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Glucocorticoids promote transition of ductal carcinoma in situ to invasive ductal carcinoma by inducing myoepithelial cell apoptosis
by
Fuster, Gemma
, Guzman, Flavia
, Chen, Xieng
, Almendro, Vanessa
, Noguera-Castells, Aleix
, Prats de Puig, Miquel
, Carbó, Neus
, Mancino, Mario
, Enreig, Estel
, Bragado, Paloma
, Moragas, Núria
, Gascón, Pedro
, López-Plana, Anna
, Alcaraz, Mireia
, Recalde-Percaz, Leire
, Fernández-Nogueira, Patricia
, Zubeldia-Plazaola, Arantzazu
in
Angiogenesis
/ Animal models
/ Apoptosis
/ Biomedical and Life Sciences
/ Biomedicine
/ Blood levels
/ Breast cancer
/ Cancer Research
/ Carcinoma, Ductal
/ Cell cycle
/ Corticosteroids
/ Corticosterone
/ Cortisol
/ DCIS
/ Development and progression
/ Dosage and administration
/ Drug therapy
/ Epithelial cells
/ Gene expression
/ Glucocorticoids
/ Health aspects
/ Hormones
/ Invasiveness
/ Laminin
/ Myoepithelial cells
/ Oncology
/ Physiological aspects
/ Physiology
/ Research Article
/ Rodents
/ Stress response
/ Surgical Oncology
/ Women
2018
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Glucocorticoids promote transition of ductal carcinoma in situ to invasive ductal carcinoma by inducing myoepithelial cell apoptosis
by
Fuster, Gemma
, Guzman, Flavia
, Chen, Xieng
, Almendro, Vanessa
, Noguera-Castells, Aleix
, Prats de Puig, Miquel
, Carbó, Neus
, Mancino, Mario
, Enreig, Estel
, Bragado, Paloma
, Moragas, Núria
, Gascón, Pedro
, López-Plana, Anna
, Alcaraz, Mireia
, Recalde-Percaz, Leire
, Fernández-Nogueira, Patricia
, Zubeldia-Plazaola, Arantzazu
in
Angiogenesis
/ Animal models
/ Apoptosis
/ Biomedical and Life Sciences
/ Biomedicine
/ Blood levels
/ Breast cancer
/ Cancer Research
/ Carcinoma, Ductal
/ Cell cycle
/ Corticosteroids
/ Corticosterone
/ Cortisol
/ DCIS
/ Development and progression
/ Dosage and administration
/ Drug therapy
/ Epithelial cells
/ Gene expression
/ Glucocorticoids
/ Health aspects
/ Hormones
/ Invasiveness
/ Laminin
/ Myoepithelial cells
/ Oncology
/ Physiological aspects
/ Physiology
/ Research Article
/ Rodents
/ Stress response
/ Surgical Oncology
/ Women
2018
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Glucocorticoids promote transition of ductal carcinoma in situ to invasive ductal carcinoma by inducing myoepithelial cell apoptosis
by
Fuster, Gemma
, Guzman, Flavia
, Chen, Xieng
, Almendro, Vanessa
, Noguera-Castells, Aleix
, Prats de Puig, Miquel
, Carbó, Neus
, Mancino, Mario
, Enreig, Estel
, Bragado, Paloma
, Moragas, Núria
, Gascón, Pedro
, López-Plana, Anna
, Alcaraz, Mireia
, Recalde-Percaz, Leire
, Fernández-Nogueira, Patricia
, Zubeldia-Plazaola, Arantzazu
in
Angiogenesis
/ Animal models
/ Apoptosis
/ Biomedical and Life Sciences
/ Biomedicine
/ Blood levels
/ Breast cancer
/ Cancer Research
/ Carcinoma, Ductal
/ Cell cycle
/ Corticosteroids
/ Corticosterone
/ Cortisol
/ DCIS
/ Development and progression
/ Dosage and administration
/ Drug therapy
/ Epithelial cells
/ Gene expression
/ Glucocorticoids
/ Health aspects
/ Hormones
/ Invasiveness
/ Laminin
/ Myoepithelial cells
/ Oncology
/ Physiological aspects
/ Physiology
/ Research Article
/ Rodents
/ Stress response
/ Surgical Oncology
/ Women
2018
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Glucocorticoids promote transition of ductal carcinoma in situ to invasive ductal carcinoma by inducing myoepithelial cell apoptosis
Journal Article
Glucocorticoids promote transition of ductal carcinoma in situ to invasive ductal carcinoma by inducing myoepithelial cell apoptosis
2018
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Overview
Background
The microenvironment and stress factors like glucocorticoids have a strong influence on breast cancer progression but their role in the first stages of breast cancer and, particularly, in myoepithelial cell regulation remains unclear. Consequently, we investigated the role of glucocorticoids in ductal carcinoma in situ (DCIS) in breast cancer, focusing specially on myoepithelial cells.
Methods
To clarify the role of glucocorticoids at breast cancer onset, we evaluated the effects of cortisol and corticosterone on epithelial and myoepithelial cells using 2D and 3D in vitro and in vivo approaches and human samples.
Results
Glucocorticoids induce a reduction in laminin levels and favour the disruption of the basement membrane by promotion of myoepithelial cell apoptosis in vitro. In an in vivo stress murine model, increased corticosterone levels fostered the transition from DCIS to invasive ductal carcinoma (IDC) via myoepithelial cell apoptosis and disappearance of the basement membrane. RU486 is able to partially block the effects of cortisol in vitro and in vivo. We found that myoepithelial cell apoptosis is more frequent in patients with DCIS+IDC than in patients with DCIS.
Conclusions
Our findings show that physiological stress, through increased glucocorticoid blood levels, promotes the transition from DCIS to IDC, particularly by inducing myoepithelial cell apoptosis. Since this would be a prerequisite for invasive features in patients with DCIS breast cancer, its clinical management could help to prevent breast cancer progression to IDC.
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