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An improved model to study tumor cell autonomous metastasis programs using MTLn3 cells and the Rag2(−/−) γc(−/−) mouse

The occurrence of metastases is a critical determinant of the prognosis for breast cancer patients. Effective treatment of breast cancer metastases is hampered by a poor understanding of the mechanisms involved in the formation of these secondary tumor deposits. To study the processes of metastasis,...

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Autores principales: Le Dévédec, Sylvia E., van Roosmalen, Wies, Maria, Naomi, Grimbergen, Max, Pont, Chantal, Lalai, Reshma, van de Water, Bob
Formato: Texto
Lenguaje:English
Publicado: Springer Netherlands 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2776159/
https://www.ncbi.nlm.nih.gov/pubmed/19466569
http://dx.doi.org/10.1007/s10585-009-9267-6
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author Le Dévédec, Sylvia E.
van Roosmalen, Wies
Maria, Naomi
Grimbergen, Max
Pont, Chantal
Lalai, Reshma
van de Water, Bob
author_facet Le Dévédec, Sylvia E.
van Roosmalen, Wies
Maria, Naomi
Grimbergen, Max
Pont, Chantal
Lalai, Reshma
van de Water, Bob
author_sort Le Dévédec, Sylvia E.
collection PubMed
description The occurrence of metastases is a critical determinant of the prognosis for breast cancer patients. Effective treatment of breast cancer metastases is hampered by a poor understanding of the mechanisms involved in the formation of these secondary tumor deposits. To study the processes of metastasis, valid in vivo tumor metastasis models are required. Here, we show that increased expression of the EGF receptor in the MTLn3 rat mammary tumor cell-line is essential for efficient lung metastasis formation in the Rag mouse model. EGFR expression resulted in delayed orthotopic tumor growth but at the same time strongly enhanced intravasation and lung metastasis. Previously, we demonstrated the critical role of NK cells in a lung metastasis model using MTLn3 cells in syngenic F344 rats. However, this model is incompatible with human EGFR. Using the highly metastatic EGFR-overexpressing MTLn3 cell-line, we report that only Rag2(−/−)γc(−/−) mice, which lack NK cells, allow efficient lung metastasis from primary tumors in the mammary gland. In contrast, in nude and SCID mice, the remaining innate immune cells reduce MTLn3 lung metastasis formation. Furthermore, we confirm this finding with the orthotopic transplantation of the 4T1 mouse mammary tumor cell-line. Thus, we have established an improved in vivo model using a Rag2(−/−) γc(−/−) mouse strain together with MTLn3 cells that have increased levels of the EGF receptor, which enables us to study EGFR-dependent tumor cell autonomous mechanisms underlying lung metastasis formation. This improved model can be used for drug target validation and development of new therapeutic strategies against breast cancer metastasis formation. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s10585-009-9267-6) contains supplementary material, which is available to authorized users.
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spelling pubmed-27761592009-11-16 An improved model to study tumor cell autonomous metastasis programs using MTLn3 cells and the Rag2(−/−) γc(−/−) mouse Le Dévédec, Sylvia E. van Roosmalen, Wies Maria, Naomi Grimbergen, Max Pont, Chantal Lalai, Reshma van de Water, Bob Clin Exp Metastasis Research Paper The occurrence of metastases is a critical determinant of the prognosis for breast cancer patients. Effective treatment of breast cancer metastases is hampered by a poor understanding of the mechanisms involved in the formation of these secondary tumor deposits. To study the processes of metastasis, valid in vivo tumor metastasis models are required. Here, we show that increased expression of the EGF receptor in the MTLn3 rat mammary tumor cell-line is essential for efficient lung metastasis formation in the Rag mouse model. EGFR expression resulted in delayed orthotopic tumor growth but at the same time strongly enhanced intravasation and lung metastasis. Previously, we demonstrated the critical role of NK cells in a lung metastasis model using MTLn3 cells in syngenic F344 rats. However, this model is incompatible with human EGFR. Using the highly metastatic EGFR-overexpressing MTLn3 cell-line, we report that only Rag2(−/−)γc(−/−) mice, which lack NK cells, allow efficient lung metastasis from primary tumors in the mammary gland. In contrast, in nude and SCID mice, the remaining innate immune cells reduce MTLn3 lung metastasis formation. Furthermore, we confirm this finding with the orthotopic transplantation of the 4T1 mouse mammary tumor cell-line. Thus, we have established an improved in vivo model using a Rag2(−/−) γc(−/−) mouse strain together with MTLn3 cells that have increased levels of the EGF receptor, which enables us to study EGFR-dependent tumor cell autonomous mechanisms underlying lung metastasis formation. This improved model can be used for drug target validation and development of new therapeutic strategies against breast cancer metastasis formation. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s10585-009-9267-6) contains supplementary material, which is available to authorized users. Springer Netherlands 2009-05-24 2009 /pmc/articles/PMC2776159/ /pubmed/19466569 http://dx.doi.org/10.1007/s10585-009-9267-6 Text en © The Author(s) 2009 https://creativecommons.org/licenses/by-nc/4.0/ This article is distributed under the terms of the Creative Commons Attribution Noncommercial License which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and source are credited.
spellingShingle Research Paper
Le Dévédec, Sylvia E.
van Roosmalen, Wies
Maria, Naomi
Grimbergen, Max
Pont, Chantal
Lalai, Reshma
van de Water, Bob
An improved model to study tumor cell autonomous metastasis programs using MTLn3 cells and the Rag2(−/−) γc(−/−) mouse
title An improved model to study tumor cell autonomous metastasis programs using MTLn3 cells and the Rag2(−/−) γc(−/−) mouse
title_full An improved model to study tumor cell autonomous metastasis programs using MTLn3 cells and the Rag2(−/−) γc(−/−) mouse
title_fullStr An improved model to study tumor cell autonomous metastasis programs using MTLn3 cells and the Rag2(−/−) γc(−/−) mouse
title_full_unstemmed An improved model to study tumor cell autonomous metastasis programs using MTLn3 cells and the Rag2(−/−) γc(−/−) mouse
title_short An improved model to study tumor cell autonomous metastasis programs using MTLn3 cells and the Rag2(−/−) γc(−/−) mouse
title_sort improved model to study tumor cell autonomous metastasis programs using mtln3 cells and the rag2(−/−) γc(−/−) mouse
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2776159/
https://www.ncbi.nlm.nih.gov/pubmed/19466569
http://dx.doi.org/10.1007/s10585-009-9267-6
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