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Gene expression profiles of breast cancer metastasis according to organ site

In advanced breast cancer, biomarker identification and patient selection using a metastatic tumor biopsy is becoming more necessary. However, the biology of metastasis according to the organ site is largely unknown. Here, we evaluated the expression of 771 genes in 184 metastatic samples across 11...

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Autores principales: Brasó‐Maristany, Fara, Paré, Laia, Chic, Nuria, Martínez‐Sáez, Olga, Pascual, Tomás, Mallafré‐Larrosa, Meritxell, Schettini, Francesco, González‐Farré, Blanca, Sanfeliu, Esther, Martínez, Débora, Galván, Patricia, Barnadas, Esther, Salinas, Belinda, Tolosa, Pablo, Ciruelos, Eva, Carcelero, Esther, Guillén, Cecilia, Adamo, Barbara, Moreno, Reinaldo, Vidal, Maria, Muñoz, Montserrat, Prat, Aleix
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8732356/
https://www.ncbi.nlm.nih.gov/pubmed/34051058
http://dx.doi.org/10.1002/1878-0261.13021
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author Brasó‐Maristany, Fara
Paré, Laia
Chic, Nuria
Martínez‐Sáez, Olga
Pascual, Tomás
Mallafré‐Larrosa, Meritxell
Schettini, Francesco
González‐Farré, Blanca
Sanfeliu, Esther
Martínez, Débora
Galván, Patricia
Barnadas, Esther
Salinas, Belinda
Tolosa, Pablo
Ciruelos, Eva
Carcelero, Esther
Guillén, Cecilia
Adamo, Barbara
Moreno, Reinaldo
Vidal, Maria
Muñoz, Montserrat
Prat, Aleix
author_facet Brasó‐Maristany, Fara
Paré, Laia
Chic, Nuria
Martínez‐Sáez, Olga
Pascual, Tomás
Mallafré‐Larrosa, Meritxell
Schettini, Francesco
González‐Farré, Blanca
Sanfeliu, Esther
Martínez, Débora
Galván, Patricia
Barnadas, Esther
Salinas, Belinda
Tolosa, Pablo
Ciruelos, Eva
Carcelero, Esther
Guillén, Cecilia
Adamo, Barbara
Moreno, Reinaldo
Vidal, Maria
Muñoz, Montserrat
Prat, Aleix
author_sort Brasó‐Maristany, Fara
collection PubMed
description In advanced breast cancer, biomarker identification and patient selection using a metastatic tumor biopsy is becoming more necessary. However, the biology of metastasis according to the organ site is largely unknown. Here, we evaluated the expression of 771 genes in 184 metastatic samples across 11 organs, including liver, lung, brain, and bone, and made the following observations. First, all PAM50 molecular intrinsic subtypes were represented across organs and within immunohistochemistry‐based groups. Second, HER2‐low disease was identified across all organ sites, including bone, and HER2 expression significantly correlated with ERBB2 expression. Third, the majority of expression variation was explained by intrinsic subtype and not organ of metastasis. Fourth, subtypes and individual subtype‐related genes/signatures were significantly associated with overall survival. Fifth, we identified 74 genes whose expression was organ‐specific and subtype‐independent. Finally, immune profiles were found more expressed in lung compared to brain or liver metastasis. Our results suggest that relevant tumor biology can be captured in metastatic tissues across a variety of organ sites; however, unique biological features according to organ site were also identified and future studies should explore their implications in diagnostic and therapeutic interventions.
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spelling pubmed-87323562022-01-11 Gene expression profiles of breast cancer metastasis according to organ site Brasó‐Maristany, Fara Paré, Laia Chic, Nuria Martínez‐Sáez, Olga Pascual, Tomás Mallafré‐Larrosa, Meritxell Schettini, Francesco González‐Farré, Blanca Sanfeliu, Esther Martínez, Débora Galván, Patricia Barnadas, Esther Salinas, Belinda Tolosa, Pablo Ciruelos, Eva Carcelero, Esther Guillén, Cecilia Adamo, Barbara Moreno, Reinaldo Vidal, Maria Muñoz, Montserrat Prat, Aleix Mol Oncol Research Articles In advanced breast cancer, biomarker identification and patient selection using a metastatic tumor biopsy is becoming more necessary. However, the biology of metastasis according to the organ site is largely unknown. Here, we evaluated the expression of 771 genes in 184 metastatic samples across 11 organs, including liver, lung, brain, and bone, and made the following observations. First, all PAM50 molecular intrinsic subtypes were represented across organs and within immunohistochemistry‐based groups. Second, HER2‐low disease was identified across all organ sites, including bone, and HER2 expression significantly correlated with ERBB2 expression. Third, the majority of expression variation was explained by intrinsic subtype and not organ of metastasis. Fourth, subtypes and individual subtype‐related genes/signatures were significantly associated with overall survival. Fifth, we identified 74 genes whose expression was organ‐specific and subtype‐independent. Finally, immune profiles were found more expressed in lung compared to brain or liver metastasis. Our results suggest that relevant tumor biology can be captured in metastatic tissues across a variety of organ sites; however, unique biological features according to organ site were also identified and future studies should explore their implications in diagnostic and therapeutic interventions. John Wiley and Sons Inc. 2021-06-23 2022-01 /pmc/articles/PMC8732356/ /pubmed/34051058 http://dx.doi.org/10.1002/1878-0261.13021 Text en © 2021 The Authors. Molecular Oncology published by John Wiley & Sons Ltd on behalf of Federation of European Biochemical Societies https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Brasó‐Maristany, Fara
Paré, Laia
Chic, Nuria
Martínez‐Sáez, Olga
Pascual, Tomás
Mallafré‐Larrosa, Meritxell
Schettini, Francesco
González‐Farré, Blanca
Sanfeliu, Esther
Martínez, Débora
Galván, Patricia
Barnadas, Esther
Salinas, Belinda
Tolosa, Pablo
Ciruelos, Eva
Carcelero, Esther
Guillén, Cecilia
Adamo, Barbara
Moreno, Reinaldo
Vidal, Maria
Muñoz, Montserrat
Prat, Aleix
Gene expression profiles of breast cancer metastasis according to organ site
title Gene expression profiles of breast cancer metastasis according to organ site
title_full Gene expression profiles of breast cancer metastasis according to organ site
title_fullStr Gene expression profiles of breast cancer metastasis according to organ site
title_full_unstemmed Gene expression profiles of breast cancer metastasis according to organ site
title_short Gene expression profiles of breast cancer metastasis according to organ site
title_sort gene expression profiles of breast cancer metastasis according to organ site
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8732356/
https://www.ncbi.nlm.nih.gov/pubmed/34051058
http://dx.doi.org/10.1002/1878-0261.13021
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