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Proposal References


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  2. Giaume, C., Naus, C. C., Sáez, J. C. & Leybaert, L. Glial Connexins and Pannexins in the Healthy and Diseased Brain. Physiol Rev 101, 93-145 (2021).


  1. Du, X. et al. Loss-of-function BK channel mutation causes impaired mitochondria and progressive cerebellar ataxia. Proc Natl Acad Sci U S A 117, 6023-6034 (2020)
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  6. da Silva Fiorin, F. et al. Capsaicin-sensitive fibers mediate periorbital allodynia and activation of inflammatory cells after traumatic brain injury in rats: Involvement of TRPV1 channels in post-traumatic headache. Neuropharmacology 176, 108215 (2020).
  7. Günaydın, C., Arslan, G. & Bilge, S. S. Proconvulsant effect of trans-cinnamaldehyde in pentylenetetrazole-induced kindling model of epilepsy: The role of TRPA1 channels. Neurosci Lett 721, 134823 (2020).
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  1. Liang, L. et al. De novo loss-of-function KCNMA1 variants are associated with a new multiple malformation syndrome and a broad spectrum of developmental and neurological phenotypes. Hum Mol Genet 28, 2937-2951 (2019)
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  6. de Rosa, V. et al. D-Aspartate treatment attenuates myelin damage and stimulates myelin repair. EMBO Mol Med 11, (2019).
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  1. Hubbard, J. A., Szu, J. I. & Binder, D. K. The role of aquaporin-4 in synaptic plasticity, memory and disease. Brain Res Bull 136, 118-129 (2018).
  2. Vandoorne, T., De Bock, K. & Van Den Bosch, L. Energy metabolism in ALS: an underappreciated opportunity. Acta Neuropathol 135, 489-509 (2018).
  3. Recabal, A. et al. Connexin-43 Gap Junctions Are Responsible for the Hypothalamic Tanycyte-Coupled Network. Front Cell Neurosci 12, 406 (2018).
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  1. Tao, X., Hite, R. K. & MacKinnon, R. Cryo-EM structure of the open high-conductance Ca2+-activated K+ channel. Nature 541, 46-51 (2017).
  2. Islas, L. D. in Neurobiology of TRP Channels (ed Emir, T. L. R.) (CRC Press/Taylor & Francis, Boca Raton (FL), 2017).
  3. González-Ramírez, R., Chen, Y., Liedtke, W. B. & Morales-Lázaro, S. L. in Neurobiology of TRP Channels (ed Emir, T. L. R.) (CRC Press/Taylor & Francis, Boca Raton (FL), 2017)
  4. Maturana, C. J., Aguirre, A. & Sáez, J. C. High glucocorticoid levels during gestation activate the inflammasome in hippocampal oligodendrocytes of the offspring. Dev Neurobiol 77, 625-642 (2017).
  5. Tahara, Y., Aoyama, S. & Shibata, S. The mammalian circadian clock and its entrainment by stress and exercise. J Physiol Sci 67, 1-10 (2017).
  6. Franklin, R. J. M. & Ffrench-Constant, C. Regenerating CNS myelin – from mechanisms to experimental medicines. Nat Rev Neurosci 18, 753-769 (2017).
  7. Cabral, J., Kringelbach, M. L. & Deco, G. Functional connectivity dynamically evolves on multiple time-scales over a static structural connectome: Models and mechanisms. Neuroimage 160, 84-96 (2017).
  8. Nichols, A. L. A., Eichler, T., Latham, R. & Zimmer, M. A global brain state underlies C. elegans sleep behavior. Science 356, (2017).


  1. Mickle, A. D., Shepherd, A. J. & Mohapatra, D. P. Nociceptive TRP Channels: Sensory Detectors and Transducers in Multiple Pain Pathologies. Pharmaceuticals (Basel) 9, (2016)
  2. English, N. J. & Garate, J. A. Near-microsecond human aquaporin 4 gating dynamics in static and alternating external electric fields: Non-equilibrium molecular dynamics. J Chem Phys 145, 085102 (2016).
  3. Stokum, J. A., Gerzanich, V. & Simard, J. M. Molecular pathophysiology of cerebral edema. J Cereb Blood Flow Metab 36, 513-538 (2016).
  4. Leff-Gelman, P. et al. The Immune System and the Role of Inflammation in Perinatal Depression. Neurosci Bull 32, 398-420 (2016).
  5. Latorre R et al. Molecular determinants of BK channel functional diversity and functioning. Physiological Reviews, 97(1):39-87 (2016)..
  6. Diaz-Franulic I, Poblete H, Miño G, González C, and Latorre R. Allosterism and Structure in Thermally Activated Transient Receptor Potential Channels Ann. Rev. Biophys. 45:371-98 (2016).


  1. Fields, R. D. A new mechanism of nervous system plasticity: activity-dependent myelination. Nat Rev Neurosci 16, 756-767 (2015).
  2. Ishii, M. & Iadecola, C. Metabolic and Non-Cognitive Manifestations of Alzheimer’s Disease: The Hypothalamus as Both Culprit and Target of Pathology. Cell Metab 22, 761-776 (2015).


  1. Feng, Q. Temperature sensing by thermal TRP channels: thermodynamic basis and molecular insights. Curr Top Membr 74, 19-50 (2014)


  1. Lundgaard, I. et al. Neuregulin and BDNF induce a switch to NMDA receptor-dependent myelination by oligodendrocytes. PLoS Biol 11, e1001743 (2013).


  1. Voets, T. Quantifying and modeling the temperature-dependent gating of TRP channels. Rev Physiol Biochem Pharmacol 162, 91-119 (2012).
  2. Saxena, U. Bioenergetics failure in neurodegenerative diseases: back to the future. Expert Opin Ther Targets 16, 351-354 (2012).
  3. Kaneko, H. et al. Circadian rhythm of temperature preference and its neural control in Drosophila. Curr Biol 22, 1851-1857 (2012).


  1. Orellana, J. A. et al. ATP and glutamate released via astroglial connexin 43 hemichannels mediate neuronal death through activation of pannexin 1 hemichannels. J Neurochem 118, 826-840 (2011).
  2. Sousa-Ferreira, L. et al. Proliferative hypothalamic neurospheres express NPY, AGRP, POMC, CART and Orexin-A and differentiate to functional neurons. PLoS One 6, e19745 (2011).


  1. van der Linden, A. M. et al. Genome-wide analysis of light- and temperature-entrained circadian transcripts in Caenorhabditis elegans. PLoS Biol 8, e1000503 (2010).


  1. Wang, B., Rothberg, B. S. & Brenner, R. Mechanism of increased BK channel activation from a channel mutation that causes epilepsy. J Gen Physiol 133, 283-294 (2009)
  2. Patapoutian, A., Tate, S. & Woolf, C. J. Transient receptor potential channels: targeting pain at the source. Nat Rev Drug Discov 8, 55-68 (2009).


  1. Retamal, M. A. et al. Cx43 hemichannels and gap junction channels in astrocytes are regulated oppositely by proinflammatory cytokines released from activated microglia. J Neurosci 27, 13781-13792 (2007).


  1. Collin, M. et al. Plasma membrane and vesicular glutamate transporter mRNAs/proteins in hypothalamic neurons that regulate body weight. Eur J Neurosci 18, 1265-1278 (2003).


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