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Institute for Molecular Bioscience Institute for Molecular Bioscience
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Dr Jonathan Chow

Higher degree by research (PhD) student & Postdoctoral Research Fellow
Institute for Molecular Bioscience
334 62326
c.chow4@uq.edu.au
View researcher profile

Publications

Journal Articles (9)

Journal Articles

Eagles, David A., Chow, Chun Yuen and King, Glenn F. (2020). Fifteen years of NaV1.7 channels as an analgesic target: Why has excellent in vitro pharmacology not translated into in vivo analgesic efficacy?. British Journal of Pharmacology bph.15327. doi: 10.1111/bph.15327
Chow, Chun Yuen, Absalom, Nathan, Biggs, Kimberley, King, Glenn F. and Ma, Linlin (2020). Venom-derived modulators of epilepsy-related ion channels. Biochemical Pharmacology, 181 114043, 114043. doi: 10.1016/j.bcp.2020.114043
Chow, Chun Y., Chin, Yanni K.Y., Ma, Linlin, Undheim, Eivind A.B., Herzig, Volker and King, Glenn F. (2020). A selective naV1.1 activator with potential for treatment of dravet syndrome epilepsy. Biochemical Pharmacology, 181 113991, 113991. doi: 10.1016/j.bcp.2020.113991
Gonzales, Junior, Pirovano, Giacomo, Chow, Chun Yuen, de Souza Franca, Paula Demetrio, Carter, Lukas M., Klint, Julie K., Guru, Navjot, Lewis, Jason S., King, Glenn F. and Reiner, Thomas (2020). Fluorescence labeling of a NaV1.7-targeted peptide for near-infrared nerve visualization. EJNMMI Research, 10 (1) 49, 49. doi: 10.1186/s13550-020-00630-4
Chow, Chun Yuen, Chin, Yanni K.-Y., Walker, Andrew A., Guo, Shaodong, Blomster, Linda V., Ward, Micaiah J., Herzig, Volker, Rokyta, Darin R. and King, Glenn F. (2019). Venom peptides with dual modulatory activity on the voltage-gated sodium channel NaV1.1 provide novel leads for development of antiepileptic drugs. ACS Pharmacology & Translational Science, 3 (1) acsptsci.9b00079, 119-134. doi: 10.1021/acsptsci.9b00079
Ma, Linlin, Chin, Yanni K.Y., Dekan, Zoltan, Herzig, Volker, Chow, Chun Yuen, Heighway, Jacqueline, Lam, Sau Wing, Guillemin, Gilles J., Alewood, Paul F. and King, Glenn F. (2018). Novel venom-derived inhibitors of the human EAG channel, a putative antiepileptic drug target. Biochemical Pharmacology, 158, 60-72. doi: 10.1016/j.bcp.2018.08.038
Richards, Kay L., Milligan, Carol J., Richardson, Robert J., Jancovski, Nikola, Grunnet, Morten, Jacobson, Laura H., Undheim, Eivind A. B., Mobli, Mehdi, Chow, Chun Yuen, Herzig, Volker, Csoti, Agota, Panyi, Gyorgy, Reid, Christopher A., King, Glenn F. and Petrou, Steven (2018). Selective NaV1.1 activation rescues Dravet syndrome mice from seizures and premature death. Proceedings of the National Academy of Sciences, 115 (34), 201804764-E8085. doi: 10.1073/pnas.1804764115
Agwa, Akello J., Peigneur, Steve, Chow, Chun Yuen, Lawrence, Nicole, Craik, David J., Tytgat, Jan, King, Glenn F., Henriques, Sonia Troeira and Schroeder, Christina I. (2018). Gating modifier toxins isolated from spider venom: modulation of voltage-gated sodium channels and the role of lipid membranes. Journal of Biological Chemistry, 293 (23), 9041-9052. doi: 10.1074/jbc.RA118.002553
Chow, Chun Yuen, Cristofori-Armstrong, Ben, Undheim, Eivind A. B., King, Glenn F. and Rash, Lachlan D. (2015). Three peptide modulators of the human voltage-gated sodium channel 1.7, an important analgesic target, from venom of an Australian tarantula. Toxins, 7 (7), 2494-2513. doi: 10.3390/toxins7072494
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