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Suppression of tumor-derived Semaphorin 7A and genetic ablation of host-derived Semaphorin 7A impairs tumor progression in a murine model of advanced breast carcinoma

Solid tumors can generate a plethora of neurogenesis-related molecules that enhance their growth and metastasis. Among them, we have identified axonal guidance molecule Semaphorin 7A (SEMA7A) in breast cancer. The goal of this study was to determine the therapeutic effect of suppressing SEMA7A level...

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Autores principales: Garcia-Areas, R., Libreros, S., Simoes, M., Castro-Silva, C., Gazaniga, N., Amat, S., Jaczewska, J., Keating, P., Schilling, K., Brito, M., Wojcikiewicz, E.P., Iragavarpu-Charyulu, V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5642386/
https://www.ncbi.nlm.nih.gov/pubmed/29048670
http://dx.doi.org/10.3892/ijo.2017.4144
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author Garcia-Areas, R.
Libreros, S.
Simoes, M.
Castro-Silva, C.
Gazaniga, N.
Amat, S.
Jaczewska, J.
Keating, P.
Schilling, K.
Brito, M.
Wojcikiewicz, E.P.
Iragavarpu-Charyulu, V.
author_facet Garcia-Areas, R.
Libreros, S.
Simoes, M.
Castro-Silva, C.
Gazaniga, N.
Amat, S.
Jaczewska, J.
Keating, P.
Schilling, K.
Brito, M.
Wojcikiewicz, E.P.
Iragavarpu-Charyulu, V.
author_sort Garcia-Areas, R.
collection PubMed
description Solid tumors can generate a plethora of neurogenesis-related molecules that enhance their growth and metastasis. Among them, we have identified axonal guidance molecule Semaphorin 7A (SEMA7A) in breast cancer. The goal of this study was to determine the therapeutic effect of suppressing SEMA7A levels in the 4T1 murine model of advanced breast carcinoma. We used anti-SEMA7A short hairpin RNA (shRNA) to gene silence SEMA7A in 4T1 mammary tumor cells. When implanted into the mammary fat pads of syngeneic mice, SEMA7A shRNA-expressing 4T1 tumors exhibited decreased growth rates, deferred metastasis and reduced mortality. In vitro, SEMA7A shRNA-expressing 4T1 cells had weakened proliferative, migratory and invasive abilities, and decreased levels of mesenchymal factors. Atomic force microscopy studies showed that SEMA7A shRNA-expressing 4T1 cells had an increase in cell stiffness that corresponded with their decreased malignant potential. Genetic ablation of host-derived SEMA7A further enhanced the antitumor effects of SEMA7A shRNA gene silencing in 4T1 cells. Our preclinical findings demonstrate a critical role for SEMA7A in mediating mammary tumor progression.
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spelling pubmed-56423862017-10-22 Suppression of tumor-derived Semaphorin 7A and genetic ablation of host-derived Semaphorin 7A impairs tumor progression in a murine model of advanced breast carcinoma Garcia-Areas, R. Libreros, S. Simoes, M. Castro-Silva, C. Gazaniga, N. Amat, S. Jaczewska, J. Keating, P. Schilling, K. Brito, M. Wojcikiewicz, E.P. Iragavarpu-Charyulu, V. Int J Oncol Articles Solid tumors can generate a plethora of neurogenesis-related molecules that enhance their growth and metastasis. Among them, we have identified axonal guidance molecule Semaphorin 7A (SEMA7A) in breast cancer. The goal of this study was to determine the therapeutic effect of suppressing SEMA7A levels in the 4T1 murine model of advanced breast carcinoma. We used anti-SEMA7A short hairpin RNA (shRNA) to gene silence SEMA7A in 4T1 mammary tumor cells. When implanted into the mammary fat pads of syngeneic mice, SEMA7A shRNA-expressing 4T1 tumors exhibited decreased growth rates, deferred metastasis and reduced mortality. In vitro, SEMA7A shRNA-expressing 4T1 cells had weakened proliferative, migratory and invasive abilities, and decreased levels of mesenchymal factors. Atomic force microscopy studies showed that SEMA7A shRNA-expressing 4T1 cells had an increase in cell stiffness that corresponded with their decreased malignant potential. Genetic ablation of host-derived SEMA7A further enhanced the antitumor effects of SEMA7A shRNA gene silencing in 4T1 cells. Our preclinical findings demonstrate a critical role for SEMA7A in mediating mammary tumor progression. D.A. Spandidos 2017-10-03 /pmc/articles/PMC5642386/ /pubmed/29048670 http://dx.doi.org/10.3892/ijo.2017.4144 Text en Copyright: © Garcia-Areas et al. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Articles
Garcia-Areas, R.
Libreros, S.
Simoes, M.
Castro-Silva, C.
Gazaniga, N.
Amat, S.
Jaczewska, J.
Keating, P.
Schilling, K.
Brito, M.
Wojcikiewicz, E.P.
Iragavarpu-Charyulu, V.
Suppression of tumor-derived Semaphorin 7A and genetic ablation of host-derived Semaphorin 7A impairs tumor progression in a murine model of advanced breast carcinoma
title Suppression of tumor-derived Semaphorin 7A and genetic ablation of host-derived Semaphorin 7A impairs tumor progression in a murine model of advanced breast carcinoma
title_full Suppression of tumor-derived Semaphorin 7A and genetic ablation of host-derived Semaphorin 7A impairs tumor progression in a murine model of advanced breast carcinoma
title_fullStr Suppression of tumor-derived Semaphorin 7A and genetic ablation of host-derived Semaphorin 7A impairs tumor progression in a murine model of advanced breast carcinoma
title_full_unstemmed Suppression of tumor-derived Semaphorin 7A and genetic ablation of host-derived Semaphorin 7A impairs tumor progression in a murine model of advanced breast carcinoma
title_short Suppression of tumor-derived Semaphorin 7A and genetic ablation of host-derived Semaphorin 7A impairs tumor progression in a murine model of advanced breast carcinoma
title_sort suppression of tumor-derived semaphorin 7a and genetic ablation of host-derived semaphorin 7a impairs tumor progression in a murine model of advanced breast carcinoma
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5642386/
https://www.ncbi.nlm.nih.gov/pubmed/29048670
http://dx.doi.org/10.3892/ijo.2017.4144
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