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Multiorgan Metastasis of Human HER-2(+) Breast Cancer in Rag2(−/−);Il2rg(−/−) Mice and Treatment with PI3K Inhibitor

In vivo studies of the metastatic process are severely hampered by the fact that most human tumor cell lines derived from highly metastatic tumors fail to consistently metastasize in immunodeficient mice like nude mice. We describe a model system based on a highly immunodeficient double knockout mou...

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Autores principales: Nanni, Patrizia, Nicoletti, Giordano, Palladini, Arianna, Croci, Stefania, Murgo, Annalisa, Ianzano, Marianna L., Grosso, Valentina, Stivani, Valeria, Antognoli, Agnese, Lamolinara, Alessia, Landuzzi, Lorena, di Tomaso, Emmanuelle, Iezzi, Manuela, De Giovanni, Carla, Lollini, Pier-Luigi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3380859/
https://www.ncbi.nlm.nih.gov/pubmed/22737248
http://dx.doi.org/10.1371/journal.pone.0039626
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author Nanni, Patrizia
Nicoletti, Giordano
Palladini, Arianna
Croci, Stefania
Murgo, Annalisa
Ianzano, Marianna L.
Grosso, Valentina
Stivani, Valeria
Antognoli, Agnese
Lamolinara, Alessia
Landuzzi, Lorena
di Tomaso, Emmanuelle
Iezzi, Manuela
De Giovanni, Carla
Lollini, Pier-Luigi
author_facet Nanni, Patrizia
Nicoletti, Giordano
Palladini, Arianna
Croci, Stefania
Murgo, Annalisa
Ianzano, Marianna L.
Grosso, Valentina
Stivani, Valeria
Antognoli, Agnese
Lamolinara, Alessia
Landuzzi, Lorena
di Tomaso, Emmanuelle
Iezzi, Manuela
De Giovanni, Carla
Lollini, Pier-Luigi
author_sort Nanni, Patrizia
collection PubMed
description In vivo studies of the metastatic process are severely hampered by the fact that most human tumor cell lines derived from highly metastatic tumors fail to consistently metastasize in immunodeficient mice like nude mice. We describe a model system based on a highly immunodeficient double knockout mouse, Rag2(−/−);Il2rg(−/−), which lacks T, B and NK cell activity. In this model human metastatic HER-2(+) breast cancer cells displayed their full multiorgan metastatic potential, without the need for selections or additional manipulations of the system. Human HER-2(+) breast cancer cell lines MDA-MB-453 and BT-474 injected into Rag2(−/−);Il2rg(−/−) mice faithfully reproduced human cancer dissemination, with multiple metastatic sites that included lungs, bones, brain, liver, ovaries, and others. Multiorgan metastatic spread was obtained both from local tumors, growing orthotopically or subcutaneously, and from cells injected intravenously. The problem of brain recurrencies is acutely felt in HER-2(+) breast cancer, because monoclonal antibodies against HER-2 penetrate poorly the blood-brain barrier. We studied whether a novel oral small molecule inhibitor of downstream PI3K, selected for its penetration of the blood-brain barrier, could affect multiorgan metastatic spread in Rag2(−/−); Il2rg(−/−) mice. NVP-BKM120 effectively controlled metastatic growth in multiple organs, and resulted in a significant proportion of mice free from brain and bone metastases. Human HER-2(+) human breast cancer cells in Rag2(−/−);Il2rg(−/−) mice faithfully reproduced the multiorgan metastatic pattern observed in patients, thus allowing the investigation of metastatic mechanisms and the preclinical study of novel antimetastatic agents.
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spelling pubmed-33808592012-06-26 Multiorgan Metastasis of Human HER-2(+) Breast Cancer in Rag2(−/−);Il2rg(−/−) Mice and Treatment with PI3K Inhibitor Nanni, Patrizia Nicoletti, Giordano Palladini, Arianna Croci, Stefania Murgo, Annalisa Ianzano, Marianna L. Grosso, Valentina Stivani, Valeria Antognoli, Agnese Lamolinara, Alessia Landuzzi, Lorena di Tomaso, Emmanuelle Iezzi, Manuela De Giovanni, Carla Lollini, Pier-Luigi PLoS One Research Article In vivo studies of the metastatic process are severely hampered by the fact that most human tumor cell lines derived from highly metastatic tumors fail to consistently metastasize in immunodeficient mice like nude mice. We describe a model system based on a highly immunodeficient double knockout mouse, Rag2(−/−);Il2rg(−/−), which lacks T, B and NK cell activity. In this model human metastatic HER-2(+) breast cancer cells displayed their full multiorgan metastatic potential, without the need for selections or additional manipulations of the system. Human HER-2(+) breast cancer cell lines MDA-MB-453 and BT-474 injected into Rag2(−/−);Il2rg(−/−) mice faithfully reproduced human cancer dissemination, with multiple metastatic sites that included lungs, bones, brain, liver, ovaries, and others. Multiorgan metastatic spread was obtained both from local tumors, growing orthotopically or subcutaneously, and from cells injected intravenously. The problem of brain recurrencies is acutely felt in HER-2(+) breast cancer, because monoclonal antibodies against HER-2 penetrate poorly the blood-brain barrier. We studied whether a novel oral small molecule inhibitor of downstream PI3K, selected for its penetration of the blood-brain barrier, could affect multiorgan metastatic spread in Rag2(−/−); Il2rg(−/−) mice. NVP-BKM120 effectively controlled metastatic growth in multiple organs, and resulted in a significant proportion of mice free from brain and bone metastases. Human HER-2(+) human breast cancer cells in Rag2(−/−);Il2rg(−/−) mice faithfully reproduced the multiorgan metastatic pattern observed in patients, thus allowing the investigation of metastatic mechanisms and the preclinical study of novel antimetastatic agents. Public Library of Science 2012-06-21 /pmc/articles/PMC3380859/ /pubmed/22737248 http://dx.doi.org/10.1371/journal.pone.0039626 Text en Nanni et al. http://creativecommons.org/licenses/by/4.0/ 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 author and source are properly credited.
spellingShingle Research Article
Nanni, Patrizia
Nicoletti, Giordano
Palladini, Arianna
Croci, Stefania
Murgo, Annalisa
Ianzano, Marianna L.
Grosso, Valentina
Stivani, Valeria
Antognoli, Agnese
Lamolinara, Alessia
Landuzzi, Lorena
di Tomaso, Emmanuelle
Iezzi, Manuela
De Giovanni, Carla
Lollini, Pier-Luigi
Multiorgan Metastasis of Human HER-2(+) Breast Cancer in Rag2(−/−);Il2rg(−/−) Mice and Treatment with PI3K Inhibitor
title Multiorgan Metastasis of Human HER-2(+) Breast Cancer in Rag2(−/−);Il2rg(−/−) Mice and Treatment with PI3K Inhibitor
title_full Multiorgan Metastasis of Human HER-2(+) Breast Cancer in Rag2(−/−);Il2rg(−/−) Mice and Treatment with PI3K Inhibitor
title_fullStr Multiorgan Metastasis of Human HER-2(+) Breast Cancer in Rag2(−/−);Il2rg(−/−) Mice and Treatment with PI3K Inhibitor
title_full_unstemmed Multiorgan Metastasis of Human HER-2(+) Breast Cancer in Rag2(−/−);Il2rg(−/−) Mice and Treatment with PI3K Inhibitor
title_short Multiorgan Metastasis of Human HER-2(+) Breast Cancer in Rag2(−/−);Il2rg(−/−) Mice and Treatment with PI3K Inhibitor
title_sort multiorgan metastasis of human her-2(+) breast cancer in rag2(−/−);il2rg(−/−) mice and treatment with pi3k inhibitor
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3380859/
https://www.ncbi.nlm.nih.gov/pubmed/22737248
http://dx.doi.org/10.1371/journal.pone.0039626
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