By A. Canda
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Additional resources for Bladder Cancer - From Basic Science to Robotic Surgery
HEST2, the putative human telomerase catalytic subunit gene, is up-regulated in tumor cells and during immortalization. 4, pp. T. & Schwaller, J. (2006). Genetic alterations in urothelial bladder carcinoma: an updated review. 6, pp. J. & Seigneurin, D. (1997). Expression of E-cadherin and alpha-,beta- and gammacatenins in human bladder carcinomas: are they good prognostic factors? 3, pp. S. (2007). Chronic inflammation and bladder cancer. 3, pp. E. & Givol, D. (1994). Induction of WAF1/CIP1 by a p53-independent pathway.
2008). IAPs: more than just inhibitors of apoptosis proteins. 8, pp. ; Lingner, J. & Nabholz, M. (2002). Regulation of the human telomerase reverse transcriptase gene. 4, pp. F. R. (2001). Molecular targets for the therapeutic manipulation of apoptosis in bladder cancer. 3, pp. ; Lunec, J. K. (2001). Prognostic significance of matrix metalloproteinase-1 and tissue inhibitor of metalloproteinase-1 in voided urine samples from patients with transitional cell carcinoma of the bladder. 11, pp. ; Lunec, J.
F. & Takahashi, R. (1991). Inactivation of the retinoblastoma gene in human bladder and renal cell carcinomas. 20, pp. ; Inoue, M. & Namiki, M. (1998). Expression of human telomerase subunits and correlation with telomerase activity in urothelial cancer. 7, pp. M. R. (1995). Tumor angiogenesis correlates with lymph node metastases in invasive bladder cancer. 1, pp. F. A. (2005). FGFR3 and Ras gene mutations are mutually exclusive genetic events in urothelial cell carcinoma. 33, pp. ; Xu, J. & Ward, E.