Gene expression profiling in bladder cancer identifies potential therapeutic targets.

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ICR Authors

Authors

Hussain, SA
Palmer, DH
Syn, W-K
Sacco, JJ
Greensmith, RMD
Elmetwali, T
Aachi, V
Lloyd, BH
Jithesh, PV
Arrand, J
Barton, D
Ansari, J
Sibson, DR
James, ND

Document Type

Journal Article

Date

2017-04-01

Date Accepted

Abstract

Despite advances in management, bladder cancer remains a major cause of cancer related complications. Characterisation of gene expression patterns in bladder cancer allows the identification of pathways involved in its pathogenesis, and may stimulate the development of novel therapies targeting these pathways. Between 2004 and 2005, cystoscopic bladder biopsies were obtained from 19 patients and 11 controls. These were subjected to whole transcript-based microarray analysis. Unsupervised hierarchical clustering was used to identify samples with similar expression profiles. Hypergeometric analysis was used to identify canonical pathways and curated networks having statistically significant enrichment of differentially expressed genes. Osteopontin (OPN) expression was validated by immunohistochemistry. Hierarchical clustering defined signatures, which differentiated between cancer and healthy tissue, muscle-invasive or non-muscle invasive cancer and healthy tissue, grade 1 and grade 3. Pathways associated with cell cycle and proliferation were markedly upregulated in muscle-invasive and grade 3 cancers. Genes associated with the classical complement pathway were downregulated in non-muscle invasive cancer. Osteopontin was markedly overexpressed in invasive cancer compared to healthy tissue. The present study contributes to a growing body of work on gene expression signatures in bladder cancer. The data support an important role for osteopontin in bladder cancer, and identify several pathways worthy of further investigation.

Citation

International Journal of Oncology, 2017, 50 (4), pp. 1147 - 1159

Source Title

Publisher

SPANDIDOS PUBL LTD

ISSN

1019-6439

eISSN

1791-2423

Research Team

Prostate and Bladder Cancer Research

Notes