Literature DB >> 21982874

Modulation of gene expression and cell-cycle signaling pathways by the EGFR inhibitor gefitinib (Iressa) in rat urinary bladder cancer.

Yan Lu1, Pengyuan Liu, Francoise Van den Bergh, Victoria Zellmer, Michael James, Weidong Wen, Clinton J Grubbs, Ronald A Lubet, Ming You.   

Abstract

The epidermal growth factor receptor inhibitor Iressa has shown strong preventive efficacy in the N-butyl-N-(4-hydroxybutyl)-nitrosamine (OH-BBN) model of bladder cancer in the rat. To explore its antitumor mechanism, we implemented a systems biology approach to characterize gene expression and signaling pathways in rat urinary bladder cancers treated with Iressa. Eleven bladder tumors from control rats, seven tumors from rats treated with Iressa, and seven normal bladder epithelia were profiled by the Affymetrix Rat Exon 1.0 ST Arrays. We identified 713 downregulated and 641 upregulated genes in comparing bladder tumors versus normal bladder epithelia. In addition, 178 genes were downregulated and 96 genes were upregulated when comparing control tumors versus Iressa-treated tumors. Two coexpression modules that were significantly correlated with tumor status and treatment status were identified [r = 0.70, P = 2.80 × 10(-15) (bladder tumor vs. normal bladder epithelium) and r = 0.63, P = 2.00 × 10(-42) (Iressa-treated tumor vs. control tumor), respectively]. Both tumor module and treatment module were enriched for genes involved in cell-cycle processes. Twenty-four and twenty-one highly connected hub genes likely to be key drivers in cell cycle were identified in the tumor module and treatment module, respectively. Analysis of microRNA genes on the array chips showed that tumor module and treatment module were significantly associated with expression levels of let-7c (r = 0.54, P = 3.70 × 10(-8) and r = 0.73, P = 1.50 × 10(-65), respectively). These results suggest that let-7c downregulation and its regulated cell-cycle pathway may play an integral role in governing bladder tumor suppression or collaborative oncogenesis and that Iressa exhibits its preventive efficacy on bladder tumorigenesis by upregulating let-7 and inhibiting the cell cycle. Cell culture study confirmed that the increased expression of let-7c decreases Iressa-treated bladder tumor cell growth. The identified hub genes may also serve as pharmacodynamic or efficacy biomarkers in clinical trials of chemoprevention in human bladder cancer. ©2011 AACR.

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Year:  2011        PMID: 21982874     DOI: 10.1158/1940-6207.CAPR-10-0363

Source DB:  PubMed          Journal:  Cancer Prev Res (Phila)        ISSN: 1940-6215


  7 in total

1.  Regulation of growth of human bladder cancer by miR-192.

Authors:  Yongchao Jin; Jiasun Lu; Jiling Wen; Yinzhou Shen; Xiaofei Wen
Journal:  Tumour Biol       Date:  2015-01-09

2.  Naproxen induces cell-cycle arrest and apoptosis in human urinary bladder cancer cell lines and chemically induced cancers by targeting PI3K.

Authors:  Mi-Sung Kim; Jong-Eun Kim; Do Young Lim; Zunnan Huang; Hanyong Chen; Alyssa Langfald; Ronald A Lubet; Clinton J Grubbs; Zigang Dong; Ann M Bode
Journal:  Cancer Prev Res (Phila)       Date:  2013-12-10

3.  Chemoprevention of BBN-Induced Bladder Carcinogenesis by the Selective Estrogen Receptor Modulator Tamoxifen.

Authors:  Suraj Konnath George; Veronica Tovar-Sepulveda; Steven S Shen; Weiguo Jian; Yiqun Zhang; Susan G Hilsenbeck; Seth P Lerner; Carolyn L Smith
Journal:  Transl Oncol       Date:  2013-06-01       Impact factor: 4.243

Review 4.  Dysregulation of miRNAs in bladder cancer: altered expression with aberrant biogenesis procedure.

Authors:  Fan Dong; Tianyuan Xu; Yifan Shen; Shan Zhong; Shanwen Chen; Qiang Ding; Zhoujun Shen
Journal:  Oncotarget       Date:  2017-04-18

5.  Phenformin alone or combined with gefitinib inhibits bladder cancer via AMPK and EGFR pathways.

Authors:  Yanjun Huang; Sichun Zhou; Caimei He; Jun Deng; Ting Tao; Qiongli Su; Kwame Oteng Darko; Mei Peng; Xiaoping Yang
Journal:  Cancer Commun (Lond)       Date:  2018-07-27

6.  let-7i inhibits proliferation and migration of bladder cancer cells by targeting HMGA1.

Authors:  M-M Qin; X Chai; H-B Huang; G Feng; X-N Li; J Zhang; R Zheng; X-C Liu; C Pu
Journal:  BMC Urol       Date:  2019-06-13       Impact factor: 2.264

Review 7.  Therapeutic resistance in cancer: microRNA regulation of EGFR signaling networks.

Authors:  German G Gomez; Jill Wykosky; Ciro Zanca; Frank B Furnari; Webster K Cavenee
Journal:  Cancer Biol Med       Date:  2013-12       Impact factor: 4.248

  7 in total

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