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Pathways Regulating Spheroid Formation of Human Follicular Thyroid Cancer Cells under Simulated Microgravity Conditions: A Genetic Approach

Microgravity induces three-dimensional (3D) growth in numerous cell types. Despite substantial efforts to clarify the underlying mechanisms for spheroid formation, the precise molecular pathways are still not known. The principal aim of this paper is to compare static 1g-control cells with spheroid...

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Autores principales: Riwaldt, Stefan, Bauer, Johann, Wehland, Markus, Slumstrup, Lasse, Kopp, Sascha, Warnke, Elisabeth, Dittrich, Anita, Magnusson, Nils E., Pietsch, Jessica, Corydon, Thomas J., Infanger, Manfred, Grimm, Daniela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4848984/
https://www.ncbi.nlm.nih.gov/pubmed/27070589
http://dx.doi.org/10.3390/ijms17040528
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author Riwaldt, Stefan
Bauer, Johann
Wehland, Markus
Slumstrup, Lasse
Kopp, Sascha
Warnke, Elisabeth
Dittrich, Anita
Magnusson, Nils E.
Pietsch, Jessica
Corydon, Thomas J.
Infanger, Manfred
Grimm, Daniela
author_facet Riwaldt, Stefan
Bauer, Johann
Wehland, Markus
Slumstrup, Lasse
Kopp, Sascha
Warnke, Elisabeth
Dittrich, Anita
Magnusson, Nils E.
Pietsch, Jessica
Corydon, Thomas J.
Infanger, Manfred
Grimm, Daniela
author_sort Riwaldt, Stefan
collection PubMed
description Microgravity induces three-dimensional (3D) growth in numerous cell types. Despite substantial efforts to clarify the underlying mechanisms for spheroid formation, the precise molecular pathways are still not known. The principal aim of this paper is to compare static 1g-control cells with spheroid forming (MCS) and spheroid non-forming (AD) thyroid cancer cells cultured in the same flask under simulated microgravity conditions. We investigated the morphology and gene expression patterns in human follicular thyroid cancer cells (UCLA RO82-W-1 cell line) after a 24 h-exposure on the Random Positioning Machine (RPM) and focused on 3D growth signaling processes. After 24 h, spheroid formation was observed in RPM-cultures together with alterations in the F-actin cytoskeleton. qPCR indicated more changes in gene expression in MCS than in AD cells. Of the 24 genes analyzed VEGFA, VEGFD, MSN, and MMP3 were upregulated in MCS compared to 1g-controls, whereas ACTB, ACTA2, KRT8, TUBB, EZR, RDX, PRKCA, CAV1, MMP9, PAI1, CTGF, MCP1 were downregulated. A pathway analysis revealed that the upregulated genes code for proteins, which promote 3D growth (angiogenesis) and prevent excessive accumulation of extracellular proteins, while genes coding for structural proteins are downregulated. Pathways regulating the strength/rigidity of cytoskeletal proteins, the amount of extracellular proteins, and 3D growth may be involved in MCS formation.
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spelling pubmed-48489842016-05-04 Pathways Regulating Spheroid Formation of Human Follicular Thyroid Cancer Cells under Simulated Microgravity Conditions: A Genetic Approach Riwaldt, Stefan Bauer, Johann Wehland, Markus Slumstrup, Lasse Kopp, Sascha Warnke, Elisabeth Dittrich, Anita Magnusson, Nils E. Pietsch, Jessica Corydon, Thomas J. Infanger, Manfred Grimm, Daniela Int J Mol Sci Article Microgravity induces three-dimensional (3D) growth in numerous cell types. Despite substantial efforts to clarify the underlying mechanisms for spheroid formation, the precise molecular pathways are still not known. The principal aim of this paper is to compare static 1g-control cells with spheroid forming (MCS) and spheroid non-forming (AD) thyroid cancer cells cultured in the same flask under simulated microgravity conditions. We investigated the morphology and gene expression patterns in human follicular thyroid cancer cells (UCLA RO82-W-1 cell line) after a 24 h-exposure on the Random Positioning Machine (RPM) and focused on 3D growth signaling processes. After 24 h, spheroid formation was observed in RPM-cultures together with alterations in the F-actin cytoskeleton. qPCR indicated more changes in gene expression in MCS than in AD cells. Of the 24 genes analyzed VEGFA, VEGFD, MSN, and MMP3 were upregulated in MCS compared to 1g-controls, whereas ACTB, ACTA2, KRT8, TUBB, EZR, RDX, PRKCA, CAV1, MMP9, PAI1, CTGF, MCP1 were downregulated. A pathway analysis revealed that the upregulated genes code for proteins, which promote 3D growth (angiogenesis) and prevent excessive accumulation of extracellular proteins, while genes coding for structural proteins are downregulated. Pathways regulating the strength/rigidity of cytoskeletal proteins, the amount of extracellular proteins, and 3D growth may be involved in MCS formation. MDPI 2016-04-08 /pmc/articles/PMC4848984/ /pubmed/27070589 http://dx.doi.org/10.3390/ijms17040528 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Riwaldt, Stefan
Bauer, Johann
Wehland, Markus
Slumstrup, Lasse
Kopp, Sascha
Warnke, Elisabeth
Dittrich, Anita
Magnusson, Nils E.
Pietsch, Jessica
Corydon, Thomas J.
Infanger, Manfred
Grimm, Daniela
Pathways Regulating Spheroid Formation of Human Follicular Thyroid Cancer Cells under Simulated Microgravity Conditions: A Genetic Approach
title Pathways Regulating Spheroid Formation of Human Follicular Thyroid Cancer Cells under Simulated Microgravity Conditions: A Genetic Approach
title_full Pathways Regulating Spheroid Formation of Human Follicular Thyroid Cancer Cells under Simulated Microgravity Conditions: A Genetic Approach
title_fullStr Pathways Regulating Spheroid Formation of Human Follicular Thyroid Cancer Cells under Simulated Microgravity Conditions: A Genetic Approach
title_full_unstemmed Pathways Regulating Spheroid Formation of Human Follicular Thyroid Cancer Cells under Simulated Microgravity Conditions: A Genetic Approach
title_short Pathways Regulating Spheroid Formation of Human Follicular Thyroid Cancer Cells under Simulated Microgravity Conditions: A Genetic Approach
title_sort pathways regulating spheroid formation of human follicular thyroid cancer cells under simulated microgravity conditions: a genetic approach
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4848984/
https://www.ncbi.nlm.nih.gov/pubmed/27070589
http://dx.doi.org/10.3390/ijms17040528
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