Metabolic study of 2,5-dimethoxy-4-ethylamphetamine (DOET) in rats
Tansey, L.W.; Estevez, V.S.; Ho, B.T.
Proceedings of the Western Pharmacology Society 18: 362
1975
ISSN/ISBN: 0083-8969 PMID: 1182040 Document Number: 4339
Document emailed within 1 workday

Related Documents
Shimamine, M.; Takahashi, K.; Nakahara, Y. 1989: Studies on the identification of psychotropic substances. VI. Preparation and various analytical data of reference standards of some hallucinogens, 2,5-dimethoxy-4-methylamphetamine (STP), 2,5-dimethoxy-4-bromoamphetamine (DOB) and 2,5-dimethoxy-4-ethylamphetamine (DOET) Eisei Shikenjo Hokoku. Bulletin of National Institute of Hygienic Sciences 1989(107): 113-119Shimamoto, N.; Goto, N.; Hirata, M. 1982: Effects of 2,3-dimethoxy-5-methyl-6-(10'-hydroxydecyl)-1,4-benzoquinone (CV-2619) on the energy metabolism of red blood cells of rats Nihon Yakurigaku Zasshi. Folia Pharmacologica Japonica 80(2): 137-145
Aulakh, C.S.; Mazzola-Pomietto, P.; Wozniak, K.M.; Hill, J.L.; Murphy, D.L. 1994: Evidence that 1-(2,5-dimethoxy-4-methylphenyl)-2-aminopropane-induced hypophagia and hyperthermia in rats is mediated by serotonin-2A receptors Journal of Pharmacology and Experimental Therapeutics 270(1): 127-132
Vandel, B.; Vandel, S.; Magnin, P. 1970: Pharmacological interest of the study of cellular metabolic changes of the central nervous system during convulsions. I. Study of the technical conditions in rats Therapie 25(1): 173-180
Dyer, D.C. 1976: Comparison of the effects of R-(-)-2-amino-1-(2,5-dimethoxy-4-methylphenyl) propane (DOM), r-(-)-2-amino-1-(2,5-dimethoxy-4-methylphenyl) butane (BL-3912A) and 5-hydroxytryptamine on non-innervated vascular smooth muscle Research Communications in Chemical Pathology and Pharmacology 14(3): 449-454
Buyniski, J.P.; Smith, M.L.; Bierwagen, M.E. 1974: Cardiovascular and gross behavioral effects of amphetamine, 2-amino-1-(2,5-dimethoxy-4-methylphenyl) propane (DOM) and 2-amino-1-(2,5-dimethoxy-4-methylphenyl) butane (BL-3912A) in the conscious dog Research Communications in Chemical Pathology and Pharmacology 8(2): 213-221
Saiki, H.; Nakaya, M.; Sugita, Y.; Kamachi, M. 1976: Metabolic and hormonal mechanisms of mineral metabolic adaptation to induced hypokinetics in rats Aviation Space and Environmental Medicine 47(8): 846-852
Magdányi, L. 1973: Synthesis of 5,6-dimethoxy indazole-3-carbonic acid derivatives (preliminary study) Acta Pharmaceutica Hungarica 43(3): 142-146
Coronel, C.; Ballesteros, M.; del Castillo, B.; Söllhuber, M.M.; Menendez, J.C. 1988: Spectrofluorimetric study of 1,3,4,6,7,11b-hexahydro-9,10-dimethoxy-2H-benzo(a) quinolizine-2-spiro-3'-(1'-phenyl) succinimide hydrochloride Journal de Pharmacie de Belgique 43(1): 37-45
Tessel, R.E.; Woods, J.H. 1978: Meta Substituted N-ethylamphetamine self injection responding in the rhesus monkey: structure-activity relationships Journal of Pharmacology and Experimental Therapeutics 205(2): 274-281
Minami, M.; Togashi, H.; Sano, M.; Yoshioka, M.; Saito, I.; Morii, K.; Tochihara, M.; Hirogami, M.; Nomura, A.; Saito, H. 1985: Effects of new antihypertensive agent, 2-[4-(n-butyryl)-homopiperazine-1-ul]-4-amino-6, 7-dimethoxy-quinazoline (E-643), on blood pressure, urinary sodium excretion and urinary norepinephrine excretion rate in stroke-prone, spontaneously hypertensive rats Hokkaido Journal of Medical Science 60(4): 536-543
De Castro, J.; Van de Water, A.; Wouters, L.; Xhonneux, R.; Reneman, R.; Kay, B. 1979: Comparative study of cardiovascular, neurological and metabolic side effects of 8 narcotics in dogs. Pethidine, piritramide, morphine, phenoperidine, fentanyl, R 39 209, sufentanil, R 34 995. III. Comparative study of the acute metabolic toxicity of the narcotics used in high and massive doses in curarised and mechanically ventilated dogs Acta Anaesthesiologica Belgica 30(1): 71-90
Polo, R.; José Galindo, M.; Martínez, E.; Alvarez, J.; Arévalo, Jé.Manuel.; Asensi, Víctor.; Cánoves, D.; Cáncer, E.; Collazos, J.; Estrada, V.; Gómez-Candela, C.; Johnston, S.; Locutura, J.; López-Aldeguer, Jé.; Lozano, F.; Miralles, C.; Muñoz-Sanz, Aín.; Ortega, E.; Pascua, J.; Pedrol, E.; Pulido, F.; San Martín, M.; Sanz, Jús.; Viciana, P.; Chamorro, L. 2006: Recommendations of the Study Group for Metabolic Alterations/Secretariat for the National AIDS Plan (GEAM/SPNS) on the management of metabolic and morphologic alterations in patients with HIV infection Enfermedades Infecciosas y Microbiologia Clinica 24(2): 96-117
Dauranov, I.G. 1974: Some metabolic changes in the lymphocytes of newborn rats during asphyxia Biulleten' Eksperimental'noi Biologii i Meditsiny 78(12): 21-23
Schreiber, V.; Fischer, J.; Kmentova, V. 1962: Some metabolic and endocrine changes in acute 3-acetylpyridine poisoning in rats Physiologia Bohemoslovenica 11: 212-220
Lelevich, S.V.; Lelevich, V.V.; Barkovskiĭ, E.V. 2013: Correction of metabolic changes in rats with sporadic alcoholic intoxication Eksperimental'naia i Klinicheskaia Farmakologiia 76(7): 31-34
Markov, K.M.; Pinelis, V.G.; Kudinov, I.V.; Borin, M.L.; Azizova, O.A. 1989: Na+/H+ metabolic activity in the thrombocytes of spontaneously hypertensive rats Biulleten' Eksperimental'noi Biologii i Meditsiny 107(2): 188-190
Prasad, R.; Kinsella, J.L.; Sacktor, B. 1988: Renal adaptation to metabolic acidosis in senescent rats American Journal of Physiology 255(6 Pt 2): F1183-F1190
Eby, B.K.; Pesigan, M.; Rodriquez, P.; Kathpalia, S.; Lau, K. 1986: Nature and metabolic consequence of hypophosphaturia in spontaneously hypertensive rats Journal of Hypertension. Suppl: Official Journal of the International Society of Hypertension 4(5): S132-S134
Bowers, W.D.; Burlington, R.F.; Whitten, B.K.; Daum, R.C.; Posiviata, M.A. 1971: Ultrastructural and metabolic alterations in myocardium from altitude-acclimated rats American Journal of Physiology 220(6): 1885-1889