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Cancer Research|November 4, 2000
Hyperinducibility of hypoxia-responsive genes without p53/p21-dependent checkpoint in aggressive prostate cancerK Salnikow, M Costa, W D Figg, et al.Oncology Research|October 9, 2001
Selective susceptibility of transformed T lymphocytes to induction of apoptosis by PSC 833, an inhibitor of P-glycoproteinJ Azare, I Pankova-Kholmyansky, K Salnikow, et al.Cancer Research|January 26, 2000
Carcinogenic nickel induces genes involved with hypoxic stressK Salnikow, M V Blagosklonny, H Ryan, et al.Cell Biology and Toxicology|June 6, 2002
Enhanced expression of a novel protein in human cancer cells: a potential aid to cancer diagnosisH Cangul, K Salnikow, H Yee, et al.Journal of Inorganic Biochemistry|May 2, 2001
Ni(II) and Cu(II) binding with a 14-aminoacid sequence of Cap43 protein, TRSRSHTSEGTRSRM A Zoroddu, T Kowalik-Jankowska, H Kozlowski, et al.The Science of the Total Environment|June 6, 1994
Molecular mechanisms of nickel carcinogenesisM Costa, Z Zhuang, X Huang, et al.Oncogene|August 1, 2006
Hypoxic repression of STAT1 and its downstream genes by a pVHL/HIF-1 target DEC1/STRA13S V Ivanov, K Salnikow, A V Ivanova, et al.Cancer Research|February 10, 2000
Nickel compounds are novel inhibitors of histone H4 acetylationL Broday, W Peng, M H Kuo, et al.Carcinogenesis|September 2, 1999
Nickel-induced transformation shifts the balance between HIF-1 and p53 transcription factorsK Salnikow, W G An, G Melillo, et al.Molecular and Cellular Biochemistry|October 27, 2001
Molecular biology of nickel carcinogenesisM Costa, J E Sutherland, W Peng, et al.Pageof 3