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PMID: 25127237 已发表 · epublish 英语

Reporting tumor molecular heterogeneity in histopathological diagnosis.

PloS one ·第 9 卷 ·第 8 期 ·2015-12-15

Mafficini Andrea, Amato Eliana, Fassan Matteo, Simbolo Michele, Antonello Davide, Vicentini Caterina, Scardoni Maria, Bersani Samantha, Gottardi Marisa, Rusev Borislav, Malpeli Giorgio, Corbo Vincenzo, Barbi Stefano, Sikora Katarzyna O, Lawlor Rita T, Tortora Giampaolo, Scarpa Aldo

摘要

Detection of molecular tumor heterogeneity has become of paramount importance with the advent of targeted therapies. Analysis for detection should be comprehensive, timely and based on routinely available tumor samples.,To evaluate the diagnostic potential of targeted multigene next-generation sequencing (TM-NGS) in characterizing gastrointestinal cancer molecular heterogeneity.,35 gastrointestinal tract tumors, five of each intestinal type gastric carcinomas, pancreatic ductal adenocarcinomas, pancreatic intraductal papillary mucinous neoplasms, ampulla of Vater carcinomas, hepatocellular carcinomas, cholangiocarcinomas, pancreatic solid pseudopapillary tumors were assessed for mutations in 46 cancer-associated genes, using Ion Torrent semiconductor-based TM-NGS. One ampulla of Vater carcinoma cell line and one hepatic carcinosarcoma served to assess assay sensitivity. TP53, PIK3CA, KRAS, and BRAF mutations were validated by conventional Sanger sequencing.,TM-NGS yielded overlapping results on matched fresh-frozen and formalin-fixed paraffin-embedded (FFPE) tissues, with a mutation detection limit of 1% for fresh-frozen high molecular weight DNA and 2% for FFPE partially degraded DNA. At least one somatic mutation was observed in all tumors tested; multiple alterations were detected in 20/35 (57%) tumors. Seven cancers displayed significant differences in allelic frequencies for distinct mutations, indicating the presence of intratumor molecular heterogeneity; this was confirmed on selected samples by immunohistochemistry of p53 and Smad4, showing concordance with mutational analysis.,TM-NGS is able to detect and quantitate multiple gene alterations from limited amounts of DNA, moving one step closer to a next-generation histopathologic diagnosis that integrates morphologic, immunophenotypic, and multigene mutational analysis on routinely processed tissues, essential for personalized cancer therapy.

文献信息
期刊
PloS one
期刊简称
PLoS One
发表日期
2015-12-15
收录日期
2014-08-16
更新日期
2016-11-25
语言
英语
国家/地区
United States
NLM ID
101285081
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