David E. Garcia

Physiology UNAM, Mexico, Ciudad de México, Ciudad de México, Mexico 
Ion channel regulation in sympathetic neurons
"David Garcia"
Mean distance: 13.39 (cluster 11)
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Lazcano-Pérez F, Vivas O, Román-González SA, et al. (2014) A purified Palythoa venom fraction delays sodium current inactivation in sympathetic neurons. Toxicon : Official Journal of the International Society On Toxinology. 82: 112-6
García DE, Maggi G, Gredilla E, et al. (2014) [Airway management in a patient with Niemann-Pick disease]. Revista EspañOla De Anestesiología Y ReanimacióN. 61: 583
Hernández-Castellanos JM, Vivas O, Garduño J, et al. (2014) Gβ₂ mimics activation kinetic slowing of CaV2.2 channels by noradrenaline in rat sympathetic neurons. Biochemical and Biophysical Research Communications. 445: 250-4
Garcia DE, Keasling JD. (2014) Kinetics of phosphomevalonate kinase from Saccharomyces cerevisiae. Plos One. 9: e87112
Bernáldez J, Román-González SA, Martínez O, et al. (2013) A Conus regularis conotoxin with a novel eight-cysteine framework inhibits CaV2.2 channels and displays an anti-nociceptive activity. Marine Drugs. 11: 1188-202
Vivas O, Castro H, Arenas I, et al. (2013) PIPâ‚‚ hydrolysis is responsible for voltage independent inhibition of CaV2.2 channels in sympathetic neurons. Biochemical and Biophysical Research Communications. 432: 275-80
Bravo-Martínez J, Arenas I, Vivas O, et al. (2012) A novel CaV2.2 channel inhibition by piracetam in peripheral and central neurons. Experimental Biology and Medicine (Maywood, N.J.). 237: 1209-18
Vivas O, Arenas I, García DE. (2012) Voltage-independent inhibition of Ca(V)2.2 channels is delimited to a specific region of the membrane potential in rat SCG neurons. Acta Biochimica Et Biophysica Sinica. 44: 544-9
Ma SM, Garcia DE, Redding-Johanson AM, et al. (2011) Optimization of a heterologous mevalonate pathway through the use of variant HMG-CoA reductases. Metabolic Engineering. 13: 588-97
Bravo-Martínez J, Delgado-Coello B, García DE, et al. (2011) Analysis of plasma membrane Ca2+-ATPase gene expression during epileptogenesis employing single hippocampal CA1 neurons. Experimental Biology and Medicine (Maywood, N.J.). 236: 409-17
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