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Prostate Cancer and Prostatic Diseases|March 22, 2019
Anti-metastatic effect of ranolazine in an in vivo rat model of prostate cancer, and expression of voltage-gated sodium channel protein in human prostateIlknur Bugan, Selma Kucuk, Zeynep Karagoz, et al.Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences|February 5, 2014
Regulation of voltage-gated sodium channel expression in cancer: hormones, growth factors and auto-regulationScott P Fraser, Iley Ozerlat-Gunduz, William J Brackenbury, et al.FEBS Letters|July 1, 2004
T-lymphocyte invasiveness: control by voltage-gated Na+ channel activityScott P Fraser, James K J Diss, Louise J Lloyd, et al.The Journal of Biological Chemistry|March 10, 2011
Angiogenic functions of voltage-gated Na+ Channels in human endothelial cells: modulation of vascular endothelial growth factor (VEGF) signalingPetros Andrikopoulos, Scott P Fraser, Lisa Patterson, et al.Cancer Cell International|January 26, 2025
Clinical relevance of macromolecular complexes involving integrins, potassium and sodium ion channels and the sodium/proton antiporter in human breast cancerElena Lastraioli, Jessica Iorio, Francesco Piazza, et al.Cancers|August 7, 2021
Neonatal Nav1.5 Protein Expression in Human Colorectal Cancer: Immunohistochemical Characterization and Clinical EvaluationElena Lastraioli, Scott P Fraser, R Mine Guzel, et al.EMBO Reports|May 8, 2010
Molecular origin of plasma membrane citrate transporter in human prostate epithelial cellsMaciej P Mazurek, Puttur D Prasad, Elangovan Gopal, et al.Clinical Cancer Research : an Official Journal of the American Association for Cancer Research|August 3, 2005
Voltage-gated sodium channel expression and potentiation of human breast cancer metastasisScott P Fraser, James K J Diss, Athina-Myrto Chioni, et al.Oncogene|July 24, 2024
A novel Nav1.5-dependent feedback mechanism driving glycolytic acidification in breast cancer metastasisTheresa K Leslie, Aurelien Tripp, Andrew D James, et al.Pageof 3