen |
series |
Nanoscale Research Letters |
issn |
1931-7573 1556-276X |
publishDate |
2017-08-01 |
description |
Abstract Cell culture models are excellent tools for potential toxicity of nanoparticles and fundamental investigations in cancer research. Thus, information about AuNP potential toxicity and effects on human health is necessary for the use of nanomaterials in clinical settings. The aim of our research is to examine the effects of AuNPs on the epithelial origin cell lines: continuous and oncogenic. Embryonic porcine kidney epithelial inoculated (SPEV) cell line and colorectal carcinoma cell line (HT29) were used. In the test cultures, the cell proliferation, necrosis/apoptosis, and multicellular spheroids generation were evaluated. We demonstrated that AuNP concentrations of 6–12 μg/ml reduced the proliferation of SPEV and HT29 cells and increased the cell number at early and late stages of apoptosis and necrosis. It was shown that small concentrations of AuNPs (1–3 μg/ml) stimulate multicellular spheroid formation by HT29 and SPEV cells. However, higher AuNP concentrations (6–12 μg/ml) had both cytotoxic and anti-cohesive effects on cell in suspension. The large sensitiveness to the action of AuNPs was shown by the line of HT29 (6 μg/ml) as compared to the SPEV cells (12 μg/ml). This experimental study of the effect of AuNPs on SPEV and HT29 cell lines will justify their further application in AuNP-mediated anticancer treatment. |
topic |
61.46+w 61.48+c 61.48De 87.15−v 87.64−t |
url |
http://link.springer.com/article/10.1186/s11671-017-2264-9 |
work_keys_str_mv |
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