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Tumor-specific expression of αvβ3 integrin promotes spontaneous metastasis of breast cancer to bone

INTRODUCTION: Studies in xenograft models and experimental models of metastasis have implicated several β3 integrin-expressing cell populations, including endothelium, platelets and osteoclasts, in breast tumor progression. Since orthotopic human xenograft models of breast cancer are poorly metastat...

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Autores principales: Sloan, Erica K, Pouliot, Normand, Stanley, Kym L, Chia, Jenny, Moseley, Jane M, Hards, Daphne K, Anderson, Robin L
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1557720/
https://www.ncbi.nlm.nih.gov/pubmed/16608535
http://dx.doi.org/10.1186/bcr1398
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author Sloan, Erica K
Pouliot, Normand
Stanley, Kym L
Chia, Jenny
Moseley, Jane M
Hards, Daphne K
Anderson, Robin L
author_facet Sloan, Erica K
Pouliot, Normand
Stanley, Kym L
Chia, Jenny
Moseley, Jane M
Hards, Daphne K
Anderson, Robin L
author_sort Sloan, Erica K
collection PubMed
description INTRODUCTION: Studies in xenograft models and experimental models of metastasis have implicated several β3 integrin-expressing cell populations, including endothelium, platelets and osteoclasts, in breast tumor progression. Since orthotopic human xenograft models of breast cancer are poorly metastatic to bone and experimental models bypass the formation of a primary tumor, however, the precise contribution of tumor-specific αvβ3 to the spontaneous metastasis of breast tumors from the mammary gland to bone remains unclear. METHODS: We used a syngeneic orthotopic model of spontaneous breast cancer metastasis to test whether exogenous expression of αvβ3 in a mammary carcinoma line (66cl4) that metastasizes to the lung, but not to bone, was sufficient to promote its spontaneous metastasis to bone from the mammary gland. The tumor burden in the spine and the lung following inoculation of αvβ3-expressing 66cl4 (66cl4beta3) tumor cells or control 66cl4pBabe into the mammary gland was analyzed by real-time quantitative PCR. The ability of these cells to grow and form osteolytic lesions in bone was determined by histology and tartrate-resistant acid phosphatase staining of bone sections following intratibial injection of tumor cells. The adhesive, migratory and invasive properties of 66cl4pBabe and 66cl4beta3 cells were evaluated in standard in vitro assays. RESULTS: The 66cl4beta3 tumors showed a 20-fold increase in metastatic burden in the spine compared with 66cl4pBabe. A similar trend in lung metastasis was observed. αvβ3 did not increase the proliferation of 66cl4 cells in vitro or in the mammary gland in vivo. Similarly, αvβ3 is not required for the proliferation of 66cl4 cells in bone as both 66cl4pBabe and 66cl4beta3 proliferated to the same extent when injected directly into the tibia. 66cl4beta3 tumor growth in the tibia, however, increased osteoclast recruitment and bone resorption compared with 66cl4 tumors. Moreover, αvβ3 increased 66cl4 tumor cell adhesion and αvβ3-dependent haptotactic migration towards bone matrix proteins, as well as their chemotactic response to bone-derived soluble factors in vitro. CONCLUSION: These results demonstrate for the first time that tumor-specific αvβ3 contributes to spontaneous metastasis of breast tumors to bone and suggest a critical role for this receptor in mediating chemotactic and haptotactic migration towards bone factors.
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spelling pubmed-15577202006-09-01 Tumor-specific expression of αvβ3 integrin promotes spontaneous metastasis of breast cancer to bone Sloan, Erica K Pouliot, Normand Stanley, Kym L Chia, Jenny Moseley, Jane M Hards, Daphne K Anderson, Robin L Breast Cancer Res Research Article INTRODUCTION: Studies in xenograft models and experimental models of metastasis have implicated several β3 integrin-expressing cell populations, including endothelium, platelets and osteoclasts, in breast tumor progression. Since orthotopic human xenograft models of breast cancer are poorly metastatic to bone and experimental models bypass the formation of a primary tumor, however, the precise contribution of tumor-specific αvβ3 to the spontaneous metastasis of breast tumors from the mammary gland to bone remains unclear. METHODS: We used a syngeneic orthotopic model of spontaneous breast cancer metastasis to test whether exogenous expression of αvβ3 in a mammary carcinoma line (66cl4) that metastasizes to the lung, but not to bone, was sufficient to promote its spontaneous metastasis to bone from the mammary gland. The tumor burden in the spine and the lung following inoculation of αvβ3-expressing 66cl4 (66cl4beta3) tumor cells or control 66cl4pBabe into the mammary gland was analyzed by real-time quantitative PCR. The ability of these cells to grow and form osteolytic lesions in bone was determined by histology and tartrate-resistant acid phosphatase staining of bone sections following intratibial injection of tumor cells. The adhesive, migratory and invasive properties of 66cl4pBabe and 66cl4beta3 cells were evaluated in standard in vitro assays. RESULTS: The 66cl4beta3 tumors showed a 20-fold increase in metastatic burden in the spine compared with 66cl4pBabe. A similar trend in lung metastasis was observed. αvβ3 did not increase the proliferation of 66cl4 cells in vitro or in the mammary gland in vivo. Similarly, αvβ3 is not required for the proliferation of 66cl4 cells in bone as both 66cl4pBabe and 66cl4beta3 proliferated to the same extent when injected directly into the tibia. 66cl4beta3 tumor growth in the tibia, however, increased osteoclast recruitment and bone resorption compared with 66cl4 tumors. Moreover, αvβ3 increased 66cl4 tumor cell adhesion and αvβ3-dependent haptotactic migration towards bone matrix proteins, as well as their chemotactic response to bone-derived soluble factors in vitro. CONCLUSION: These results demonstrate for the first time that tumor-specific αvβ3 contributes to spontaneous metastasis of breast tumors to bone and suggest a critical role for this receptor in mediating chemotactic and haptotactic migration towards bone factors. BioMed Central 2006 2006-04-11 /pmc/articles/PMC1557720/ /pubmed/16608535 http://dx.doi.org/10.1186/bcr1398 Text en Copyright © 2006 Sloan et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Sloan, Erica K
Pouliot, Normand
Stanley, Kym L
Chia, Jenny
Moseley, Jane M
Hards, Daphne K
Anderson, Robin L
Tumor-specific expression of αvβ3 integrin promotes spontaneous metastasis of breast cancer to bone
title Tumor-specific expression of αvβ3 integrin promotes spontaneous metastasis of breast cancer to bone
title_full Tumor-specific expression of αvβ3 integrin promotes spontaneous metastasis of breast cancer to bone
title_fullStr Tumor-specific expression of αvβ3 integrin promotes spontaneous metastasis of breast cancer to bone
title_full_unstemmed Tumor-specific expression of αvβ3 integrin promotes spontaneous metastasis of breast cancer to bone
title_short Tumor-specific expression of αvβ3 integrin promotes spontaneous metastasis of breast cancer to bone
title_sort tumor-specific expression of αvβ3 integrin promotes spontaneous metastasis of breast cancer to bone
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1557720/
https://www.ncbi.nlm.nih.gov/pubmed/16608535
http://dx.doi.org/10.1186/bcr1398
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