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Multicellular tumor spheroids of human uveal melanoma induce genes associated with anoikis resistance, lipogenesis, and SSXs

PURPOSE: Uveal melanoma (UM) has a high propensity for metastatic spread, and approximately 40–50% of patients die of metastatic disease. Metastases can be found at the time of diagnosis but also several years after the primary tumor has been removed. The survival of disseminated cancer cells is kno...

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Autores principales: Ness, Charlotte, Garred, Øystein, Eide, Nils A., Kumar, Theresa, Olstad, Ole K., Bærland, Thomas P., Petrovski, Goran, Moe, Morten C., Noer, Agate
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Vision 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5632686/
https://www.ncbi.nlm.nih.gov/pubmed/29033534
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author Ness, Charlotte
Garred, Øystein
Eide, Nils A.
Kumar, Theresa
Olstad, Ole K.
Bærland, Thomas P.
Petrovski, Goran
Moe, Morten C.
Noer, Agate
author_facet Ness, Charlotte
Garred, Øystein
Eide, Nils A.
Kumar, Theresa
Olstad, Ole K.
Bærland, Thomas P.
Petrovski, Goran
Moe, Morten C.
Noer, Agate
author_sort Ness, Charlotte
collection PubMed
description PURPOSE: Uveal melanoma (UM) has a high propensity for metastatic spread, and approximately 40–50% of patients die of metastatic disease. Metastases can be found at the time of diagnosis but also several years after the primary tumor has been removed. The survival of disseminated cancer cells is known to be linked to anchorage independence, anoikis resistance, and an adaptive cellular metabolism. The cultivation of cancer cells as multicellular tumor spheroids (MCTS) by anchorage-independent growth enriches for a more aggressive phenotype. The present study examines the differential gene expression of adherent cell cultures, non-adherent MCTS cultures, and uncultured tumor biopsies from three patients with UM. We elucidate the biochemical differences between the culture conditions to find whether the culture of UM as non-adherent MCTS could be linked to an anchorage-independent and more aggressive phenotype, thus unravelling potential targets for treatment of UM dissemination. METHODS: The various culture conditions were evaluated with microarray analysis, quantitative reverse-transcription polymerase chain reaction (qRT-PCR), RNAscope, immunohistochemistry (IHC), and transmission electron microscopy (TEM) followed by gene expression bioinformatics. RESULTS: The MCTS cultures displayed traits associated with anoikis resistance demonstrated by ANGPTL4 upregulation, and a shift toward a lipogenic profile by upregulation of ACOT1 (lipid metabolism), FADS1 (biosynthesis of unsaturated fatty acids), SC4MOL, DHCR7, LSS (cholesterol biosynthesis), OSBPL9 (intracellular lipid receptor), and PLIN2 (lipid storage). Additionally, the present study shows marked upregulation of synovial sarcoma X breakpoint proteins (SSXs), transcriptional repressors related to the Polycomb group (PcG) proteins that modulate epigenetic silencing of genes. CONCLUSIONS: The MCTS cultures displayed traits associated with anoikis resistance, a metabolic shift toward a lipogenic profile, and upregulation of SSXs, related to the PcG proteins.
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spelling pubmed-56326862017-10-13 Multicellular tumor spheroids of human uveal melanoma induce genes associated with anoikis resistance, lipogenesis, and SSXs Ness, Charlotte Garred, Øystein Eide, Nils A. Kumar, Theresa Olstad, Ole K. Bærland, Thomas P. Petrovski, Goran Moe, Morten C. Noer, Agate Mol Vis Research Article PURPOSE: Uveal melanoma (UM) has a high propensity for metastatic spread, and approximately 40–50% of patients die of metastatic disease. Metastases can be found at the time of diagnosis but also several years after the primary tumor has been removed. The survival of disseminated cancer cells is known to be linked to anchorage independence, anoikis resistance, and an adaptive cellular metabolism. The cultivation of cancer cells as multicellular tumor spheroids (MCTS) by anchorage-independent growth enriches for a more aggressive phenotype. The present study examines the differential gene expression of adherent cell cultures, non-adherent MCTS cultures, and uncultured tumor biopsies from three patients with UM. We elucidate the biochemical differences between the culture conditions to find whether the culture of UM as non-adherent MCTS could be linked to an anchorage-independent and more aggressive phenotype, thus unravelling potential targets for treatment of UM dissemination. METHODS: The various culture conditions were evaluated with microarray analysis, quantitative reverse-transcription polymerase chain reaction (qRT-PCR), RNAscope, immunohistochemistry (IHC), and transmission electron microscopy (TEM) followed by gene expression bioinformatics. RESULTS: The MCTS cultures displayed traits associated with anoikis resistance demonstrated by ANGPTL4 upregulation, and a shift toward a lipogenic profile by upregulation of ACOT1 (lipid metabolism), FADS1 (biosynthesis of unsaturated fatty acids), SC4MOL, DHCR7, LSS (cholesterol biosynthesis), OSBPL9 (intracellular lipid receptor), and PLIN2 (lipid storage). Additionally, the present study shows marked upregulation of synovial sarcoma X breakpoint proteins (SSXs), transcriptional repressors related to the Polycomb group (PcG) proteins that modulate epigenetic silencing of genes. CONCLUSIONS: The MCTS cultures displayed traits associated with anoikis resistance, a metabolic shift toward a lipogenic profile, and upregulation of SSXs, related to the PcG proteins. Molecular Vision 2017-10-03 /pmc/articles/PMC5632686/ /pubmed/29033534 Text en Copyright © 2017 Molecular Vision. http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited, used for non-commercial purposes, and is not altered or transformed.
spellingShingle Research Article
Ness, Charlotte
Garred, Øystein
Eide, Nils A.
Kumar, Theresa
Olstad, Ole K.
Bærland, Thomas P.
Petrovski, Goran
Moe, Morten C.
Noer, Agate
Multicellular tumor spheroids of human uveal melanoma induce genes associated with anoikis resistance, lipogenesis, and SSXs
title Multicellular tumor spheroids of human uveal melanoma induce genes associated with anoikis resistance, lipogenesis, and SSXs
title_full Multicellular tumor spheroids of human uveal melanoma induce genes associated with anoikis resistance, lipogenesis, and SSXs
title_fullStr Multicellular tumor spheroids of human uveal melanoma induce genes associated with anoikis resistance, lipogenesis, and SSXs
title_full_unstemmed Multicellular tumor spheroids of human uveal melanoma induce genes associated with anoikis resistance, lipogenesis, and SSXs
title_short Multicellular tumor spheroids of human uveal melanoma induce genes associated with anoikis resistance, lipogenesis, and SSXs
title_sort multicellular tumor spheroids of human uveal melanoma induce genes associated with anoikis resistance, lipogenesis, and ssxs
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5632686/
https://www.ncbi.nlm.nih.gov/pubmed/29033534
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