Cannabinoid modulation of electrically evoked pH and oxygen transients in the nucleus accumbens of awake rats

被引:22
作者
Cheer, JF
Wassum, KM
Wightman, RM
机构
[1] Univ N Carolina, Dept Chem, Chapel Hill, NC 27599 USA
[2] Univ N Carolina, Ctr Neurosci, Chapel Hill, NC 27599 USA
关键词
blood flow and metabolism; cannabinoids; cyclic voltammetry; dopamine; nucleus accumbens;
D O I
10.1111/j.1471-4159.2006.03860.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Cannabinoid receptors have been implicated in the regulation of blood flow in the cerebral vasculature. Because the nucleus accumbens (NAc) shows high levels of central cannabinoid receptor 1 (CB1) expression we examined the effects of cannabinoids on the local transient alkaline shifts and increases in extracellular oxygen induced by electrical stimulation of the medial forebrain bundle (MFB) in conscious animals. These changes result from increases in cerebral blood flow (CBF) and metabolism in the NAc that are evoked by the stimulation. Oxygen and pH changes were monitored using fast-scan cyclic voltammetry at carbon-fiber microelectrodes in the NAc of freely moving rats. Administration of the cannabinoid receptor agonist WIN55,212-2 potently inhibited extracellular oxygen and pH changes, an effect that was reversed and prevented by pre-treatment with the CB1 receptor antagonists SR141716A and AM251. The effects on pH following WIN55,212-2 were similar to those following nimodipine, a recognized vasodilator. When AM251 was injected alone, the amplitude of electrically evoked pH shifts was unaffected. Administration of AM404 and VDM11, endocannabinoid transport inhibitors, partially inhibited pH transients in a CB1 receptor-dependent manner. The present findings suggest that CB1 receptor activation modulates changes in two well-established indices of local blood flow and metabolism resulting from electrically evoked activation of ascending fibers. Although endogenous cannabinoid tone alone is not sufficient to modify these responses, uptake blockade demonstrates that the system has the potential to exert CB1-specific effects similar to those of full agonists.
引用
收藏
页码:1145 / 1154
页数:10
相关论文
共 46 条
[1]   Cannabinoids enhance subsecond dopamine release in the nucleus accumbens of awake rats [J].
Cheer, JF ;
Wassum, KM ;
Heien, MLAV ;
Phillips, PEM ;
Wightman, RM .
JOURNAL OF NEUROSCIENCE, 2004, 24 (18) :4393-4400
[2]   Human brain capillary endothelium - 2-arachidonoglycerol (endocannabinoid) interacts with endothelin-1 [J].
Chen, Y ;
McCarron, RM ;
Ohara, Y ;
Bembry, J ;
Azzam, N ;
Lenz, FA ;
Shohami, E ;
Mechoulam, R ;
Spatz, M .
CIRCULATION RESEARCH, 2000, 87 (04) :323-327
[3]   Regulation and modulation of pH in the brain [J].
Chesler, M .
PHYSIOLOGICAL REVIEWS, 2003, 83 (04) :1183-1221
[4]   The endocannabinoid system and its therapeutic exploitation [J].
Di Marzo, V ;
Bifulco, M ;
De Petrocellis, L .
NATURE REVIEWS DRUG DISCOVERY, 2004, 3 (09) :771-784
[5]   Enhanced levels of endogenous cannabinoids in the globus pallidus are associated with a reduction in movement in an animal model of Parkinson's disease [J].
Di Marzo, V ;
Hill, MP ;
Bisogno, T ;
Crossman, AR ;
Brotchie, JM .
FASEB JOURNAL, 2000, 14 (10) :1432-1438
[6]   Anandamide and Delta(9)-THC dilation of cerebral arterioles is blocked by indomethacin [J].
Ellis, EF ;
Moore, SF ;
Willoughby, KA .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 1995, 269 (06) :H1859-H1864
[7]   The mechanisms controlling physiologically stimulated changes in rat brain glucose and lactate: A microdialysis study [J].
Fray, AE ;
Forsyth, RJ ;
Boutelle, MG ;
Fillenz, M .
JOURNAL OF PHYSIOLOGY-LONDON, 1996, 496 (01) :49-57
[8]   Role of endogenous cannabinoids in synaptic signaling [J].
Freund, TF ;
Katona, I ;
Piomelli, D .
PHYSIOLOGICAL REVIEWS, 2003, 83 (03) :1017-1066
[9]   Regional haemodynamic responses to the cannabinoid agonist, WIN 55212-2, in conscious, normotensive rats, and in hypertensive, transgenic rats [J].
Gardiner, SM ;
March, JE ;
Kemp, PA ;
Bennett, T .
BRITISH JOURNAL OF PHARMACOLOGY, 2001, 133 (03) :445-453
[10]   Cannabinoid CB1 receptor of cat cerebral arterial muscle functions to inhibit L-type Ca2+ channel current [J].
Gebremedhin, D ;
Lange, AR ;
Campbell, WB ;
Hillard, CJ ;
Harder, DR .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 1999, 276 (06) :H2085-H2093