Brian S. Tanaka, Post-doc

Affiliations: 
2006-2014 Microbiology & Molecular Genetics University of California, Irvine, Irvine, CA 
 2014- Neurology Yale University, New Haven, CT 
Area:
epilepsy, sodium channel, pain
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"Brian Tanaka"
Mean distance: 14.05 (cluster 11)
 
SNBCP
Cross-listing: Neurotree

Parents

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Alan L. Goldin grad student 2006-2014 UC Irvine
 (Reduced Scn8a Expression in Excitatory Neurons Decreases Seizure Susceptibility.)
Stephen G. Waxman post-doc 2014- Yale (Neurotree)
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Publications

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Yuan JH, Estacion M, Mis MA, et al. (2021) variants and pain modulation: a missense variant in Kv7.3 contributes to pain resilience. Brain Communications. 3: fcab212
McMahon KL, Tay B, Deuis JR, et al. (2020) Pharmacological activity and NMR solution structure of the leech peptide HSTX-I. Biochemical Pharmacology. 114082
Labau JI, Estacion M, Tanaka BS, et al. (2020) Differential effect of lacosamide on Nav1.7 variants from responsive and non-responsive patients with small fibre neuropathy. Brain : a Journal of Neurology
Urru M, Muzzi M, Coppi E, et al. (2019) Dexpramipexole blocks Nav1.8 sodium channels and provides analgesia in multiple nociceptive and neuropathic pain models. Pain
Akin EJ, Higerd GP, Mis MA, et al. (2019) Building sensory axons: Delivery and distribution of Na1.7 channels and effects of inflammatory mediators. Science Advances. 5: eaax4755
Israel MR, Tanaka BS, Castro J, et al. (2019) Na 1.6 regulates excitability of mechanosensitive sensory neurons. The Journal of Physiology
Vrselja Z, Daniele SG, Silbereis J, et al. (2019) Restoration of brain circulation and cellular functions hours post-mortem. Nature. 568: 336-343
Mis MA, Yang Y, Tanaka BS, et al. (2018) Resilience to Pain: A Peripheral Component Identified using induced Pluripotent Stem Cells and Dynamic Clamp. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Huang J, Mis MA, Tanaka B, et al. (2018) Atypical changes in DRG neuron excitability and complex pain phenotype associated with a Nav1.7 mutation that massively hyperpolarizes activation. Scientific Reports. 8: 1811
Tanaka BS, Nguyen PT, Zhou EY, et al. (2017) Gain-of-Function Mutation of a Voltage-Gated Sodium Channel NaV1.7 Associated with Peripheral Pain and Impaired Limb Development. The Journal of Biological Chemistry
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