Adenosine A2A receptor blockade prevents memory dysfunction caused by β-amyloid peptides but not by scopolamine or MK-801

被引:80
作者
Cunha, Geanne M. A. [1 ]
Canas, Paula M. [1 ]
Melo, Carolina S.
Hockemeyer, Joerg [2 ]
Mueller, Christa E. [2 ]
Oliveira, Catarina R. [1 ]
Cunha, Rodrigo A. [1 ]
机构
[1] Univ Coimbra, Fac Med, Inst Biochem, Ctr Neurosci Coimbra, P-3004504 Coimbra, Portugal
[2] Univ Bonn, Inst Pharmazeut, D-5300 Bonn, Germany
关键词
adenosine; A(2A) receptor; beta-amyloid; Alzheimer's disease; memory; scopolamine; MK-801; NMDA; locomotion;
D O I
10.1016/j.expneurol.2007.11.013
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Adenosine A(2A) receptor antagonists alleviate memory deficits caused by aging or by administration of beta-amyloid peptides in rodents, which is in accordance with the beneficial effects of caffeine consumption (an adenosine receptor antagonist) on memory performance in aged individuals and in preventing Alzheimer's disease. We now tested if A(2A) receptor blockade affords a general beneficial effect in different experimental paradigms disturbing memory performance in rodents. The beta-amyloid fragment present in patients with Alzheimer's disease (A beta(1-42), 2 nmol, icv) decreased spontaneous alternation in the Y-maze after 15 days (29%) to an extent similar to the decrease of memory performance caused by scopolamine (2 mg/kg, ip) or MK-801 (0.25 mg/kg, ip) after 30 min (28% and 39%, respectively). The selective A(2A) receptor antagonist SCH58261 (0.05 mg/kg, ip every 24 h, starting 30 min before the noxious stimuli) prevented A beta(1-42)-induced amnesia, but failed to modify scopolamine- or MK-801-induced amnesia. Similar conclusions were reached when testing another A(2A) receptor antagonist (KW6002, 3 mg/kg, ip). These results indicate that A(2A) receptors do not affect general processes of memory impairment but instead play a crucial role restricted to neurodegenerative conditions involving an insidious synaptic deterioration leading to memory dysfunction. (C) 2007 Elsevier Inc. All rights reserved.
引用
收藏
页码:776 / 781
页数:6
相关论文
共 34 条
[1]   DISSOCIATION OF DISINHIBITORY EFFECTS OF SCOPOLAMINE - STRAIN AND TASK FACTORS [J].
ANISMAN, H .
PHARMACOLOGY BIOCHEMISTRY AND BEHAVIOR, 1975, 3 (04) :613-618
[2]   Caffeine protects Alzheimer's mice against cognitive impairment and reduces brain β-amyloid production [J].
Arendash, G. W. ;
Schleif, W. ;
Rezai-Zadeh, K. ;
Jackson, E. K. ;
Zacharia, L. C. ;
Cracchiolo, J. R. ;
Shippy, D. ;
Tan, J. .
NEUROSCIENCE, 2006, 142 (04) :941-952
[3]   A focus on the synapse for neuroprotection in Alzheimer disease and other dementias [J].
Coleman, P ;
Federoff, H ;
Kurlan, R .
NEUROLOGY, 2004, 63 (07) :1155-1162
[4]   SYNAPTIC PLASTICITY - THE ROLE OF NMDA RECEPTORS IN LEARNING AND MEMORY [J].
COLLINGRIDGE, G .
NATURE, 1987, 330 (6149) :604-605
[5]   Neuroprotection by adenosine in the brain: From A1 receptor activation to A2A receptor blockade [J].
Cunha R.A. .
Purinergic Signalling, 2005, 1 (2) :111-134
[6]   Inactivation of adenosine A2A receptor impairs long term potentiation in the accumbens nucleus without altering basal synaptic transmission [J].
D'Alcantara, P ;
Ledent, C ;
Swillens, S ;
Schiffmann, SN .
NEUROSCIENCE, 2001, 107 (03) :455-464
[7]   Chronic treatment with caffeine blunts the hyperlocomotor but not cognitive effects of the N-methyl-D-aspartate receptor antagonist MK-801 in mice [J].
Dall'Igna, OP ;
da Silva, A ;
Dietrich, MO ;
Hoffman, A ;
de Oliveira, RV ;
Souza, DO ;
Lara, DR .
PSYCHOPHARMACOLOGY, 2003, 166 (03) :258-263
[8]   Caffeine and adenosine A2a receptor antagonists prevent β-amyloid (25-35)-induced cognitive deficits in mice [J].
Dall'Igna, Oscar P. ;
Fett, Paulo ;
Gomes, Marcio W. ;
Souza, Diogo O. ;
Cunha, Rodrigo A. ;
Lara, Diogo R. .
EXPERIMENTAL NEUROLOGY, 2007, 203 (01) :241-245
[9]   EFFECTS OF DELTA-9-THC, LSD-25 AND SCOPOLAMINE ON CONTINUOUS, SPONTANEOUS ALTERNATION IN Y-MAZE [J].
DREW, WG ;
MILLER, LL ;
BAUGH, EL .
PSYCHOPHARMACOLOGIA, 1973, 32 (02) :171-182
[10]   THE N-METHYL-D-ASPARTATE ANTAGONISTS PHENCYCLIDINE, KETAMINE AND DIZOCILPINE AS BOTH BEHAVIORAL AND ANATOMICAL MODELS OF THE DEMENTIAS [J].
ELLISON, G .
BRAIN RESEARCH REVIEWS, 1995, 20 (02) :250-267