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E-GEOD-26566 GSE26566 transcription profiling by array Homo sapiens

Molecular classification of human cholangiocarcinoma

·发布 2012年2月25日 ·更新 2012年6月26日
169
样本数
169
实验数
1
芯片平台
1
相关文献
实验描述

Transcriptomic profiling Background Cholangiocarcinoma accounts for 5-10% of primary hepatic cancers. The etiology is unclear and patients are often diagnosed without risk factors. Resection is the only curative treatment although patients frequently remain undiagnosed until advanced stage of disease. Methods To construct molecular classification of cholangiocarcinoma, we profiled the transcriptomes of 104 freshly-frozen tumors and 59 matched non-cancerous livers obtained from Australia, Europe and the United States. We also performed mutational analysis of KRAS, EGFR and BRAF, and used laser-capture microdissection to obtain independent gene expression profiles for epithelial and stromal compartments in a subset of tumors. The selected target genes were validated by western blotting and immunohistochemistry. Results Transcriptomic profiling classified cholangiocarcinoma into two distinct subclasses defined by survival (P<0.0007) and early recurrence (P<0.001). Applying leave-one-out cross-validation, we optimized the prognostic classifier to 238 genes which were positively enriched in the epithelial tumor compartment. A deregulated HER2 network was associated with the epithelial compartment which also showed a frequent overexpression of Ki67, EGFR, MET and pRPS6 whereas inflammatory cytokines were enriched in tumor stroma specifically in patients with poor prognosis. KRAS mutations were found in 24.6% of patients with poor disease outcome. Conclusion Our study presents new insights into pathogenesis of cholangiocarcinoma and stratification of the patients according to survival and recurrence. Identification of a subgroup of patients among the poor prognostic cohort characterized by KRAS mutations and oncogenic-addiction may provide a novel therapeutic opportunity for this treatment-refractory malignancy. Profiling of individual cholangiocarcinomas and non-cancerous matched surrounding livers using normal bile ducts as reference

参考文献
Genomic and genetic characterization of cholangiocarcinoma identifies therapeutic targets for tyrosine kinase inhibitors.
Andersen JB, Spee B, Blechacz BR, Avital I, Komuta M, Barbour A, Conner EA, Gillen MC, Roskams T, Roberts LR, Factor VM, Thorgeirsson SS
PMID: 22178589
芯片平台
A-MEXP-931
Illumina HumanRef-8 v2 Expression BeadChip(169 例)
样本属性
Organism
Homo sapiens
organism part
Cholangiocarcinoma, Normal intrahepatic bile duct, Surrounding liver
sample id
LEC1, LEC10, LEC100, LEC101, LEC102, LEC103, LEC104, LEC105, LEC106, LEC107, LEC108, LEC109, LEC11, LEC110, LEC111, LEC112, LEC113, LEC114, LEC115, LEC116, LEC117, LEC118, LEC119, LEC12, LEC120, LEC121, LEC122, LEC123, LEC124, LEC125, LEC126, LEC127, LEC128, LEC129, LEC13, LEC130, LEC131, LEC132, LEC133, LEC134, LEC135, LEC136, LEC137, LEC138, LEC139, LEC14, LEC140, LEC141, LEC142, LEC143, LEC144, LEC145, LEC146, LEC147, LEC148, LEC149, LEC15, LEC150, LEC151, LEC152, LEC153, LEC154, LEC155, LEC156, LEC157, LEC158, LEC159, LEC16, LEC160, LEC161, LEC162, LEC163, LEC164, LEC165, LEC166, LEC167, LEC168, LEC169, LEC17, LEC18, LEC19, LEC2, LEC20, LEC21, LEC22, LEC23, LEC24, LEC25, LEC26, LEC27, LEC28, LEC29, LEC3, LEC30, LEC31, LEC32, LEC33, LEC34, LEC35, LEC36, LEC37, LEC38, LEC39, LEC4, LEC40, LEC41, LEC42, LEC43, LEC44, LEC45, LEC46, LEC47, LEC48, LEC49, LEC5, LEC50, LEC51, LEC52, LEC53, LEC54, LEC55, LEC56, LEC57, LEC58, LEC59, LEC6, LEC60, LEC61, LEC62, LEC63, LEC64, LEC65, LEC66, LEC67, LEC68, LEC69, LEC7, LEC70, LEC71, LEC72, LEC73, LEC74, LEC75, LEC76, LEC77, LEC78, LEC79, LEC8, LEC80, LEC81, LEC82, LEC83, LEC84, LEC85, LEC86, LEC87, LEC88, LEC89, LEC9, LEC90, LEC91, LEC92, LEC93, LEC94, LEC95, LEC96, LEC97, LEC98, LEC99
实验信息
登记号
E-GEOD-26566
GEO 编号
GSE26566
实验类型
transcription profiling by array
物种
Homo sapiens
发布日期
2012年2月25日
更新日期
2012年6月26日
提交者
Snorri S Thorgeirsson、 Jesper B Andersen、 Jesper B Andersen
分析服务
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