Publication Cover
Laterality
Asymmetries of Brain, Behaviour, and Cognition
Volume 12, 2007 - Issue 6
93
Views
18
CrossRef citations to date
0
Altmetric
Original Articles

Hippocampal asymmetry in serotonergic modulation of learning and memory in rats

, &
Pages 475-486 | Received 07 Nov 2006, Published online: 22 Oct 2007

References

  • Alonso , V. , Castellano , M. A. and Rodriguer , M. 1991 . Behavioural lateralisation in rats: Prenatal stress effects on sex differences . Brain Research , 539 : 45 – 50 .
  • Altman , H. J. and Normille , H. J. 1988 . What is the nature of the role of the serotonergic nervous system in learning and memory: Prospects for development of an effective treatment strategy for senile dementia . Neurobiology of Aging , 9 : 627 – 637 .
  • Belcheva , I. P. , Bryer , J. B. , Starkstein , S. E. , Honig , M. , Moran , T. M. and Robinson , R. G. 1990 . Hemispheric asymmetry in behavioural response to D-1 and D-2 receptor agonists in the nucleus accumbens . Brain Research , 533 : 286 – 291 .
  • Black , R. S. and Robinson , R. G. 1985 . Intracortical 5,7-dihydroxytryptamine depletes brain serotonin concentrations without affecting spontaneous activity . Pharmacology Biochemistry and Behaviour , 22 : 327 – 331 .
  • Carli , M. , Lazarova , M. , Tatarczynska , E. and Samanin , R. 1992 . Stimulation of 5-HT1A receptors in the dorsal hippocampus impairs acquisition and performance of a spatial task in a water maze . Brain Research , 595 : 50 – 56 .
  • Carli , M. and Samanin , R. 1992 . 8-Hydroxy-2(di-n-propylamino) tetralin, impairs spatial learning in a water maze: Role of postsynaptic 5-HT1A reseptors . British Journal of Pharmacology , 105 : 720 – 726 .
  • Chalmers , D. T. and Watson , S. J. 1991 . Comparative anatomical distribution of 5-HT1A receptor mRNA and 5-HT1A binding in rat brain: A combined in situ hybridisation/in vitro receptor autoradiographic study . Brain Research , 561 : 51 – 60 .
  • Claustre , Y. , Rouquier , L. , Serrano , A. , Benavides , J. and Scatton , B. 1991 . Effect of the putative 5-HT1A receptor antagonist NAN-190 on rat brain serotonergic transmission . European Journal of Pharmacology , 204 : 71 – 77 .
  • Corradetti , R. , Ballerini , L. , Pugliese , A. M. and Pepeu , G. 1992 . Serotonin blocks the long-term potentiation induced by primed burst stimulation in the CA1 region of rat hippocampal slices . Neuroscience , 46 : 511 – 518 .
  • Denenberg , V. H. , Garbanati , J. , Sherman , G. , Yutzey , D. A. and Kaplan , R. 1978 . Infantile stimulation induces brain lateralisation in rats . Science , 210 : 1150 – 1152 .
  • Dewberry , R. G. , Lipsey , J. R. , Saad , K. and Moran , T. H. 1986 . Lateralised response to cortical injury in the rats: Interhemispheric interaction . Behavioural Neuroscience , 100 ( 4 ) : 556 – 562 .
  • Diamond , M. C. , Johnson , R. E. and Ingham , C. A. 1975 . Morphological changes in the young, adult and aging rat cerebral cortex, hippocampus and diencephalon . Behavioural Biology , 14 : 163 – 164 .
  • Dluzen , D. and Kreutzberg , J. 1996 . Norepinephrine is lateralised within the olfactory bulbs of male mice . Journal of Neurochemistry , 66 : 1222 – 1226 .
  • Edegawa , Y. , Saito , H. and Abe , K. 1998 . 5-HT1A receptor-mediated inhibition of long-term potentiation in rat visual cortex . European Journal of Pharmacology , 349 : 221 – 224 .
  • Edagawa , Y. , Saito , H. and Abe , K. 1999 . Stimulation of the 5-HT1A receptor selectively suppresses NMDA receptor-mediated synaptic excitation in the rat visual cortex . Brain Research , 827 : 225 – 228 .
  • Egashira , N. , Yano , A. , Ishigami , N. , Mishima , K. , Iwasaki , K. Fujioka , M. 2006 . Investigation of mechanisms mediating 8-OH-DPAT-induced impairment of spatial memory: Involvement of 5-HT1A receptors in the dorsal hippocampus in rats . Brain Research , 1069 ( 1 ) : 54 – 62 .
  • Fillion , G. 1983 . “ 5-Hydroxytryptamine receptors in brain ” . In Handbook of psychopharmacology: Vol. 17. Biochemical studies of CNS receptors , Edited by: Iversen , L. L. , Iversen , S. D. and Snyder , S. H. 139 – 166 . New York : Plenum .
  • Fletcher , A. , Cliffe , I. A. and Dourish , C. T. 1993 . Silent 5-HT1A receptor antagonists: Utility as research tools and therapeutic agents . Trends in Pharmacological Sciences , 14 : 441 – 448 .
  • Gordon , J. A. , Lacefield , C. O. , Kentros , C. G. and Hen , R. 2005 . State-dependent alterations in hippocampal oscillations in serotonin 1A receptor-deficient mice . Journal of Neuroscience , 25/28 : 6509 – 6519 .
  • Granado , N. , Ortiz , O. , Suárez , L. M. , Martín , E. D. , Ceña , V. , Solís , J. M. et al. (in press) . D1 but not D5 dopamine receptors are critical for LTP, spatial learning, and LTP-induced arc and zif268 expression in the hippocampus . Cerebral Cortex . [Advance access published online on March 29, 2007.]
  • Halpern , M.E. , Güntürkün , O. , Hopkins , W. D. and Rogers , L. J. 2005 . Lateralisation of the vertebrate brain: Taking the side of model systems . The Journal of Neuroscience , 25 ( 45 ) : 10351 – 10357 .
  • Hoyer , D. and Martin , G. R. 1997 . 5-HT receptor classification and nomenclature: Towards a harmonization with the human genome . Neuropharmacology , 36 : 419 – 428 .
  • Izquierdo , I. 1989 . Behavioural drug actions and brain lateralisation . Trends in Pharmacological Sciences , 10 ( 9 ) : 344 – 345 .
  • Jacobs , B. L. and Fornal , C. A. 1997 . “ Physiology and pharmacology of brain serotoninergic neurons ” . In Serotoninergic neurons and 5-HT receptors in the CNS , Edited by: Baumgarten , H. G. and Gothert , M. 91 – 116 . Berlin : Springer .
  • Kawakami , R. , Shinohara , Y. , Kato , Y. , Sugiyama , H. , Shigemoto , R. and Ito , I. 2003 . Asymmetrical allocation of NMDA receptor epsilon2 subunits in hippocampal circuitry . Science , 300 ( 5621 ) : 990 – 994 .
  • Kolb , B. , Sutherland , R. J. , Nonneman , A. J. and Whishaw , I. Q. 1982 . Asymmetry with cerebral hemisphere of the rat, mouse, rabbit and cat: The right hemisphere is larger . Experimental Neurology , 78 : 348 – 359 .
  • Kubos , K. L. , Moran , T. H. and Robinson , R. G. 1987 . Differential and asymmerrical behavioural effects of electrolytic or 6- hydroxydopamine lesions in the nucleus accumbens . Brain Research , 401 : 147 – 151 .
  • Lemon , N. and Manahan-Vaughan , D. 2006 . Dopamine D1/D5 receptors gate the acquisition of novel information through hippocampal long-term potentiation and long-term depression . The Journal of Neuroscience , 26 ( 29 ) : 7723 – 7729 .
  • Lisman , J. E. and Grace , A. A. 2005 . The hippocampal–VTA loop: Controlling the entry of information into long-term memory . Neuron , 46 : 703 – 713 .
  • Lister , J. P. , Tonkiss , J. , Blatt , G. J. , Kemper , T. L. , DeBassio , W. A. Galler , J. R. 2006 . Asymmetry of neuron numbers in the hippocampal formation of prenatally malnourished and normally nourished rats: A stereological investigation . Hippocampus , 16 : 946 – 958 .
  • Lüttgen , M. , Elvander , E. , Madjid , N. and Ögren , S. O. 2005 . Analysis of the role of 5-HT1A receptors in spatial and aversive learning in the rat . Neuropharmacology , 48 ( 6 ) : 830 – 852 .
  • Malenka , R. C. and Bear , M. F. 2004 . LTP and LTD: An embarrassment of riches . Neuron , 44 : 5 – 21 .
  • Meneses , A. 2003 . Pharmacological analysis of an associative learning task: 5-HT1 to 5-HT7 receptor subtypes function on a Pavlovian/instrumental autoshaped memory . Learning and Memory , 10 : 363 – 372A .
  • O'Carroll , C. M. and Morris , R. G. 2004 . Heterosynaptic co-activation of glutamatergic and dopaminergic afferents is required to induce persistent long-term potentiation . Neuropharmacology , 47 : 324 – 332 .
  • Pearlson , G. D. and Robinson , R. G. 1981 . Suction lesions of the frontal cerebral cortex in the rat induce asymmetrical behavioural and catecholaminergic responses . Brain Research , 213 : 233 – 242 .
  • Pellegrino , L. J. and Cushman , A. J. 1967 . A stereotaxic atlas of the rat brain , New York : Appleton-Century-Crofts .
  • Petkov , V. D. , Belcheva , S. , Konstantinova , E. , Kehayov , R. , Petkov , V. V. and Hadjiivanova , C. 1994 . Participation of the serotoninergic system in the memory effects of ginkgo biloba L. and panax ginseng C. A. Mey . Phytotherapy Research , 8 : 470 – 477 .
  • Robinson , R. G. 1979 . Differential behavioural effects of right versus left hemispheria cerebral infarction: Evidence for cerebral lateralisation in the rat . Science , 205 : 707 – 710 .
  • Robinson , R. G. ( 1985 ). Lateralised behavioural and neurochemical consequences of unilateral brain injury in rats . In S. D. Glick Cerebral lateralisation in nonhuman species (pp. 136 – 155 ). New York : Academic Press Inc
  • Rogers , L. J. , Zucca , P. and Vallortigara , G. 2004 . Advantage of having a lateralised brain . Proceedings of the Royal Society, London B, Biological Sciences , 271 : S420 – S422 .
  • Rosen , G. D. , Finklestein , S. , Stoll , A. L. , Yutzey , D. and Denenbery , V. H. 1984 . Neurochemical asymmetries in the albino rat's cortex, striatum and nucleus accumbens . Life Sciences , 34 : 1143 – 1148 .
  • Sakai , N. and Tanaka , C. 1993 . Inhibitory modulation of long-term potentiation via the 5-HT1A receptor in slices of the rat hippocampal dentate gyrus . Brain Research , 613 : 326 – 330 .
  • Schechter , L. E. D. , Smith , L. , Rosenzweig-Lipson , S. , Sukoff , S. J. , Dawson , L. A. Marquis , K. 2005 . Lecozotan (SRA-333): A selective serotonin 1A receptor antagonist that enhances the stimulated release of glutamate and acetylcholine in the hippocampus and possesses cognitive-enhancing properties . Neuropharmacology, JPET , 314 : 1274 – 1289 .
  • Schneider , A. M. , Wilkins , E. , Firestone , A. , Everbach , E. C. , Naylor , J. C. and Simson , P. E. 2003 . Enhanced retention in the passive-avoidance task by 5-HT(1A) receptor blockade is not associated with increased activity of the central nucleus of the amygdala . Learning and Memory , 10 ( 5 ) : 394 – 400 .
  • Tang , A. C. 2003 . “ A hippocampal theory of cerebral lateralisation ” . In The asymmetrical brain , Edited by: Hugdahl , K. and Davidson , R. 37 – 68 . Cambridge, MA : MIT Press .
  • Tang , A. C. , Akers , K. G. , Reeb , B. C. , Romeo , R. D. and McEwen , B. S. 2006 . Programming social, cognitive, and neuroendocrine development by early exposure to novelty . Proceedings of the National Academy of sciences of the USA , 103 : 15716 – 15721 .
  • Tang , A. C. and Reeb , B. C. 2004 . Neonatal novelty exposure, dynamics of brain asymmetry, and social recognition memory . Developmental Psychobiology , 44 : 84 – 93 .
  • Tang , A. C. , Reeb , B. C. , Romeo , R. D. and McEwen , B. S. 2003 . Modification of social memory, hypothalamic-pituitary adrenal axis, and brain asymmetry by neonatal novelty exposure . Journal of Neuroscience , 23 : 8254 – 8260 .
  • Vallortigara , G. and Rogers , L. J. 2005 . Survival with an asymmetrical brain: Advantages and disadvantages of cerebral lateralisation . Behavioural and Brain Sciences , 28 : 575 – 633 .
  • Warburton , E. C. , Harrison , A. A. , Robbins , T. W. and Everitt , B. J. 1997 . Contrasting effects of systemic and intracerebral infusions of the 5-HT1A receptor agonist 8-OH-DPAT . Behavioural Brain Research , 84 : 247 – 258 .
  • Williams , A. R. and Dourish , C. T. 1992 . Effects of the putative 5-HT1A receptor antagonist NAN-190 on free feeding and on feeding induced by the 5-HT1A receptor agonist 8-OH-DPAT in the rat . European Journal of Pharmacology , 219 : 105 – 112 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.