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Journal Abstract Search


152 related items for PubMed ID: 8833423

  • 1. Effects of trepelennamine on brain monoamine turnover in morphine dependent and abstinent mice.
    San-Martin-Clark O, Cuellar B, Leza JC, Lizasoain I, Lorenzo P.
    Psychopharmacology (Berl); 1996 Feb; 123(3):297-302. PubMed ID: 8833423
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  • 2. Changes induced by sodium cromoglycate in brain catecholamine turnover in morphine dependent and abstinent mice.
    San-Martín-Clark O, Cuéllar B, De Alba J, Leza JC, Lorenzo P.
    Psychopharmacology (Berl); 1995 Apr; 118(3):347-53. PubMed ID: 7617828
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  • 5. Effects of naloxone-precipitated withdrawal after a single dose of morphine on catecholamine concentrations in guinea-pig brain.
    Brent PJ, Chahl LA.
    Neurochem Res; 1991 May; 16(5):525-31. PubMed ID: 1754029
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  • 7. Evidence for a peripheral mechanism in cardiac opioid withdrawal.
    Milanés MV, Martinez MD, González-Cuello A, Laorden ML.
    Naunyn Schmiedebergs Arch Pharmacol; 2001 Sep; 364(3):193-8. PubMed ID: 11521160
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  • 10. Comparison of the effects of eleven histamine H1-receptor antagonists on monoamine turnover in the mouse brain.
    Oishi R, Shishido S, Yamori M, Saeki K.
    Naunyn Schmiedebergs Arch Pharmacol; 1994 Feb; 349(2):140-4. PubMed ID: 7513381
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  • 12. Correlative analysis of dopaminergic and serotonergic metabolism across the brain to study monoaminergic function and interaction.
    Dellu-Hagedorn F, Fitoussi A, De Deurwaerdère P.
    J Neurosci Methods; 2017 Mar 15; 280():54-63. PubMed ID: 28161298
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  • 17. Antidepressant-like effect of flavonoids extracted from Apocynum venetum leaves on brain monoamine levels and dopaminergic system.
    Zheng M, Fan Y, Shi D, Liu C.
    J Ethnopharmacol; 2013 May 02; 147(1):108-13. PubMed ID: 23453939
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