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Analytical Validation of a Highly Quantitative, Sensitive, Accurate, and Reproducible Assay (HERmark(®)) for the Measurement of HER2 Total Protein and HER2 Homodimers in FFPE Breast Cancer Tumor Specimens

We report here the results of the analytical validation of assays that measure HER2 total protein (H2T) and HER2 homodimer (H2D) expression in Formalin Fixed Paraffin Embedded (FFPE) breast cancer tumors as well as cell line controls. The assays are based on the VeraTag technology platform and are c...

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Autores principales: Larson, Jeffrey S., Goodman, Laurie J., Tan, Yuping, Defazio-Eli, Lisa, Paquet, Agnes C., Cook, Jennifer W., Rivera, Amber, Frankson, Kristi, Bose, Jolly, Chen, Lili, Cheung, Judy, Shi, Yining, Irwin, Sarah, Kiss, Linda D. B., Huang, Weidong, Utter, Shannon, Sherwood, Thomas, Bates, Michael, Weidler, Jodi, Parry, Gordon, Winslow, John, Petropoulos, Christos J., Whitcomb, Jeannette M.
Formato: Texto
Lenguaje:English
Publicado: SAGE-Hindawi Access to Research 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2990097/
https://www.ncbi.nlm.nih.gov/pubmed/21151530
http://dx.doi.org/10.4061/2010/814176
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author Larson, Jeffrey S.
Goodman, Laurie J.
Tan, Yuping
Defazio-Eli, Lisa
Paquet, Agnes C.
Cook, Jennifer W.
Rivera, Amber
Frankson, Kristi
Bose, Jolly
Chen, Lili
Cheung, Judy
Shi, Yining
Irwin, Sarah
Kiss, Linda D. B.
Huang, Weidong
Utter, Shannon
Sherwood, Thomas
Bates, Michael
Weidler, Jodi
Parry, Gordon
Winslow, John
Petropoulos, Christos J.
Whitcomb, Jeannette M.
author_facet Larson, Jeffrey S.
Goodman, Laurie J.
Tan, Yuping
Defazio-Eli, Lisa
Paquet, Agnes C.
Cook, Jennifer W.
Rivera, Amber
Frankson, Kristi
Bose, Jolly
Chen, Lili
Cheung, Judy
Shi, Yining
Irwin, Sarah
Kiss, Linda D. B.
Huang, Weidong
Utter, Shannon
Sherwood, Thomas
Bates, Michael
Weidler, Jodi
Parry, Gordon
Winslow, John
Petropoulos, Christos J.
Whitcomb, Jeannette M.
author_sort Larson, Jeffrey S.
collection PubMed
description We report here the results of the analytical validation of assays that measure HER2 total protein (H2T) and HER2 homodimer (H2D) expression in Formalin Fixed Paraffin Embedded (FFPE) breast cancer tumors as well as cell line controls. The assays are based on the VeraTag technology platform and are commercially available through a central CAP-accredited clinical reference laboratory. The accuracy of H2T measurements spans a broad dynamic range (2-3 logs) as evaluated by comparison with cross-validating technologies. The measurement of H2T expression demonstrates a sensitivity that is approximately 7–10 times greater than conventional immunohistochemistry (IHC) (HercepTest). The HERmark assay is a quantitative assay that sensitively and reproducibly measures continuous H2T and H2D protein expression levels and therefore may have the potential to stratify patients more accurately with respect to response to HER2-targeted therapies than current methods which rely on semiquantitative protein measurements (IHC) or on indirect assessments of gene amplification (FISH).
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spelling pubmed-29900972010-12-13 Analytical Validation of a Highly Quantitative, Sensitive, Accurate, and Reproducible Assay (HERmark(®)) for the Measurement of HER2 Total Protein and HER2 Homodimers in FFPE Breast Cancer Tumor Specimens Larson, Jeffrey S. Goodman, Laurie J. Tan, Yuping Defazio-Eli, Lisa Paquet, Agnes C. Cook, Jennifer W. Rivera, Amber Frankson, Kristi Bose, Jolly Chen, Lili Cheung, Judy Shi, Yining Irwin, Sarah Kiss, Linda D. B. Huang, Weidong Utter, Shannon Sherwood, Thomas Bates, Michael Weidler, Jodi Parry, Gordon Winslow, John Petropoulos, Christos J. Whitcomb, Jeannette M. Patholog Res Int Research Article We report here the results of the analytical validation of assays that measure HER2 total protein (H2T) and HER2 homodimer (H2D) expression in Formalin Fixed Paraffin Embedded (FFPE) breast cancer tumors as well as cell line controls. The assays are based on the VeraTag technology platform and are commercially available through a central CAP-accredited clinical reference laboratory. The accuracy of H2T measurements spans a broad dynamic range (2-3 logs) as evaluated by comparison with cross-validating technologies. The measurement of H2T expression demonstrates a sensitivity that is approximately 7–10 times greater than conventional immunohistochemistry (IHC) (HercepTest). The HERmark assay is a quantitative assay that sensitively and reproducibly measures continuous H2T and H2D protein expression levels and therefore may have the potential to stratify patients more accurately with respect to response to HER2-targeted therapies than current methods which rely on semiquantitative protein measurements (IHC) or on indirect assessments of gene amplification (FISH). SAGE-Hindawi Access to Research 2010-06-28 /pmc/articles/PMC2990097/ /pubmed/21151530 http://dx.doi.org/10.4061/2010/814176 Text en Copyright © 2010 Jeffrey S. Larson et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Larson, Jeffrey S.
Goodman, Laurie J.
Tan, Yuping
Defazio-Eli, Lisa
Paquet, Agnes C.
Cook, Jennifer W.
Rivera, Amber
Frankson, Kristi
Bose, Jolly
Chen, Lili
Cheung, Judy
Shi, Yining
Irwin, Sarah
Kiss, Linda D. B.
Huang, Weidong
Utter, Shannon
Sherwood, Thomas
Bates, Michael
Weidler, Jodi
Parry, Gordon
Winslow, John
Petropoulos, Christos J.
Whitcomb, Jeannette M.
Analytical Validation of a Highly Quantitative, Sensitive, Accurate, and Reproducible Assay (HERmark(®)) for the Measurement of HER2 Total Protein and HER2 Homodimers in FFPE Breast Cancer Tumor Specimens
title Analytical Validation of a Highly Quantitative, Sensitive, Accurate, and Reproducible Assay (HERmark(®)) for the Measurement of HER2 Total Protein and HER2 Homodimers in FFPE Breast Cancer Tumor Specimens
title_full Analytical Validation of a Highly Quantitative, Sensitive, Accurate, and Reproducible Assay (HERmark(®)) for the Measurement of HER2 Total Protein and HER2 Homodimers in FFPE Breast Cancer Tumor Specimens
title_fullStr Analytical Validation of a Highly Quantitative, Sensitive, Accurate, and Reproducible Assay (HERmark(®)) for the Measurement of HER2 Total Protein and HER2 Homodimers in FFPE Breast Cancer Tumor Specimens
title_full_unstemmed Analytical Validation of a Highly Quantitative, Sensitive, Accurate, and Reproducible Assay (HERmark(®)) for the Measurement of HER2 Total Protein and HER2 Homodimers in FFPE Breast Cancer Tumor Specimens
title_short Analytical Validation of a Highly Quantitative, Sensitive, Accurate, and Reproducible Assay (HERmark(®)) for the Measurement of HER2 Total Protein and HER2 Homodimers in FFPE Breast Cancer Tumor Specimens
title_sort analytical validation of a highly quantitative, sensitive, accurate, and reproducible assay (hermark(®)) for the measurement of her2 total protein and her2 homodimers in ffpe breast cancer tumor specimens
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2990097/
https://www.ncbi.nlm.nih.gov/pubmed/21151530
http://dx.doi.org/10.4061/2010/814176
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