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2. Uptake of 3H-catecholamines by rat liver cells occurs mainly through a system which is distinct from uptake1 or uptake2. Martel F, Azevedo I, Osswald W. Naunyn Schmiedebergs Arch Pharmacol; 1994 Aug; 350(2):130-5. PubMed ID: 7990969 [Abstract] [Full Text] [Related]
3. Vascular uptake of catecholamines in perfused lungs of the rat occurs by the same process as Uptake1 in noradrenergic neurones. Bryan-Lluka LJ, Westwood NN, O'Donnell SR. Naunyn Schmiedebergs Arch Pharmacol; 1992 Mar; 345(3):319-26. PubMed ID: 1535692 [Abstract] [Full Text] [Related]
4. [3H]Tyramine uptake by rat liver slices. Tchercansky DM, Rubio MC, Acevedo C. Pharmacol Res; 1999 Jun; 39(6):479-86. PubMed ID: 10373246 [Abstract] [Full Text] [Related]
5. Uptake and metabolism of 3H-(+/-)-noradrenaline in the isolated perfused rat liver. Steinberg P, Acevedo C, Masana MI, Rubio MC. Naunyn Schmiedebergs Arch Pharmacol; 1988 Apr; 337(4):392-6. PubMed ID: 3405314 [Abstract] [Full Text] [Related]
6. Extraneuronal uptake of noradrenaline in rabbit dental pulp: evidence of identity with uptake1. Marino V, de la Lande IS, Parker DA, Dally J, Wing S. Naunyn Schmiedebergs Arch Pharmacol; 1992 Aug; 346(2):166-72. PubMed ID: 1448181 [Abstract] [Full Text] [Related]
7. Evidence for uptake2-mediated O-methylation of noradrenaline in the human amnion FL cell-line. Marino V, de la Lande IS, Newlyn M, Parker DA. Naunyn Schmiedebergs Arch Pharmacol; 1993 Apr; 347(4):371-8. PubMed ID: 8510765 [Abstract] [Full Text] [Related]
8. Amezinium and debrisoquine are substrates of uptake1 and potent inhibitors of monoamine oxidase in perfused lungs of rats. Bryan-Lluka LJ, Seers H, Sharpe I. Naunyn Schmiedebergs Arch Pharmacol; 1996 Apr; 353(5):536-44. PubMed ID: 8740147 [Abstract] [Full Text] [Related]
9. Extraneuronal noradrenaline transport (uptake2) in a human cell line (Caki-1 cells). Schömig E, Schönfeld CL. Naunyn Schmiedebergs Arch Pharmacol; 1990 May; 341(5):404-10. PubMed ID: 2164161 [Abstract] [Full Text] [Related]
10. Characteristics of the cocaine-sensitive accumulation and O-methylation of 3H-(-)-noradrenaline by rabbit endometrium. Kennedy JA, de la Lande IS. Naunyn Schmiedebergs Arch Pharmacol; 1987 Aug; 336(2):148-54. PubMed ID: 3683593 [Abstract] [Full Text] [Related]
11. Effects of extraneuronal uptake inhibitors on the positive chronotropic response to isoprenaline and on the accumulation of isoprenaline in perfused rat heart after inhibition of catechol-O-methyl transferase. Magaribuchi T, Hama T, Kurahashi K, Fujiwara M. Naunyn Schmiedebergs Arch Pharmacol; 1987 Feb; 335(2):123-8. PubMed ID: 3561526 [Abstract] [Full Text] [Related]
16. Dual effect of digitalis glycosides on norepinephrine release from human atrial tissue and bovine adrenal chromaffin cells: differential dependence on [Na+]i and [Ca2+]i. Haass M, Serf C, Gerber SH, Krüger C, Haunstetter A, Vahl CF, Nobiling R, Kübler W. J Mol Cell Cardiol; 1997 Jun; 29(6):1615-27. PubMed ID: 9220347 [Abstract] [Full Text] [Related]
17. Characterization of catecholamine uptake2 in isolated cardiac myocytes. Obst OO, Rose H, Kammermeier H. Mol Cell Biochem; 1996 Jun; 163-164():181-3. PubMed ID: 8974055 [Abstract] [Full Text] [Related]
18. Sodium-dependence of the potency of inhibitors of the neuronal noradrenaline carrier in the rat vas deferens. Zeitner CJ, Graefe KH. Naunyn Schmiedebergs Arch Pharmacol; 1986 Dec; 334(4):397-402. PubMed ID: 3821932 [Abstract] [Full Text] [Related]
19. The transport of (+)-amphetamine by the neuronal noradrenaline carrier. Bönisch H. Naunyn Schmiedebergs Arch Pharmacol; 1984 Oct; 327(4):267-72. PubMed ID: 6514010 [Abstract] [Full Text] [Related]
20. Accumulation of 3H-(-)noradrenaline in the rabbit aorta not related to uptake1 and uptake2, but sensitive to 3,4-dihydroxy-2-methylpropiophenone (U-0521) and oxytetracycline. Henseling M. Naunyn Schmiedebergs Arch Pharmacol; 1983 Jun; 323(2):121-7. PubMed ID: 6888566 [Abstract] [Full Text] [Related] Page: [Next] [New Search]