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Neuropharmacology|July 10, 2017
Venom-derived peptide inhibitors of voltage-gated potassium channelsRaymond S Norton, K George ChandyImmunological Reviews|September 17, 2009
The functional network of ion channels in T lymphocytesMichael D Cahalan, K George ChandyJournal of Visualized Experiments : Jove|November 4, 2008
Induction and clinical scoring of chronic-relapsing experimental autoimmune encephalomyelitisChristine Beeton, Adriana Garcia, K George ChandyJournal of Visualized Experiments : Jove|November 8, 2008
Drawing blood from rats through the saphenous vein and by cardiac punctureChristine Beeton, Adriana Garcia, K George ChandyCurrent Opinion in Drug Discovery & Development|October 29, 2003
Potassium channels as therapeutic targets for autoimmune disordersHeike Wulff, Christine Beeton, K George ChandyNatural Product Reports|February 18, 2020
Contributions of natural products to ion channel pharmacologySaumya Bajaj, Seow Theng Ong, K George ChandyChannels (Austin, Tex.)|September 11, 2023
Structure of the voltage-gated potassium channel KV1.3: Insights into the inactivated conformation and binding to therapeutic leadsK George Chandy, Karoline Sanches, Raymond S NortonThe Journal of Biological Chemistry|November 7, 2007
The D-diastereomer of ShK toxin selectively blocks voltage-gated K+ channels and inhibits T lymphocyte proliferationChristine Beeton, Brian J Smith, Jennifer K Sabo, et al.Journal of Visualized Experiments : Jove|June 28, 2017
A Chronic Autoimmune Dry Eye Rat Model with Increase in Effector Memory T Cells in Eyeball TissueAihua Hou, Tanima Bose, K George Chandy, et al.Frontiers in Pharmacology|July 14, 2022
Mechanisms Underlying C-type Inactivation in Kv Channels: Lessons From Structures of Human Kv1.3 and Fly Shaker-IR ChannelsSeow Theng Ong, Anu Tyagi, K George Chandy, et al.Pageof 10