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A Zebrafish Model of Metastatic Colonization Pinpoints Cellular Mechanisms of Circulating Tumor Cell Extravasation

Metastasis is a multistep process in which cells must detach, migrate/invade local structures, intravasate, circulate, extravasate, and colonize. A full understanding of the complexity of this process has been limited by the lack of ability to study these steps in isolation with detailed molecular a...

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Autores principales: Allen, Tyler A., Cullen, Mark M., Hawkey, Nathan, Mochizuki, Hiroyuki, Nguyen, Lan, Schechter, Elyse, Borst, Luke, Yoder, Jeffrey A., Freedman, Jennifer A., Patierno, Steven R., Cheng, Ke, Eward, William C., Somarelli, Jason A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8495265/
https://www.ncbi.nlm.nih.gov/pubmed/34631514
http://dx.doi.org/10.3389/fonc.2021.641187
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author Allen, Tyler A.
Cullen, Mark M.
Hawkey, Nathan
Mochizuki, Hiroyuki
Nguyen, Lan
Schechter, Elyse
Borst, Luke
Yoder, Jeffrey A.
Freedman, Jennifer A.
Patierno, Steven R.
Cheng, Ke
Eward, William C.
Somarelli, Jason A.
author_facet Allen, Tyler A.
Cullen, Mark M.
Hawkey, Nathan
Mochizuki, Hiroyuki
Nguyen, Lan
Schechter, Elyse
Borst, Luke
Yoder, Jeffrey A.
Freedman, Jennifer A.
Patierno, Steven R.
Cheng, Ke
Eward, William C.
Somarelli, Jason A.
author_sort Allen, Tyler A.
collection PubMed
description Metastasis is a multistep process in which cells must detach, migrate/invade local structures, intravasate, circulate, extravasate, and colonize. A full understanding of the complexity of this process has been limited by the lack of ability to study these steps in isolation with detailed molecular analyses. Leveraging a comparative oncology approach, we injected canine osteosarcoma cells into the circulation of transgenic zebrafish with fluorescent blood vessels in a biologically dynamic metastasis extravasation model. Circulating tumor cell clusters that successfully extravasated the vasculature as multicellular units were isolated under intravital imaging (n = 6). These extravasation-positive tumor cell clusters sublines were then molecularly profiled by RNA-Seq. Using a systems-level analysis, we pinpointed the downregulation of KRAS signaling, immune pathways, and extracellular matrix (ECM) organization as enriched in extravasated cells (p < 0.05). Within the extracellular matrix remodeling pathway, we identified versican (VCAN) as consistently upregulated and central to the ECM gene regulatory network (p < 0.05). Versican expression is prognostic for a poorer metastasis-free and overall survival in patients with osteosarcoma. Together, our results provide a novel experimental framework to study discrete steps in the metastatic process. Using this system, we identify the versican/ECM network dysregulation as a potential contributor to osteosarcoma circulating tumor cell metastasis.
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spelling pubmed-84952652021-10-08 A Zebrafish Model of Metastatic Colonization Pinpoints Cellular Mechanisms of Circulating Tumor Cell Extravasation Allen, Tyler A. Cullen, Mark M. Hawkey, Nathan Mochizuki, Hiroyuki Nguyen, Lan Schechter, Elyse Borst, Luke Yoder, Jeffrey A. Freedman, Jennifer A. Patierno, Steven R. Cheng, Ke Eward, William C. Somarelli, Jason A. Front Oncol Oncology Metastasis is a multistep process in which cells must detach, migrate/invade local structures, intravasate, circulate, extravasate, and colonize. A full understanding of the complexity of this process has been limited by the lack of ability to study these steps in isolation with detailed molecular analyses. Leveraging a comparative oncology approach, we injected canine osteosarcoma cells into the circulation of transgenic zebrafish with fluorescent blood vessels in a biologically dynamic metastasis extravasation model. Circulating tumor cell clusters that successfully extravasated the vasculature as multicellular units were isolated under intravital imaging (n = 6). These extravasation-positive tumor cell clusters sublines were then molecularly profiled by RNA-Seq. Using a systems-level analysis, we pinpointed the downregulation of KRAS signaling, immune pathways, and extracellular matrix (ECM) organization as enriched in extravasated cells (p < 0.05). Within the extracellular matrix remodeling pathway, we identified versican (VCAN) as consistently upregulated and central to the ECM gene regulatory network (p < 0.05). Versican expression is prognostic for a poorer metastasis-free and overall survival in patients with osteosarcoma. Together, our results provide a novel experimental framework to study discrete steps in the metastatic process. Using this system, we identify the versican/ECM network dysregulation as a potential contributor to osteosarcoma circulating tumor cell metastasis. Frontiers Media S.A. 2021-09-23 /pmc/articles/PMC8495265/ /pubmed/34631514 http://dx.doi.org/10.3389/fonc.2021.641187 Text en Copyright © 2021 Allen, Cullen, Hawkey, Mochizuki, Nguyen, Schechter, Borst, Yoder, Freedman, Patierno, Cheng, Eward and Somarelli https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Oncology
Allen, Tyler A.
Cullen, Mark M.
Hawkey, Nathan
Mochizuki, Hiroyuki
Nguyen, Lan
Schechter, Elyse
Borst, Luke
Yoder, Jeffrey A.
Freedman, Jennifer A.
Patierno, Steven R.
Cheng, Ke
Eward, William C.
Somarelli, Jason A.
A Zebrafish Model of Metastatic Colonization Pinpoints Cellular Mechanisms of Circulating Tumor Cell Extravasation
title A Zebrafish Model of Metastatic Colonization Pinpoints Cellular Mechanisms of Circulating Tumor Cell Extravasation
title_full A Zebrafish Model of Metastatic Colonization Pinpoints Cellular Mechanisms of Circulating Tumor Cell Extravasation
title_fullStr A Zebrafish Model of Metastatic Colonization Pinpoints Cellular Mechanisms of Circulating Tumor Cell Extravasation
title_full_unstemmed A Zebrafish Model of Metastatic Colonization Pinpoints Cellular Mechanisms of Circulating Tumor Cell Extravasation
title_short A Zebrafish Model of Metastatic Colonization Pinpoints Cellular Mechanisms of Circulating Tumor Cell Extravasation
title_sort zebrafish model of metastatic colonization pinpoints cellular mechanisms of circulating tumor cell extravasation
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8495265/
https://www.ncbi.nlm.nih.gov/pubmed/34631514
http://dx.doi.org/10.3389/fonc.2021.641187
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