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Establishment and characterization of in vivo orthotopic bioluminescent xenograft models from human osteosarcoma cell lines in Swiss nude and NSG mice

Osteosarcoma is one of the most common primary bone tumors in childhood and adolescence. Metastases occurrence at diagnosis or during disease evolution is the main therapeutic challenge. New drug evaluation to improve patient survival requires the development of various preclinical models mimicking...

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Autores principales: Marques da Costa, Maria Eugenia, Daudigeos‐Dubus, Estelle, Gomez‐Brouchet, Anne, Bawa, Olivia, Rouffiac, Valerie, Serra, Massimo, Scotlandi, Katia, Santos, Conceição, Geoerger, Birgit, Gaspar, Nathalie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5852344/
https://www.ncbi.nlm.nih.gov/pubmed/29473324
http://dx.doi.org/10.1002/cam4.1346
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author Marques da Costa, Maria Eugenia
Daudigeos‐Dubus, Estelle
Gomez‐Brouchet, Anne
Bawa, Olivia
Rouffiac, Valerie
Serra, Massimo
Scotlandi, Katia
Santos, Conceição
Geoerger, Birgit
Gaspar, Nathalie
author_facet Marques da Costa, Maria Eugenia
Daudigeos‐Dubus, Estelle
Gomez‐Brouchet, Anne
Bawa, Olivia
Rouffiac, Valerie
Serra, Massimo
Scotlandi, Katia
Santos, Conceição
Geoerger, Birgit
Gaspar, Nathalie
author_sort Marques da Costa, Maria Eugenia
collection PubMed
description Osteosarcoma is one of the most common primary bone tumors in childhood and adolescence. Metastases occurrence at diagnosis or during disease evolution is the main therapeutic challenge. New drug evaluation to improve patient survival requires the development of various preclinical models mimicking at best the complexity of the disease and its metastatic potential. We describe here the development and characteristics of two orthotopic bioluminescent (Luc/mKate2) cell‐derived xenograft (CDX) models, Saos‐2‐B‐Luc/mKate2‐CDX and HOS‐Luc/mKate2‐CDX, in different immune (nude and NSG mouse strains) and bone (intratibial and paratibial with periosteum activation) contexts. IVIS SpectrumCT system allowed both longitudinal computed tomography (CT) and bioluminescence real‐time follow‐up of primary tumor growth and metastatic spread, which was confirmed by histology. The murine immune context influenced tumor engraftment, primary tumor growth, and metastatic spread to lungs, bone, and spleen (an unusual localization in humans). Engraftment in NSG mice was found superior to that found in nude mice and intratibial bone environment more favorable to engraftment compared to paratibial injection. The genetic background of the two CDX models also led to distinct primary tumor behavior observed on CT scan. Saos‐2‐B‐Luc/mKate2‐CDX showed osteocondensed, HOS‐Luc/mKate2‐CDX osteolytic morphology. Bioluminescence defined a faster growth of the primary tumor and metastases in Saos‐2‐B‐Luc/mKate2‐CDX than in HOS‐Luc/mKate2‐CDX. The early detection of primary tumor growth and metastatic spread by bioluminescence allows an improved exploration of osteosarcoma disease at tumor progression, and metastatic spread, as well as the evaluations of anticancer treatments. Our orthotopic models with metastatic spread bring complementary information to other types of existing osteosarcoma models.
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spelling pubmed-58523442018-03-22 Establishment and characterization of in vivo orthotopic bioluminescent xenograft models from human osteosarcoma cell lines in Swiss nude and NSG mice Marques da Costa, Maria Eugenia Daudigeos‐Dubus, Estelle Gomez‐Brouchet, Anne Bawa, Olivia Rouffiac, Valerie Serra, Massimo Scotlandi, Katia Santos, Conceição Geoerger, Birgit Gaspar, Nathalie Cancer Med Clinical Cancer Research Osteosarcoma is one of the most common primary bone tumors in childhood and adolescence. Metastases occurrence at diagnosis or during disease evolution is the main therapeutic challenge. New drug evaluation to improve patient survival requires the development of various preclinical models mimicking at best the complexity of the disease and its metastatic potential. We describe here the development and characteristics of two orthotopic bioluminescent (Luc/mKate2) cell‐derived xenograft (CDX) models, Saos‐2‐B‐Luc/mKate2‐CDX and HOS‐Luc/mKate2‐CDX, in different immune (nude and NSG mouse strains) and bone (intratibial and paratibial with periosteum activation) contexts. IVIS SpectrumCT system allowed both longitudinal computed tomography (CT) and bioluminescence real‐time follow‐up of primary tumor growth and metastatic spread, which was confirmed by histology. The murine immune context influenced tumor engraftment, primary tumor growth, and metastatic spread to lungs, bone, and spleen (an unusual localization in humans). Engraftment in NSG mice was found superior to that found in nude mice and intratibial bone environment more favorable to engraftment compared to paratibial injection. The genetic background of the two CDX models also led to distinct primary tumor behavior observed on CT scan. Saos‐2‐B‐Luc/mKate2‐CDX showed osteocondensed, HOS‐Luc/mKate2‐CDX osteolytic morphology. Bioluminescence defined a faster growth of the primary tumor and metastases in Saos‐2‐B‐Luc/mKate2‐CDX than in HOS‐Luc/mKate2‐CDX. The early detection of primary tumor growth and metastatic spread by bioluminescence allows an improved exploration of osteosarcoma disease at tumor progression, and metastatic spread, as well as the evaluations of anticancer treatments. Our orthotopic models with metastatic spread bring complementary information to other types of existing osteosarcoma models. John Wiley and Sons Inc. 2018-02-23 /pmc/articles/PMC5852344/ /pubmed/29473324 http://dx.doi.org/10.1002/cam4.1346 Text en © 2018 The Authors. Cancer Medicine published by John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Clinical Cancer Research
Marques da Costa, Maria Eugenia
Daudigeos‐Dubus, Estelle
Gomez‐Brouchet, Anne
Bawa, Olivia
Rouffiac, Valerie
Serra, Massimo
Scotlandi, Katia
Santos, Conceição
Geoerger, Birgit
Gaspar, Nathalie
Establishment and characterization of in vivo orthotopic bioluminescent xenograft models from human osteosarcoma cell lines in Swiss nude and NSG mice
title Establishment and characterization of in vivo orthotopic bioluminescent xenograft models from human osteosarcoma cell lines in Swiss nude and NSG mice
title_full Establishment and characterization of in vivo orthotopic bioluminescent xenograft models from human osteosarcoma cell lines in Swiss nude and NSG mice
title_fullStr Establishment and characterization of in vivo orthotopic bioluminescent xenograft models from human osteosarcoma cell lines in Swiss nude and NSG mice
title_full_unstemmed Establishment and characterization of in vivo orthotopic bioluminescent xenograft models from human osteosarcoma cell lines in Swiss nude and NSG mice
title_short Establishment and characterization of in vivo orthotopic bioluminescent xenograft models from human osteosarcoma cell lines in Swiss nude and NSG mice
title_sort establishment and characterization of in vivo orthotopic bioluminescent xenograft models from human osteosarcoma cell lines in swiss nude and nsg mice
topic Clinical Cancer Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5852344/
https://www.ncbi.nlm.nih.gov/pubmed/29473324
http://dx.doi.org/10.1002/cam4.1346
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