0000000001119355

AUTHOR

C. Messa

showing 3 related works from this author

Gene Expression Profiling of Epithelial–Mesenchymal Transition in Primary Breast Cancer Cell Culture

2014

Background/Aim: Epithelial–mesenchymal transition (EMT) is a process co-opted by cancer cells to invade and form metastases. In the present study we analyzed gene expression profiles of primary breast cancer cells in culture in order to highlight genes related to EMT. Materials and Methods: Microarray expression analysis of primary cells isolated from a specimen of a patient with an infiltrating ductal carcinoma of the breast was performed. Real-Time Quantitative Reverse Transcription PCR (qRT-PCR) analyses validated microarray gene expression trends. Results: Thirty-six candidate genes were selected and used to generate a molecular network displaying the tight relationship among them. The …

Breast cancer primary cell culture epithelial–mesenchymal transition EMT cDNA microarray
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Metabolic Signature of Breast Cancer Patients Negative and Positive to 18F-FDG PET Srceening.

2011

breast cancer genomic proteomic PET
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Caveolin-1, breast cancer and ionizing radiation

2015

Breast cancer (BC) recovery has increased in recent years thanks to efforts of Omics-based research in this field. However, despite the important results obtained, BC remains a complex multifactorial pathology that is difficult to treat appropriately. Caveolin-1 (CAV1), the basic constituent protein of specialized plasma membrane invaginations called caveolae, is emerging as a potential therapeutic biomarker in BC. This factor may modulate BC response to chemotherapy and radiation therapy. In addition, recent reports describe the key role of CAV1 during cell response to oxidative stress. The aim of the present review was to describe the biological roles of CAV1 in BC considering its contras…

RadiotherapyAnimalCAV1; biomarker; breast cancer; ionizing radiation; review; Animals; Biomarkers Tumor; Breast Neoplasms; Caveolin 1; Cell Transformation Neoplastic; Female; Gene Expression Regulation Neoplastic; Humans; Molecular Targeted Therapy; Radiotherapy; Receptor Epidermal Growth Factor; Radiation IonizingCaveolin 1reviewBreast NeoplasmsErbB ReceptorsGene Expression Regulation Neoplasticbreast cancerCell Transformation NeoplasticCAV1Radiation IonizingBiomarkers TumorAnimalsHumansbiomarkerFemaleMolecular Targeted TherapyReceptor Epidermal Growth Factorionizing radiationBreast NeoplasmHuman
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