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Journal of Cellular Physiology|October 21, 2018
Colorectal cancer invasiveness in vitro: Predominant contribution of neonatal Nav1.5 under normoxia and hypoxiaR Mine Guzel, Kazim Ogmen, Kristina M Ilieva, et al.European Biophysics Journal : EBJ|September 26, 2016
Intracellular calcium oscillations in strongly metastatic human breast and prostate cancer cells: control by voltage-gated sodium channel activityNahit Rizaner, Rustem Onkal, Scott P Fraser, et al.The Journal of Membrane Biology|January 2, 2024
Lidocaine Inhibits Rat Prostate Cancer Cell Invasiveness and Voltage-Gated Sodium Channel Expression in Plasma MembraneNahit Rizaner, Scott P Fraser, Ilknur Bugan Gul, et al.Pathology, Research and Practice|July 13, 2017
Neonatal Nav1.5 protein expression in normal adult human tissues and breast cancerRezan Fahrioglu Yamaci, Scott P Fraser, Esra Battaloglu, et al.The Journal of Biological Chemistry|April 3, 2002
Carboxyl-terminal peptide of beta-amyloid precursor protein blocks inositol 1,4,5-trisphosphate-sensitive Ca2+ release in Xenopus laevis oocytesJoung-Hun Kim, Jong-Cheol Rah, Scott P Fraser, et al.Journal of Cellular Physiology|May 1, 2010
Estrogen and non-genomic upregulation of voltage-gated Na(+) channel activity in MDA-MB-231 human breast cancer cells: role in adhesionScott P Fraser, Iley Ozerlat-Gunduz, Rustem Onkal, et al.Journal of Cellular Physiology|April 9, 2008
Alternative splicing of Nav1.5: an electrophysiological comparison of 'neonatal' and 'adult' isoforms and critical involvement of a lysine residueRustem Onkal, Joanna H Mattis, Scott P Fraser, et al.Frontiers in Neuroscience|May 20, 2020
Human Breast Cancer Cells Demonstrate Electrical ExcitabilityMafalda Ribeiro, Aya Elghajiji, Scott P Fraser, et al.Journal of Neuroscience Methods|August 23, 2005
A novel polyclonal antibody specific for the Na(v)1.5 voltage-gated Na(+) channel 'neonatal' splice formAthina-Myrto Chioni, Scott P Fraser, Filippo Pani, et al.European Journal of Cancer (Oxford, England : 1990)|May 21, 2013
Ovarian cancer: Ion channel and aquaporin expression as novel targets of clinical potentialJulia Frede, Scott P Fraser, Gülten Oskay-Özcelik, et al.Pageof 3