Noradrenergic denervation facilitates the release of acetylcholine and serotonin in the hippocampus: towards a mechanism underlying upregulations described in MCI patients.
HENEKA, Michael
2009 • In Experimental Neurology, 217 (2), p. 237 - 239
HENEKA, Michael ; Department of Neurology, University of Bonn, Sigmund-Freud-Strasse 25, 53105 Bonn, Germany. michael.heneka@ukb.uni-bonn.de
Co-auteurs externes :
yes
Langue du document :
Anglais
Titre :
Noradrenergic denervation facilitates the release of acetylcholine and serotonin in the hippocampus: towards a mechanism underlying upregulations described in MCI patients.
Aston-Jones G. Brain structures and receptors involved in alertness. Sleep Med. 6 (2005) S3-S7
Berridge C.W., and Waterhouse B.D. The locus coeruleus-noradrenergic system: modulation of behavioral state and state-dependent cognitive processes. Brain Res. Rev. 42 (2003) 33-84
Collier T.J., Gash D.M., and Sladek J.R. Transplantation of norepinephrine neurons into aged rats improves performance of a learned task. Brain Res. 448 (1988) 77-87
Dekosky S.T., Ikonomovic M.D., Styren S.D., Beckett L., Wisniewski S., Bennett D.A., Cochran E.J., Kordower J.H., and Mufson E.J. Upregulation of choline acetyltransferase activity in hippocampus and frontal cortex of elderly subjects with mild cognitive impairment. Ann. Neurol. 51 (2002) 145-155
Foote S.L., Bloom F.E., and Aston-Jones G. Nucleus locus ceruleus: new evidence of anatomical and physiological specificity. Physiol. Rev. 63 (1983) 844-914
Forno L.S. Pathology of parkinsonism. J. Neurosurg. 266-271 (1966)
Forstl H., Levy R., Burns A., Luthert P., and Cairns N. Disproportionate loss of noradrenergic and cholinergic neurons as cause of depression in Alzheimer's disease - a hypothesis. Pharmacopsychiatry 27 (1994) 11-15
Grudzien A., Shaw P., Weintraub S., Bigio E., Mash D.C., and Mesulam M.M. Locus coeruleus neurofibrillary degeneration in aging, mild cognitive impairment and early Alzheimer's disease. Neurobiol. Aging 28 (2007) 327-335
Grzanna R., Berger U., Fritschy J.M., and Geffard M. Acute action of Dsp-4 on central norepinephrine axons - biochemical and immunohistochemical evidence for differential-effects. J. Histochem. Cytochem. 37 (1989) 1435-1442
Heneka M.T., Ramanathan M., Jacobs A.H., Dumitrescu-Ozimek L., Bilkei-Gorzo A., Debeir T., Sastre M., Galldiks N., Zimmer A., Hoehn M., Heiss W.D., Klockgether T., and Staufenbiel M. Locus Ceruleus degeneration promotes Alzheimer pathogenesis in amyloid precursor protein 23 transgenic mice. J. Neurosci. 26 (2006) 1343-1354
Jackisch R., Gansser S., and Cassel J.C. Noradrenergic denervation facilitates the release of acetylcholine and serotonin in the hippocampus: Towards a mechanism underlying upregulations described in MCI patients?. Exp. Neurol. 213 (2008) 345-353
Jones B.E., and Yang T.Z. The efferent projections from the reticular-formation and the Locus Coeruleus studied by anterograde and retrograde axonal-transport in the rat. J. Comp. Neurol. 242 (1985) 56-92
Lyness S.A., Zarow C., and Chui H.C. Neuron loss in key cholinergic and aminergic nuclei in Alzheimer disease: a meta-analysis. Neurobiol. Aging 24 (2003) 1-23
Marien M.R., Colpaert F.C., and Rosenquist A.C. Noradrenergic mechanisms in neurodegenerative diseases: a theory. Brain Res. Brain Res. Rev. 45 (2004) 38-78
Matthews K.L., Chen C.P., Esiri M.M., Keene J., Minger S.L., and Francis P.T. Noradrenergic changes, aggressive behavior, and cognition in patients with dementia. Biol. Psychiatry 51 (2002) 407-416
Olpe H.R., Laszlo J., Dooley D.J., Heid J., and Steinmann M.W. Decreased activity of Locus Coeruleus neurons in the rat after Dsp-4 treatment. Neurosci. Lett. 40 (1983) 81-84
Petersen R.C., Doody R., Kurz A., Mohs R.C., Morris J.C., Rabins P.V., Ritchie K., Rossor M., Thal L., and Winblad B. Current concepts in mild cognitive impairment. Arch. Neurol. 58 (2001) 1985-1992
Siniscalchi A., Badini I., Bianchi C., and Beani L. Monoamines modulate the electrically-evoked efflux of H-3 choline from slices of guinea-pig nucleus basalis magnocellularis. Naunyn-Schmiedebergs Arch. Pharmacol. 350 (1994) 10-14
Smiley J.F., Subramanian M., and Mesulam M.M. Monoaminergic-cholinergic interactions in the primate basal forebrain. Neuroscience 93 (1999) 817-829
Truchot L., Costes S.N., Zimmer L., Laurent B., Le Bars D., Thomas-Anteion C., Croisile B., Mercier B., Hermier M., Vighetto A., and Krolak-Salmon P. Up-regulation of hippocampal serotonin metabolism in mild cognitive impairment. Neurology 69 (2007) 1012-1017
Zarow C., Lyness S.A., Mortimer J.A., and Chui H.C. Neuronal loss is greater in the locus coeruleus than nucleus basalis and substantia nigra in Alzheimer and Parkinson diseases. Arch. Neurol. 60 (2003) 337-341
Zornetzer S.F. Catecholamine system involvement in age-related memory dysfunction. Ann. N. Y. Acad. Sci. 444 (1985) 242-254