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Sub-Cellular Biochemistry|January 16, 2008
Calcium signalling and cancer cell growthT Capiod, Y Shuba, R Skryma, et al.Journal of Cardiovascular Pharmacology|July 1, 1997
Comparative effects of loratadine and terfenadine on cardiac K+ channelsI Ducic, C M Ko, Y Shuba, et al.FEBS Letters|January 7, 2004
2-APB inhibits volume-regulated anion channels independently from intracellular calcium signaling modulationL Lemonnier, N Prevarskaya, J Mazurier, et al.Neuroreport|October 3, 1994
Expression of low-voltage activated Ca2+ channels from rat brain neurones in Xenopus oocytesI Dzhura, P Kostyuk, O Lyubanova, et al.Cell Death and Differentiation|May 5, 2007
Ion channels in death and differentiation of prostate cancer cellsN Prevarskaya, R Skryma, G Bidaux, et al.Brain Research|April 18, 1998
Expression of Ca2+ channels from rat brain with model phenylketonuria in Xenopus oocytesI Dzhura, V Naidenov, S Zhuravleva, et al.The Journal of Physiology|May 2, 2003
Receptor-coupled, DAG-gated Ca2+-permeable cationic channels in LNCaP human prostate cancer epithelial cellsV Sydorenko, Y Shuba, S Thebault, et al.Endocrine-Related Cancer|June 11, 2005
Alterations in the regulatory volume decrease (RVD) and swelling-activated Cl- current associated with neuroendocrine differentiation of prostate cancer epithelial cellsL Lemonnier, R Lazarenko, Y Shuba, et al.Cell Calcium|May 27, 2003
Store-operated Ca2+ channels in prostate cancer epithelial cells: function, regulation, and role in carcinogenesisF Vanden Abeele, Y Shuba, M Roudbaraki, et al.Cell Death and Differentiation|December 20, 2003
Ca2+ homeostasis and apoptotic resistance of neuroendocrine-differentiated prostate cancer cellsK Vanoverberghe, F Vanden Abeele, P Mariot, et al.Pageof 2