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MMP1, MMP9, and COX2 Expressions in Promonocytes Are Induced by Breast Cancer Cells and Correlate with Collagen Degradation, Transformation-Like Morphological Changes in MCF-10A Acini, and Tumor Aggressiveness

Tumor-associated immune cells often lack immune effector activities, and instead they present protumoral functions. To understand how tumors promote this immunological switch, invasive and noninvasive breast cancer cell (BRC) lines were cocultured with a promonocytic cell line in a Matrigel-based 3D...

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Autores principales: Chimal-Ramírez, G. K., Espinoza-Sánchez, N. A., Utrera-Barillas, D., Benítez-Bribiesca, L., Velázquez, J. R., Arriaga-Pizano, L. A., Monroy-García, A., Reyes-Maldonado, E., Domínguez-López, M. L., Piña-Sánchez, Patricia, Fuentes-Pananá, E. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3665169/
https://www.ncbi.nlm.nih.gov/pubmed/23762835
http://dx.doi.org/10.1155/2013/279505
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author Chimal-Ramírez, G. K.
Espinoza-Sánchez, N. A.
Utrera-Barillas, D.
Benítez-Bribiesca, L.
Velázquez, J. R.
Arriaga-Pizano, L. A.
Monroy-García, A.
Reyes-Maldonado, E.
Domínguez-López, M. L.
Piña-Sánchez, Patricia
Fuentes-Pananá, E. M.
author_facet Chimal-Ramírez, G. K.
Espinoza-Sánchez, N. A.
Utrera-Barillas, D.
Benítez-Bribiesca, L.
Velázquez, J. R.
Arriaga-Pizano, L. A.
Monroy-García, A.
Reyes-Maldonado, E.
Domínguez-López, M. L.
Piña-Sánchez, Patricia
Fuentes-Pananá, E. M.
author_sort Chimal-Ramírez, G. K.
collection PubMed
description Tumor-associated immune cells often lack immune effector activities, and instead they present protumoral functions. To understand how tumors promote this immunological switch, invasive and noninvasive breast cancer cell (BRC) lines were cocultured with a promonocytic cell line in a Matrigel-based 3D system. We hypothesized that if communication exists between tumor and immune cells, coculturing would result in augmented expression of genes associated with tumor malignancy. Upregulation of proteases MMP1 and MMP9 and inflammatory COX2 genes was found likely in response to soluble factors. Interestingly, changes were more apparent in promonocytes and correlated with the aggressiveness of the BRC line. Increased gene expression was confirmed by collagen degradation assays and immunocytochemistry of prostaglandin 2, a product of COX2 activity. Untransformed MCF-10A cells were then used as a sensor of soluble factors with transformation-like capabilities, finding that acini formed in the presence of supernatants of the highly aggressive BRC/promonocyte cocultures often exhibited total loss of the normal architecture. These data support that tumor cells can modify immune cell gene expression and tumor aggressiveness may importantly reside in this capacity. Modeling interactions in the tumor stroma will allow the identification of genes useful as cancer prognostic markers and therapy targets.
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spelling pubmed-36651692013-06-12 MMP1, MMP9, and COX2 Expressions in Promonocytes Are Induced by Breast Cancer Cells and Correlate with Collagen Degradation, Transformation-Like Morphological Changes in MCF-10A Acini, and Tumor Aggressiveness Chimal-Ramírez, G. K. Espinoza-Sánchez, N. A. Utrera-Barillas, D. Benítez-Bribiesca, L. Velázquez, J. R. Arriaga-Pizano, L. A. Monroy-García, A. Reyes-Maldonado, E. Domínguez-López, M. L. Piña-Sánchez, Patricia Fuentes-Pananá, E. M. Biomed Res Int Research Article Tumor-associated immune cells often lack immune effector activities, and instead they present protumoral functions. To understand how tumors promote this immunological switch, invasive and noninvasive breast cancer cell (BRC) lines were cocultured with a promonocytic cell line in a Matrigel-based 3D system. We hypothesized that if communication exists between tumor and immune cells, coculturing would result in augmented expression of genes associated with tumor malignancy. Upregulation of proteases MMP1 and MMP9 and inflammatory COX2 genes was found likely in response to soluble factors. Interestingly, changes were more apparent in promonocytes and correlated with the aggressiveness of the BRC line. Increased gene expression was confirmed by collagen degradation assays and immunocytochemistry of prostaglandin 2, a product of COX2 activity. Untransformed MCF-10A cells were then used as a sensor of soluble factors with transformation-like capabilities, finding that acini formed in the presence of supernatants of the highly aggressive BRC/promonocyte cocultures often exhibited total loss of the normal architecture. These data support that tumor cells can modify immune cell gene expression and tumor aggressiveness may importantly reside in this capacity. Modeling interactions in the tumor stroma will allow the identification of genes useful as cancer prognostic markers and therapy targets. Hindawi Publishing Corporation 2013 2013-05-09 /pmc/articles/PMC3665169/ /pubmed/23762835 http://dx.doi.org/10.1155/2013/279505 Text en Copyright © 2013 G. K. Chimal-Ramírez et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Chimal-Ramírez, G. K.
Espinoza-Sánchez, N. A.
Utrera-Barillas, D.
Benítez-Bribiesca, L.
Velázquez, J. R.
Arriaga-Pizano, L. A.
Monroy-García, A.
Reyes-Maldonado, E.
Domínguez-López, M. L.
Piña-Sánchez, Patricia
Fuentes-Pananá, E. M.
MMP1, MMP9, and COX2 Expressions in Promonocytes Are Induced by Breast Cancer Cells and Correlate with Collagen Degradation, Transformation-Like Morphological Changes in MCF-10A Acini, and Tumor Aggressiveness
title MMP1, MMP9, and COX2 Expressions in Promonocytes Are Induced by Breast Cancer Cells and Correlate with Collagen Degradation, Transformation-Like Morphological Changes in MCF-10A Acini, and Tumor Aggressiveness
title_full MMP1, MMP9, and COX2 Expressions in Promonocytes Are Induced by Breast Cancer Cells and Correlate with Collagen Degradation, Transformation-Like Morphological Changes in MCF-10A Acini, and Tumor Aggressiveness
title_fullStr MMP1, MMP9, and COX2 Expressions in Promonocytes Are Induced by Breast Cancer Cells and Correlate with Collagen Degradation, Transformation-Like Morphological Changes in MCF-10A Acini, and Tumor Aggressiveness
title_full_unstemmed MMP1, MMP9, and COX2 Expressions in Promonocytes Are Induced by Breast Cancer Cells and Correlate with Collagen Degradation, Transformation-Like Morphological Changes in MCF-10A Acini, and Tumor Aggressiveness
title_short MMP1, MMP9, and COX2 Expressions in Promonocytes Are Induced by Breast Cancer Cells and Correlate with Collagen Degradation, Transformation-Like Morphological Changes in MCF-10A Acini, and Tumor Aggressiveness
title_sort mmp1, mmp9, and cox2 expressions in promonocytes are induced by breast cancer cells and correlate with collagen degradation, transformation-like morphological changes in mcf-10a acini, and tumor aggressiveness
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3665169/
https://www.ncbi.nlm.nih.gov/pubmed/23762835
http://dx.doi.org/10.1155/2013/279505
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