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Automated tracking of tumor-stroma morphology in microtissues identifies functional targets within the tumor microenvironment for therapeutic intervention

Cancer-associated fibroblasts (CAFs) constitute an important part of the tumor microenvironment and promote invasion via paracrine functions and physical impact on the tumor. Although the importance of including CAFs into three-dimensional (3D) cell cultures has been acknowledged, computational supp...

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Autores principales: Åkerfelt, Malin, Bayramoglu, Neslihan, Robinson, Sean, Toriseva, Mervi, Schukov, Hannu-Pekka, Härmä, Ville, Virtanen, Johannes, Sormunen, Raija, Kaakinen, Mika, Kannala, Juho, Eklund, Lauri, Heikkilä, Janne, Nees, Matthias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4745780/
https://www.ncbi.nlm.nih.gov/pubmed/26375443
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author Åkerfelt, Malin
Bayramoglu, Neslihan
Robinson, Sean
Toriseva, Mervi
Schukov, Hannu-Pekka
Härmä, Ville
Virtanen, Johannes
Sormunen, Raija
Kaakinen, Mika
Kannala, Juho
Eklund, Lauri
Heikkilä, Janne
Nees, Matthias
author_facet Åkerfelt, Malin
Bayramoglu, Neslihan
Robinson, Sean
Toriseva, Mervi
Schukov, Hannu-Pekka
Härmä, Ville
Virtanen, Johannes
Sormunen, Raija
Kaakinen, Mika
Kannala, Juho
Eklund, Lauri
Heikkilä, Janne
Nees, Matthias
author_sort Åkerfelt, Malin
collection PubMed
description Cancer-associated fibroblasts (CAFs) constitute an important part of the tumor microenvironment and promote invasion via paracrine functions and physical impact on the tumor. Although the importance of including CAFs into three-dimensional (3D) cell cultures has been acknowledged, computational support for quantitative live-cell measurements of complex cell cultures has been lacking. Here, we have developed a novel automated pipeline to model tumor-stroma interplay, track motility and quantify morphological changes of 3D co-cultures, in real-time live-cell settings. The platform consists of microtissues from prostate cancer cells, combined with CAFs in extracellular matrix that allows biochemical perturbation. Tracking of fibroblast dynamics revealed that CAFs guided the way for tumor cells to invade and increased the growth and invasiveness of tumor organoids. We utilized the platform to determine the efficacy of inhibitors in prostate cancer and the associated tumor microenvironment as a functional unit. Interestingly, certain inhibitors selectively disrupted tumor-CAF interactions, e.g. focal adhesion kinase (FAK) inhibitors specifically blocked tumor growth and invasion concurrently with fibroblast spreading and motility. This complex phenotype was not detected in other standard in vitro models. These results highlight the advantage of our approach, which recapitulates tumor histology and can significantly improve cancer target validation in vitro.
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spelling pubmed-47457802016-02-23 Automated tracking of tumor-stroma morphology in microtissues identifies functional targets within the tumor microenvironment for therapeutic intervention Åkerfelt, Malin Bayramoglu, Neslihan Robinson, Sean Toriseva, Mervi Schukov, Hannu-Pekka Härmä, Ville Virtanen, Johannes Sormunen, Raija Kaakinen, Mika Kannala, Juho Eklund, Lauri Heikkilä, Janne Nees, Matthias Oncotarget Research Paper Cancer-associated fibroblasts (CAFs) constitute an important part of the tumor microenvironment and promote invasion via paracrine functions and physical impact on the tumor. Although the importance of including CAFs into three-dimensional (3D) cell cultures has been acknowledged, computational support for quantitative live-cell measurements of complex cell cultures has been lacking. Here, we have developed a novel automated pipeline to model tumor-stroma interplay, track motility and quantify morphological changes of 3D co-cultures, in real-time live-cell settings. The platform consists of microtissues from prostate cancer cells, combined with CAFs in extracellular matrix that allows biochemical perturbation. Tracking of fibroblast dynamics revealed that CAFs guided the way for tumor cells to invade and increased the growth and invasiveness of tumor organoids. We utilized the platform to determine the efficacy of inhibitors in prostate cancer and the associated tumor microenvironment as a functional unit. Interestingly, certain inhibitors selectively disrupted tumor-CAF interactions, e.g. focal adhesion kinase (FAK) inhibitors specifically blocked tumor growth and invasion concurrently with fibroblast spreading and motility. This complex phenotype was not detected in other standard in vitro models. These results highlight the advantage of our approach, which recapitulates tumor histology and can significantly improve cancer target validation in vitro. Impact Journals LLC 2015-09-03 /pmc/articles/PMC4745780/ /pubmed/26375443 Text en Copyright: © 2015 Åkerfelt et al. http://creativecommons.org/licenses/by/2.5/ 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 author and source are credited.
spellingShingle Research Paper
Åkerfelt, Malin
Bayramoglu, Neslihan
Robinson, Sean
Toriseva, Mervi
Schukov, Hannu-Pekka
Härmä, Ville
Virtanen, Johannes
Sormunen, Raija
Kaakinen, Mika
Kannala, Juho
Eklund, Lauri
Heikkilä, Janne
Nees, Matthias
Automated tracking of tumor-stroma morphology in microtissues identifies functional targets within the tumor microenvironment for therapeutic intervention
title Automated tracking of tumor-stroma morphology in microtissues identifies functional targets within the tumor microenvironment for therapeutic intervention
title_full Automated tracking of tumor-stroma morphology in microtissues identifies functional targets within the tumor microenvironment for therapeutic intervention
title_fullStr Automated tracking of tumor-stroma morphology in microtissues identifies functional targets within the tumor microenvironment for therapeutic intervention
title_full_unstemmed Automated tracking of tumor-stroma morphology in microtissues identifies functional targets within the tumor microenvironment for therapeutic intervention
title_short Automated tracking of tumor-stroma morphology in microtissues identifies functional targets within the tumor microenvironment for therapeutic intervention
title_sort automated tracking of tumor-stroma morphology in microtissues identifies functional targets within the tumor microenvironment for therapeutic intervention
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4745780/
https://www.ncbi.nlm.nih.gov/pubmed/26375443
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