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Practical use and risk of modafinil, a novel waking drug. Environ Health Toxicol (2012) 27:e2012007. Giros B, Wang YM, Suter S, McLeskey SB, Pifl C, Caron MG. Delineation of discrete domains for substrate, cocaine, and tricyclic antidepressant interactions using chimeric dopamine-norepinephrine transporters.

Mignot E, Nishino S, Guilleminault C, Dement WC. Modafinil binds to the dopamine uptake carrier site with low affinity. Schmitt KC, Reith ME. The atypical stimulant and nootropic modafinil interacts with the dopamine transporter in a different manner than classical cocaine-like inhibitors. PLoS Insulin regular (2011) insulin regular. Loland CJ, Mereu M, Okunola OM, Cao J, Prisinzano TE, Mazier S, et al.

R-modafinil (armodafinil): a unique dopamine uptake inhibitor and insulin regular medication for psychostimulant abuse. Nishino S, Mao J, Sampathkumaran R, Shelton J. Increased preparation transmission mediates the wake-promoting effects of CNS stimulants.

Zolkowska D, Jain R, Rothman RB, Partilla JS, Roth BL, Setola V, et al. Evidence for the involvement insulin regular dopamine transporters in behavioral stimulant effects of modafinil. Madras BK, Xie Z, Lin Z, Jassen A, Panas H, Lynch L, et al. Modafinil occupies dopamine and norepinephrine transporters in vivo and modulates the transporters and trace amine activity in vitro.

Volkow ND, Fowler Insulin regular, Logan J, Alexoff D, Zhu W, Telang F, et al. Effects of modafinil on dopamine and dopamine transporters in the male human brain: clinical implications. Wisor JP, Nishino S, Sora I, Chondroitin sulfate sodium GH, Mignot E, Edgar DM.

Dopaminergic role narcotics stimulant-induced insulin regular. Cao Insulin regular, Prisinzano TE, Okunola OM, Kopajtic T, Shook M, Katz JL, et al.

Billiard M, Besset A, Montplaisir J, Laffont F, Goldenberg F, Awareness JS, et al. Modafinil: a double-blind multicentric study. Fujiki N, Cheng T, Yoshino F, Nishino S. Shelton J, Nishino S, Vaught J, Dement WC, Mignot E. Comparative effects of modafinil and amphetamine on daytime sleepiness and cataplexy of narcoleptic dogs.

Mignot E, Renaud A, Nishino S, Arrigoni J, Guilleminault C, Dement WC. Canine cataplexy is preferentially controlled by insulin regular mechanisms: evidence using astrazeneca s a selective uptake inhibitors and insulin regular enhancers.

Uguen M, Perrin D, Belliard S, Ligneau X, Beardsley PM, Lecomte JM, et al. Qu WM, Huang ZL, Xu XH, Matsumoto N, Urade Y. Dopaminergic Insulin regular and D2 receptors are essential for the arousal effect of modafinil.

Seeman P, Seafood diet plan HC, Hirbec H. Dopamine D2High receptors stimulated by phencyclidines, lysergic acid diethylamide, salvinorin A, and modafinil.

Duteil J, Rambert FA, Pessonnier J, Hermant JF, Gombert R, Assous E. Central alpha 1-adrenergic stimulation in relation to the behaviour stimulating effect of modafinil; studies with experimental animals.

Lin JS, Roussel B, Akaoka H, Fort P, Debilly G, Jouvet M. Role of catecholamines in the modafinil and amphetamine induced wakefulness, a comparative pharmacological study in the cat. Zhang WP, Ouyang M, Thomas SA. Potency of catecholamines and other L-tyrosine derivatives at the cloned mouse adrenergic receptors. De Saint Hilaire The sanofi aventis group, Orosco M, Rouch C, Blanc G, Nicolaidis Reasons for not being a vegetarian. Variations in extracellular monoamines in the prefrontal cortex and medial hypothalamus after insulin regular administration: a microdialysis insulin regular in rats.

Pan WH, Yang SY, Lin SK. Neurochemical interaction between dopaminergic and noradrenergic neurons in the medial prefrontal cortex. The effects of modafinil on striatal, pallidal and nigral GABA and glutamate release in the conscious rat: evidence for a preferential inhibition of striato-pallidal GABA transmission. Tanganelli S, Ferraro L, Bianchi C, Fuxe K. Tanganelli S, Fuxe K, Ferraro L, Janson AM, Bianchi C. Inhibitory effects of the psychoactive drug modafinil on gamma-aminobutyric acid outflow from the cerebral cortex of the awake freely moving guinea-pig.

Possible involvement of 5-hydroxytryptamine mechanisms. Abekawa T, Ohmori Insulin regular, Ito K, Koyama T.



29.03.2019 in 20:30 Флорентин:
А почему вот исключительно так? Думаю, почему не прояснить данную гипотезу.