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Status |
Public on Oct 01, 2009 |
Title |
Gene expression differences between adenocarcinoma and squamous cell carcinoma in human NSCLC |
Organism |
Homo sapiens |
Experiment type |
Expression profiling by array
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Summary |
Non-small cell lung cancer (NSCLC) can be classified into the major subtypes adenocarcinoma (AC) and squamous cell carcinoma (SCC) subtypes. Although explicit molecular, histological and clinical characteristics have been reported for both subtypes, no specific therapy exists so far. However, the characterization of suitable molecular targets holds great promises to develop novel therapies in NSCLC. In the present study, global gene expression profiling of 58 human high grade NSCLC specimens revealed large transcriptomic differences between AC and SCC subtypes: More than 1.700 genes were found to be differentially expressed. Keywords: disease subtype analysis
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Overall design |
The NSCLC patient collective was composed of the histological subtype adenocarcinoma (n=40) and squamous cell carcinoma (n=18). We subjected gene expression profiles of 40 AC and 18 SCC samples into further analysis. Unsupervised hierarchical clustering of all 58 NSCLC tumors using the 500 most variably expressed transcripts revealed two different clusters, which were strongly associated with the histological subtypes AC and SCC of NSCLC. Our result indicated that the major impact on global transcriptional changes was due to the NSCLC histology.
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Contributor(s) |
Kuner R, Sueltmann H, Ruschhaupt M, Buness A, Poustka A, Hoffmann H, Muley T, Meister M, Schnabel P, Warth A |
Citation(s) |
18486272 |
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Submission date |
Jan 23, 2008 |
Last update date |
Mar 25, 2019 |
Contact name |
Ruprecht Kuner |
Organization name |
German Cancer Research Center and National Center of Tumor Diseases
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Department |
Molecular Genetics
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Lab |
Unit Cancer Genome Research
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Street address |
Im Neuenheimer Feld 460
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City |
Heidelberg |
ZIP/Postal code |
69120 |
Country |
Germany |
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Platforms (1) |
GPL570 |
[HG-U133_Plus_2] Affymetrix Human Genome U133 Plus 2.0 Array |
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Samples (58)
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Relations |
BioProject |
PRJNA108429 |