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Immunohistochemical expression of mismatch repair genes: A screening tool for predicting mutator phenotype in liver fluke infection-associated intrahepatic cholangiocarcinoma
引用本文:Liengswangwong U,Karalak A,Morishita Y,Noguchi M,Khuhaprema T,Srivatanakul P,Miwa M. Immunohistochemical expression of mismatch repair genes: A screening tool for predicting mutator phenotype in liver fluke infection-associated intrahepatic cholangiocarcinoma[J]. World journal of gastroenterology : WJG, 2006, 12(23): 3740-3745. DOI: 10.3748/wjg.v12.i23.3740
作者姓名:Liengswangwong U  Karalak A  Morishita Y  Noguchi M  Khuhaprema T  Srivatanakul P  Miwa M
作者单位:Institute of Health Research Chulalongkorn University Pathumwan,Bangkok and National Center for Genetic Engineering and Biotechnology,Thailand Science Park,Pathumthani,Thailand,National Cancer Institute,Bangkok,Thailand,Department of Pathology,Institute of Clinical Medicine,University of Tsukuba,Ibaraki,Japan,Department of Pathology,Institute of Clinical Medicine,University of Tsukuba,Ibaraki,Japan,National Cancer Institute Bangkok,Thailand,National Cancer Institute Bangkok,Thailand,Department of Biochemistry and Molecular Oncology,Institute of Basic Medical Sciences,University of Tsukuba,Ibaraki and Faculty of Bioscience,Nagahama Institute of Bio-Science and Technology,Nagahama,Shiga,Japan
基金项目:Supported by Ministry of Education, Culture, Sports,Science and Technology of Japan
摘    要:AIM: To clarify possible contributions of DNA mismatch repair (MMR) system in carcinogenesis of liver fluke infection-associated intrahepatic cholangiocarcinoma (ICC) by using immunohistochemical assay. METHODS: A total of 29 ICC samples, which had been assessed for genomic instability by a PCR-based method, were used for study. They were examined immunohistochemically to demonstrate protein expression of two MMR genes, hMSH2 and hMLH1. Results obtained were compared with their mutator phenotype assessed previously. RESULTS: Either hMSH2 or hMLH1 protein was obviously expressed in 28 of 29 (96.6%) ICC samples. Positive nuclear localization of hMSH2 or hMLH1 protein was observed in 86.2% (25/29) or 93.1% (27/29) ICC cases, respectively, while their negative nuclear reactivity was only detected in 13.8% (4/29) or 6.9% (2/29) ICC cases analyzed, respectively. CONCLUSION: Our study, probably for the first time, showed through immunohistochemical detection of hMSH2 and hMLH1 gene that DNA MMR system does not play a prominent role in liver fluke infection-associated cholangiocarcinogenesis. These results confirm previous findings on mutational status of these genes assessed through a PCR-based method. The immunohistochemical analysis has proven to be an effective and sensitive approach for screening MMR deficiency regardless of somatic inactivation or promoter hypermethylation of hMSH2 and/or hMLH1 gene. Furthermore, immunohistochemistry is more advantageous compared to mutator phenotyping assay in terms of simplicity, less time consuming and cost effectiveness for screening possible involvements of target MMR genes in tumorigenesis.

关 键 词:免疫组织化学  基因表达  基因表型  肝吸虫  肝内胆管癌
收稿时间:2005-12-23

Immunohistochemical expression of mismatch repair genes: a screening tool for predicting mutator phenotype in liver fluke infection-associated intrahepatic cholangiocarcinoma
Liengswangwong Upama,Karalak Anant,Morishita Yukio,Noguchi Masayuki,Khuhaprema Thiravud,Srivatanakul Petcharin,Miwa Masanao. Immunohistochemical expression of mismatch repair genes: a screening tool for predicting mutator phenotype in liver fluke infection-associated intrahepatic cholangiocarcinoma[J]. World journal of gastroenterology : WJG, 2006, 12(23): 3740-3745. DOI: 10.3748/wjg.v12.i23.3740
Authors:Liengswangwong Upama  Karalak Anant  Morishita Yukio  Noguchi Masayuki  Khuhaprema Thiravud  Srivatanakul Petcharin  Miwa Masanao
Affiliation:1. Institute of Health Research,Chulalongkorn University, Pathumwan, Bangkok and National Center for Genetic Engineering and Biotechnology, Thailand Science Park, Pathumthani, Thailand
2. National Cancer Institute, Bangkok, Thailand
3. Department of Pathology,Institute of Clinical Medicine, University of Tsukuba, Ibaraki,Japan
4. Department of Biochemistry and Molecular Oncology, Institute of Basic Medical Sciences, University of Tsukuba, Ibaraki and Faculty of Bioscience, Nagahama Institute of Bio-Science and Technology, Nagahama, Shiga, Japan
Abstract:AIM: To clarify possible contributions of DNA mismatch repair (MMR) system in carcinogenesis of liver fluke infection-associated intrahepatic cholangiocarcinoma (ICC) by using immunohistochemical assay. METHODS: A total of 29 ICC samples, which had been assessed for genomic instability by a PCR-based method, were used for study. They were examined immunohistochemically to demonstrate protein expression of two MMR genes, hMSH2 and hMLH1. Results obtained were compared with their mutator phenotype assessed previously. RESULTS: Either hMSH2 or hMLH1 protein was obviously expressed in 28 of 29 (96.6%) ICC samples. Positive nuclear localization of hMSH2 or hMLH1 protein was observed in 86.2% (25/29) or 93.1% (27/29) ICC cases, respectively, while their negative nuclear reactivity was only detected in 13.8% (4/29) or 6.9% (2/29) ICC cases analyzed, respectively. CONCLUSION: Our study, probably for the first time, showed through immunohistochemical detection of hMSH2 and hMLH1 gene that DNA MMR system does not play a prominent role in liver fluke infection-associated cholangiocarcinogenesis. These results confirm previous findings on mutational status of these genes assessed through a PCR-based method. The immunohistochemical analysis has proven to be an effective and sensitive approach for screening MMR deficiency regardless of somatic inactivation or promoter hypermethylation of hMSH2 and/or hMLH1 gene. Furthermore, immunohistochemistry is more advantageous compared to mutator phenotyping assay in terms of simplicity, less time consuming and cost effectiveness for screening possible involvements of target MMR genes in tumorigenesis.
Keywords:Liver fluke infection  Cholangiocarcinoma  Mismatch repair  hMSH2  hMLH1  Immunohistochemistry  MSI  Mutator phenotype
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