I Miyashiro1, C Kuo, K Huynh, A Iida, D Morton, A Bilchik, A Giuliano, D S Hoon. 1. Department of Molecular Oncology, John Wayne Cancer Clinic, Division Gastrointestinal Surgery, and Joyce Eisenberg Keefer Breast Center, John Wayne Cancer Institute, Santa Monica, CA 90404, USA.
Abstract
BACKGROUND: The human melanoma-associated antigen family A (MAGE-A) has high specificity and expression in various malignancies, but individual family members are expressed at low frequency in any one particular type of cancer. We therefore developed a method to detect mRNAs from multiple MAGE-A genes in a single reaction. METHODS: Universal MAGE-A (uMAGE-A) primers and probe were designed to reverse-transcribe, amplify, and detect by electrochemiluminescence (ECL) MAGE-A mRNAs on the Origen Analyzer. The assay was performed on total RNA of melanoma (n = 9 cell lines and 24 tumors), breast cancer (n = 7 and 26), and colorectal cancer (CRC; n = 5 and 12). We also evaluated blood from melanoma (n = 50), breast cancer (n = 16), and CRC (n = 21) patients. RESULTS: The uMAGE-A mRNA was detectable in 0.01-1 ng of cell line RNA. The identity of the uMAGE-A cDNA products was confirmed by sequencing and polyacrylamide gel electrophoresis. The uMAGE-A assay increased detection of melanoma, breast cancer, and CRC tumor by 13%, 31%, and 25%, respectively, compared with a MAGE-A1 assay, and by 17%, 19%, and 25%, respectively, compared with a MAGE-A3 assay. The uMAGE-A assay detected circulating tumor cells in the blood of melanoma (24%), breast cancer (25%), and CRC (29%) patients. CONCLUSIONS: The uMAGE-A reverse transcription-PCR/ECL assay provides a practical and sensitive approach for detection of various metastatic cancers in tissues and blood.
BACKGROUND: The humanmelanoma-associated antigen family A (MAGE-A) has high specificity and expression in various malignancies, but individual family members are expressed at low frequency in any one particular type of cancer. We therefore developed a method to detect mRNAs from multiple MAGE-A genes in a single reaction. METHODS: Universal MAGE-A (uMAGE-A) primers and probe were designed to reverse-transcribe, amplify, and detect by electrochemiluminescence (ECL) MAGE-A mRNAs on the Origen Analyzer. The assay was performed on total RNA of melanoma (n = 9 cell lines and 24 tumors), breast cancer (n = 7 and 26), and colorectal cancer (CRC; n = 5 and 12). We also evaluated blood from melanoma (n = 50), breast cancer (n = 16), and CRC (n = 21) patients. RESULTS: The uMAGE-A mRNA was detectable in 0.01-1 ng of cell line RNA. The identity of the uMAGE-A cDNA products was confirmed by sequencing and polyacrylamide gel electrophoresis. The uMAGE-A assay increased detection of melanoma, breast cancer, and CRC tumor by 13%, 31%, and 25%, respectively, compared with a MAGE-A1 assay, and by 17%, 19%, and 25%, respectively, compared with a MAGE-A3 assay. The uMAGE-A assay detected circulating tumor cells in the blood of melanoma (24%), breast cancer (25%), and CRC (29%) patients. CONCLUSIONS: The uMAGE-A reverse transcription-PCR/ECL assay provides a practical and sensitive approach for detection of various metastatic cancers in tissues and blood.
Authors: Kazuo Koyanagi; Steven J O'Day; Rene Gonzalez; Karl Lewis; William A Robinson; Thomas T Amatruda; He-Jing Wang; Robert M Elashoff; Hiroya Takeuchi; Naoyuki Umetani; Dave S B Hoon Journal: J Clin Oncol Date: 2005-11-01 Impact factor: 44.544
Authors: Kazuo Koyanagi; Steven J O'Day; Peter Boasberg; Michael B Atkins; He-Jing Wang; Rene Gonzalez; Karl Lewis; John A Thompson; Clay M Anderson; Jose Lutzky; Thomas T Amatruda; Evan Hersh; Jon Richards; Jeffrey S Weber; Dave S B Hoon Journal: Clin Cancer Res Date: 2010-04-06 Impact factor: 12.531
Authors: Minoru Kitago; Kazuo Koyanagi; Takeshi Nakamura; Yasufumi Goto; Mark Faries; Steven J O'Day; Donald L Morton; Soldano Ferrone; Dave S B Hoon Journal: Clin Chem Date: 2009-02-20 Impact factor: 8.327
Authors: Piotr Rutkowski; Zbigniew I Nowecki; Alexander C J van Akkooi; Jadwiga Kulik; Michej Wanda; Janusz A Siedlecki; Alexander M M Eggermont; Wlodzimierz Ruka Journal: Ann Surg Oncol Date: 2010-07-07 Impact factor: 5.344
Authors: Sojun Hoshimoto; Tatsushi Shingai; Donald L Morton; Christine Kuo; Mark B Faries; Kelly Chong; David Elashoff; He-Jing Wang; Robert M Elashoff; Dave S B Hoon Journal: J Clin Oncol Date: 2012-09-24 Impact factor: 44.544
Authors: Kazuo Koyanagi; Steven J O'Day; Rene Gonzalez; Karl Lewis; William A Robinson; Thomas T Amatruda; Christine Kuo; He-Jing Wang; Robert Milford; Donald L Morton; Dave S B Hoon Journal: Clin Cancer Res Date: 2006-02-15 Impact factor: 12.531
Authors: Hiroya Takeuchi; Donald L Morton; Christine Kuo; Roderick R Turner; David Elashoff; Robert Elashoff; Bret Taback; Akihide Fujimoto; Dave S B Hoon Journal: J Clin Oncol Date: 2004-07-01 Impact factor: 44.544