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Automated Quantification of Extranuclear ERα Using Phosphor-Integrated Dots for Predicting Endocrine Therapy Resistance in HR(+)/HER2(−) Breast Cancer

In addition to genomic signaling, Estrogen receptor alpha (ERα) is associated with cell proliferation and survival through extranuclear signaling contributing to endocrine therapy (ET) resistance. However, the relationship between extranuclear ERα and ET resistance has not been extensively studied....

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Autores principales: Guo, Zhaorong, Tada, Hiroshi, Kitamura, Narufumi, Hamada, Yoh, Miyashita, Minoru, Harada-Shoji, Narumi, Sato, Akiko, Hamanaka, Yohei, Tsuboi, Kouki, Harada, Nobuhisa, Takano-Kasuya, Mayumi, Okada, Hisatake, Nakano, Yasushi, Ohuchi, Noriaki, Hayashi, Shin-ichi, Ishida, Takanori, Gonda, Kohsuke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6520781/
https://www.ncbi.nlm.nih.gov/pubmed/31013810
http://dx.doi.org/10.3390/cancers11040526
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author Guo, Zhaorong
Tada, Hiroshi
Kitamura, Narufumi
Hamada, Yoh
Miyashita, Minoru
Harada-Shoji, Narumi
Sato, Akiko
Hamanaka, Yohei
Tsuboi, Kouki
Harada, Nobuhisa
Takano-Kasuya, Mayumi
Okada, Hisatake
Nakano, Yasushi
Ohuchi, Noriaki
Hayashi, Shin-ichi
Ishida, Takanori
Gonda, Kohsuke
author_facet Guo, Zhaorong
Tada, Hiroshi
Kitamura, Narufumi
Hamada, Yoh
Miyashita, Minoru
Harada-Shoji, Narumi
Sato, Akiko
Hamanaka, Yohei
Tsuboi, Kouki
Harada, Nobuhisa
Takano-Kasuya, Mayumi
Okada, Hisatake
Nakano, Yasushi
Ohuchi, Noriaki
Hayashi, Shin-ichi
Ishida, Takanori
Gonda, Kohsuke
author_sort Guo, Zhaorong
collection PubMed
description In addition to genomic signaling, Estrogen receptor alpha (ERα) is associated with cell proliferation and survival through extranuclear signaling contributing to endocrine therapy (ET) resistance. However, the relationship between extranuclear ERα and ET resistance has not been extensively studied. We sought to measure extranuclear ERα expression by immunohistochemistry using phosphor-integrated dots (IHC-PIDs) and to assess its predictive value for ET resistance. After quantitative detection of ERα by IHC-PIDs in vitro, we developed “the nearest-neighbor method” to calculate the extranuclear ERα. Furthermore, tissue sections from 65 patients with HR+/HER2- BC were examined by IHC-PIDs, and the total ERα, nuclear ERα, extranuclear ERα PIDs score, and ratio of extranuclear-to-nuclear ERα (ENR) were measured using the novel method. We demonstrate that quantification of ERα using IHC-PIDs exhibited strong correlations to real-time qRT-PCR (r(2) = 0.94) and flow cytometry (r(2) = 0.98). High ERα ENR was significantly associated with poor overall survival (p = 0.048) and disease-free survival (DFS) (p = 0.007). Multivariate analysis revealed that the ERα ENR was an independent prognostic factor for DFS [hazard ratio, 3.8; 95% CI, 1.4–11.8; p = 0.006]. Our automated measurement has high accuracy to localize and assess extranuclear ERα. A high ERα ENR in HR(+)/HER2(−) BC indicates decreased likelihood of benefiting from ET.
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spelling pubmed-65207812019-05-31 Automated Quantification of Extranuclear ERα Using Phosphor-Integrated Dots for Predicting Endocrine Therapy Resistance in HR(+)/HER2(−) Breast Cancer Guo, Zhaorong Tada, Hiroshi Kitamura, Narufumi Hamada, Yoh Miyashita, Minoru Harada-Shoji, Narumi Sato, Akiko Hamanaka, Yohei Tsuboi, Kouki Harada, Nobuhisa Takano-Kasuya, Mayumi Okada, Hisatake Nakano, Yasushi Ohuchi, Noriaki Hayashi, Shin-ichi Ishida, Takanori Gonda, Kohsuke Cancers (Basel) Article In addition to genomic signaling, Estrogen receptor alpha (ERα) is associated with cell proliferation and survival through extranuclear signaling contributing to endocrine therapy (ET) resistance. However, the relationship between extranuclear ERα and ET resistance has not been extensively studied. We sought to measure extranuclear ERα expression by immunohistochemistry using phosphor-integrated dots (IHC-PIDs) and to assess its predictive value for ET resistance. After quantitative detection of ERα by IHC-PIDs in vitro, we developed “the nearest-neighbor method” to calculate the extranuclear ERα. Furthermore, tissue sections from 65 patients with HR+/HER2- BC were examined by IHC-PIDs, and the total ERα, nuclear ERα, extranuclear ERα PIDs score, and ratio of extranuclear-to-nuclear ERα (ENR) were measured using the novel method. We demonstrate that quantification of ERα using IHC-PIDs exhibited strong correlations to real-time qRT-PCR (r(2) = 0.94) and flow cytometry (r(2) = 0.98). High ERα ENR was significantly associated with poor overall survival (p = 0.048) and disease-free survival (DFS) (p = 0.007). Multivariate analysis revealed that the ERα ENR was an independent prognostic factor for DFS [hazard ratio, 3.8; 95% CI, 1.4–11.8; p = 0.006]. Our automated measurement has high accuracy to localize and assess extranuclear ERα. A high ERα ENR in HR(+)/HER2(−) BC indicates decreased likelihood of benefiting from ET. MDPI 2019-04-12 /pmc/articles/PMC6520781/ /pubmed/31013810 http://dx.doi.org/10.3390/cancers11040526 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Guo, Zhaorong
Tada, Hiroshi
Kitamura, Narufumi
Hamada, Yoh
Miyashita, Minoru
Harada-Shoji, Narumi
Sato, Akiko
Hamanaka, Yohei
Tsuboi, Kouki
Harada, Nobuhisa
Takano-Kasuya, Mayumi
Okada, Hisatake
Nakano, Yasushi
Ohuchi, Noriaki
Hayashi, Shin-ichi
Ishida, Takanori
Gonda, Kohsuke
Automated Quantification of Extranuclear ERα Using Phosphor-Integrated Dots for Predicting Endocrine Therapy Resistance in HR(+)/HER2(−) Breast Cancer
title Automated Quantification of Extranuclear ERα Using Phosphor-Integrated Dots for Predicting Endocrine Therapy Resistance in HR(+)/HER2(−) Breast Cancer
title_full Automated Quantification of Extranuclear ERα Using Phosphor-Integrated Dots for Predicting Endocrine Therapy Resistance in HR(+)/HER2(−) Breast Cancer
title_fullStr Automated Quantification of Extranuclear ERα Using Phosphor-Integrated Dots for Predicting Endocrine Therapy Resistance in HR(+)/HER2(−) Breast Cancer
title_full_unstemmed Automated Quantification of Extranuclear ERα Using Phosphor-Integrated Dots for Predicting Endocrine Therapy Resistance in HR(+)/HER2(−) Breast Cancer
title_short Automated Quantification of Extranuclear ERα Using Phosphor-Integrated Dots for Predicting Endocrine Therapy Resistance in HR(+)/HER2(−) Breast Cancer
title_sort automated quantification of extranuclear erα using phosphor-integrated dots for predicting endocrine therapy resistance in hr(+)/her2(−) breast cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6520781/
https://www.ncbi.nlm.nih.gov/pubmed/31013810
http://dx.doi.org/10.3390/cancers11040526
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