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Altered serotonin physiology in human breast cancers favors paradoxical growth and cell survival

INTRODUCTION: The breast microenvironment can either retard or accelerate the events associated with progression of latent cancers. However, the actions of local physiological mediators in the context of breast cancers are poorly understood. Serotonin (5-HT) is a critical local regulator of epitheli...

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Autores principales: Pai, Vaibhav P, Marshall, Aaron M, Hernandez, Laura L, Buckley, Arthur R, Horseman, Nelson D
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2815543/
https://www.ncbi.nlm.nih.gov/pubmed/19903352
http://dx.doi.org/10.1186/bcr2448
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author Pai, Vaibhav P
Marshall, Aaron M
Hernandez, Laura L
Buckley, Arthur R
Horseman, Nelson D
author_facet Pai, Vaibhav P
Marshall, Aaron M
Hernandez, Laura L
Buckley, Arthur R
Horseman, Nelson D
author_sort Pai, Vaibhav P
collection PubMed
description INTRODUCTION: The breast microenvironment can either retard or accelerate the events associated with progression of latent cancers. However, the actions of local physiological mediators in the context of breast cancers are poorly understood. Serotonin (5-HT) is a critical local regulator of epithelial homeostasis in the breast and other organs. Herein, we report complex alterations in the intrinsic mammary gland serotonin system of human breast cancers. METHODS: Serotonin biosynthetic capacity was analyzed in human breast tumor tissue microarrays using immunohistochemistry for tryptophan hydroxylase 1 (TPH1). Serotonin receptors (5-HT1-7) were analyzed in human breast tumors using the Oncomine database. Serotonin receptor expression, signal transduction, and 5-HT effects on breast cancer cell phenotype were compared in non-transformed and transformed human breast cells. RESULTS: In the context of the normal mammary gland, 5-HT acts as a physiological regulator of lactation and involution, in part by favoring growth arrest and cell death. This tightly regulated 5-HT system is subverted in multiple ways in human breast cancers. Specifically, TPH1 expression undergoes a non-linear change during progression, with increased expression during malignant progression. Correspondingly, the tightly regulated pattern of 5-HT receptors becomes dysregulated in human breast cancer cells, resulting in both ectopic expression of some isoforms and suppression of others. The receptor expression change is accompanied by altered downstream signaling of 5-HT receptors in human breast cancer cells, resulting in resistance to 5-HT-induced apoptosis, and stimulated proliferation. CONCLUSIONS: Our data constitutes the first report of direct involvement of 5-HT in human breast cancer. Increased 5-HT biosynthetic capacity accompanied by multiple changes in 5-HT receptor expression and signaling favor malignant progression of human breast cancer cells (for example, stimulated proliferation, inappropriate cell survival). This occurs through uncoupling of serotonin from the homeostatic regulatory mechanisms of the normal mammary epithelium. The findings open a new avenue for identification of diagnostic and prognostic markers, and valuable new therapeutic targets for managing breast cancer.
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spelling pubmed-28155432010-02-03 Altered serotonin physiology in human breast cancers favors paradoxical growth and cell survival Pai, Vaibhav P Marshall, Aaron M Hernandez, Laura L Buckley, Arthur R Horseman, Nelson D Breast Cancer Res Research article INTRODUCTION: The breast microenvironment can either retard or accelerate the events associated with progression of latent cancers. However, the actions of local physiological mediators in the context of breast cancers are poorly understood. Serotonin (5-HT) is a critical local regulator of epithelial homeostasis in the breast and other organs. Herein, we report complex alterations in the intrinsic mammary gland serotonin system of human breast cancers. METHODS: Serotonin biosynthetic capacity was analyzed in human breast tumor tissue microarrays using immunohistochemistry for tryptophan hydroxylase 1 (TPH1). Serotonin receptors (5-HT1-7) were analyzed in human breast tumors using the Oncomine database. Serotonin receptor expression, signal transduction, and 5-HT effects on breast cancer cell phenotype were compared in non-transformed and transformed human breast cells. RESULTS: In the context of the normal mammary gland, 5-HT acts as a physiological regulator of lactation and involution, in part by favoring growth arrest and cell death. This tightly regulated 5-HT system is subverted in multiple ways in human breast cancers. Specifically, TPH1 expression undergoes a non-linear change during progression, with increased expression during malignant progression. Correspondingly, the tightly regulated pattern of 5-HT receptors becomes dysregulated in human breast cancer cells, resulting in both ectopic expression of some isoforms and suppression of others. The receptor expression change is accompanied by altered downstream signaling of 5-HT receptors in human breast cancer cells, resulting in resistance to 5-HT-induced apoptosis, and stimulated proliferation. CONCLUSIONS: Our data constitutes the first report of direct involvement of 5-HT in human breast cancer. Increased 5-HT biosynthetic capacity accompanied by multiple changes in 5-HT receptor expression and signaling favor malignant progression of human breast cancer cells (for example, stimulated proliferation, inappropriate cell survival). This occurs through uncoupling of serotonin from the homeostatic regulatory mechanisms of the normal mammary epithelium. The findings open a new avenue for identification of diagnostic and prognostic markers, and valuable new therapeutic targets for managing breast cancer. BioMed Central 2009 2009-11-10 /pmc/articles/PMC2815543/ /pubmed/19903352 http://dx.doi.org/10.1186/bcr2448 Text en Copyright ©2009 Pai 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
Pai, Vaibhav P
Marshall, Aaron M
Hernandez, Laura L
Buckley, Arthur R
Horseman, Nelson D
Altered serotonin physiology in human breast cancers favors paradoxical growth and cell survival
title Altered serotonin physiology in human breast cancers favors paradoxical growth and cell survival
title_full Altered serotonin physiology in human breast cancers favors paradoxical growth and cell survival
title_fullStr Altered serotonin physiology in human breast cancers favors paradoxical growth and cell survival
title_full_unstemmed Altered serotonin physiology in human breast cancers favors paradoxical growth and cell survival
title_short Altered serotonin physiology in human breast cancers favors paradoxical growth and cell survival
title_sort altered serotonin physiology in human breast cancers favors paradoxical growth and cell survival
topic Research article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2815543/
https://www.ncbi.nlm.nih.gov/pubmed/19903352
http://dx.doi.org/10.1186/bcr2448
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