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Brief Reports

Development of 5-HT transporter density and long-term effects of methylphenidate in an animal model of ADHD

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Pages 581-585 | Received 07 Aug 2008, Published online: 08 Dec 2009

References

  • Adriani W, Caprioli A, Granstrem O, Carli M, Laviola G. The spontaneously hypertensive-rat as an animal model of ADHD: evidence for impulsive and non-impulsive subpopulations. Neurosci Biobehav Rev 2003; 27: 639–651
  • Albayrak O, Friedel S, Schimmelmann BG, Hinney A, Hebebrand J. Genetic aspects in attention-deficit/hyperactivity disorder. J Neural Transm 2008; 115: 305–315
  • Bizot JC, Chenault N, Houze B, Herpin A, David S, Pothion S, Trovero F. Methylphenidate reduces impulsive behaviour in juvenile Wistar rats, but not in adult Wistar, SHR and WKY rats. Psychopharmacology (Berlin) 2007; 193: 215–223
  • Bock N, Quentin DJ, Huther G, Moll GH, Banaschewski T, Rothenberger A. Very early treatment with fluoxetine and reboxetine causing long-lasting change of the serotonin but not the noradrenaline transporter in the frontal cortex of rats. World J Biol Psychiatry 2005; 6: 107–112
  • Bolanos CA, Barrot M, Berton O, Wallace-Black D, Nestler EJ. Methylphenidate treatment during pre- and periadolescence alters behavioral responses to emotional stimuli at adulthood. Biol Psychiatry 2003; 54: 1317–1329
  • Bolanos CA, Willey MD, Maffeo ML, Powers KD, Kinka DW, Grausam KB, Henderson RP. Antidepressant treatment can normalize adult behavioral deficits induced by early-life exposure to methylphenidate. Biol Psychiatry 2008; 63: 309–316
  • Carlezon WA, Jr, Mague SD, Andersen SL. Enduring behavioral effects of early exposure to methylphenidate in rats. Biol Psychiatry 2003; 54: 1330–1337
  • Fox AT, Hand DJ, Reilly MP. Impulsive choice in a rodent model of attention-deficit/hyperactivity disorder. Behav Brain Res 2008; 187: 146–152
  • Grund T, Lehmann K, Bock N, Rothenberger A, Teuchert-Noodt G. Influence of methylphenidate on brain development – An update of recent animal experiments. Behav Brain Funct 2006; 2: 2
  • Kollins SH, March JS. Advances in the pharmacotherapy of attention-deficit/hyperactivity disorder. Biol Psychiatry 2007; 62: 951–953
  • Liu Y, Reichelt KL. A serotonin uptake-stimulating tetra-peptide found in urines from ADHD children. World J Biol Psychiatry 2001; 2: 144–148
  • Moll GH, Mehnert C, Wicker M, Bock N, Rothenberger A, Ruther E, Huether G. Age-associated changes in the densities of presynaptic monoamine transporters in different regions of the rat brain from early juvenile life to late adulthood. Brain Res Dev Brain Res 2000; 119: 251–257
  • Oades RD. Role of the serotonin system in ADHD: treatment implications. Expert Rev Neurother 2007; 7: 1357–1374
  • Oades RD, Slusarek M, Velling S, Bondy B. Serotonin platelet-transporter measures in childhood attention-deficit/hyperactivity disorder (ADHD): clinical versus experimental measures of impulsivity. World J Biol Psychiatry 2002; 3: 96–100
  • Pliszka SR. The neuropsychopharmacology of attention-deficit/hyperactivity disorder. Biol Psychiatry 2005; 57: 1385–1390
  • Roessner, V, Sagvolden, T, Manzke, T, Becker, A, Rothenberger, A, Bock, N. 2008. D, 1-Methylphenidate normalizes elevated dopamine transporter density in an animal model of ADHD combined type, but not in one of ADHD in attentive type submitted.
  • Schwarting RK, Thiel CM, Muller CP, Huston JP. Relationship between anxiety and serotonin in the ventral striatum. Neuroreport 1998; 9: 1025–1029
  • Soghomonian JJ, Doucet G, Descarries L. Serotonin innervation in adult rat neostriatum. I. Quantified regional distribution. Brain Res 1987; 425: 85–100
  • van den Bergh FS, Bloemarts E, Chan JS, Groenink L, Olivier B, Oosting RS. Spontaneously hypertensive rats do not predict symptoms of attention-deficit hyperactivity disorder. Pharmacol Biochem Behav 2006; 83: 380–390
  • Volkow ND, Insel TR. What are the long-term effects of methylphenidate treatment?. Biol Psychiatry 2003; 54: 1307–1309
  • Winstanley CA, Eagle DM, Robbins TW. Behavioral models of impulsivity in relation to ADHD: translation between clinical and preclinical studies. Clin Psychol Rev 2006; 26: 379–395
  • Zhang K, Davids E, Tarazi FI, Baldessarini RJ. Serotonin transporter binding increases in caudate-putamen and nucleus accumbens after neonatal 6-hydroxydopamine lesions in rats: implications for motor hyperactivity. Brain Res Dev Brain Res 2002; 137: 135–138

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