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Olfactory tubercle

Localization CNS Hippocampus (CA1, CA3, DG), septum, amygdala, raphe nuclei CNS Striatum, hippocampus (CA1), substantia nigra, globus pallidus, superior colliculi, spinal cord, raphe nuclei CNS like 5-HT1B but at lower densities. CNS Caudate putamen, parietal cortex, fronto-parietal motor cortex, olfactory tubercle, amygdala CNS Cortex, Thalamus, olfactory bulb (rat), claustrum (g-pig), hippocampus (CA3), spinal cord. [Pg.1121]

Localisation CA/S Hippocampus (CA1, CA3, DG), cortex, cerebellum (granular layer), olfactory bulb, habenula, spinal cord CA/S Caudate putamen, olfactory tubercle, nucleus accumbens, cortex, hippocampus (CA1, CA3, DG) CA/S Hippocampus (CA1, CA2), hypothalamus, thalamus, superior colliculus, raphe nuclei... [Pg.1123]

Figure 7.1 Dopamine neuronal pathways. AMYG, amygdala CN, caudate nucleus MFB, medial forebrain bundle NcA, nucleus accumbers OT, olfactory tubercle PUT, putamen SN, substantia nigra. For full details see text and Moore and Bloom (1978) and Lindvall and Bjorkland (1978)... Figure 7.1 Dopamine neuronal pathways. AMYG, amygdala CN, caudate nucleus MFB, medial forebrain bundle NcA, nucleus accumbers OT, olfactory tubercle PUT, putamen SN, substantia nigra. For full details see text and Moore and Bloom (1978) and Lindvall and Bjorkland (1978)...
Di Highest expression in human striatum and nucleus accumbens and olfactory tubercle but also some in cortex and hypothalamus. In the striatum 50% of medium sized striato-nigral neurons, which also express substance P, express them. They are... [Pg.147]

D2 Mostly in striatum, nucleus accumbens and olfactory tubercle but also on neuron cell bodies in substantia nigra and ventral tegmentum where they are the autoreceptors for locally (dendritic) released DA. The loss of specific D2 antagonist binding in the striatum after lesions of the afferent nigro-striatal tract indicates their presynaptic autoreceptor role on terminals there. Other lesion studies have also established D2 receptors on other inputs such as the cortico striatal tract. [Pg.148]

D3 Much less abundant than D2. Mainly in limbic regions (nucleus accumbens and olfactory tubercle) but also in hypothalamus. Some in caudate and cortex and also expressed on DA neurons in substantia nigra, presumably as autoreceptors. No effect on adenylate cyclase but inhibits Ca + entry (autoreceptor role). High affinity for DA (Ali 25nM). [Pg.148]

As shown in table 2 and figure 9, marked decreases in serotonin uptake sites were observed following MDMA administration in all regions of eaudate putamen, olfactory tubercle, endopiriform nueleus, islands of Calleja, and nucleus aeeumbens. Within the caudate putamen, some time-dependent... [Pg.213]

O Virtually all abused substances appear to activate the same brain reward pathway. Key components of the reward pathway are the dopamine (DA) mesocorticolimbic system that projects from the ventral tegmental area (VTA) and the nucleus accumbens (NA) to the prefrontal cortex, the amygdala, and the olfactory tubercle (Figs. 33-3 and 33-4).5 Animal studies... [Pg.527]

Olfactory system olfactory tubercle Limbic system... [Pg.257]

SpyrakiC., SealfonS. Regulation of dopamine D2 receptor mRNA expression in the olfactory tubercle by cocaine. Mol. Brain Res. 19 313, 1993. [Pg.101]

Figure 7.8 Long-term effects of MDMA on tissue levels of 5-HT (left panel) and DA (right panel) in brain regions. Male rats received three i.p. injections of 1.5 or 7.5 mg/kg MDMA, one dose every 2 h. Saline was administered on the same schedule. Rats were killed 2 weeks after injections, brain regions were dissected, and tissue 5-HT and DA were assayed by HPLC-ECD.112 Data are mean SEM expressed as percent of saline-treated control values for each region, N = 5 rats/group. Control values of 5-HT and DA were 557 24 and 28 4 pg/mg tissue for frontal cortex (CTX), 429 36 and 10,755 780 pg/mg tissue for striatum (STR), and 1174 114 and 4545 426 pg/mg tissue for olfactory tubercle (OT). Significant compared to saline-injected control for each region (P < 0.05 Duncan s). Figure 7.8 Long-term effects of MDMA on tissue levels of 5-HT (left panel) and DA (right panel) in brain regions. Male rats received three i.p. injections of 1.5 or 7.5 mg/kg MDMA, one dose every 2 h. Saline was administered on the same schedule. Rats were killed 2 weeks after injections, brain regions were dissected, and tissue 5-HT and DA were assayed by HPLC-ECD.112 Data are mean SEM expressed as percent of saline-treated control values for each region, N = 5 rats/group. Control values of 5-HT and DA were 557 24 and 28 4 pg/mg tissue for frontal cortex (CTX), 429 36 and 10,755 780 pg/mg tissue for striatum (STR), and 1174 114 and 4545 426 pg/mg tissue for olfactory tubercle (OT). Significant compared to saline-injected control for each region (P < 0.05 Duncan s).
Distribution Caudate/putamen, nucleus Hippocampus, accumbens, olfactory hypothalamus, tubercle, cerebral cortex cerebral cortex Caudate/putamen, nucleus accumbens, midbrain Olfactory tubercle, hypothalamus, Frontal cortex, medulla, midbrain, nucleus accumbens... [Pg.218]

Claustrum, cerebral cortex, olfactory tubercle, striatum, nucleus accumbens... [Pg.242]

Hippocampus, striatum, olfactory tubercle, substantia nigra ... [Pg.242]

AC5 is enriched in the brain and is especially localized to the striatum and related structures (e.g. nucleus accumbens, olfactory tubercle) that are innervated by... [Pg.363]

IHC shows ethanol induction of CYP2E1 in olfactory bulbs, frontal cortex, hippocampus, and cerebellum of male rats nicotine induces in olfactory bulbs, frontal cortex, olfactory tubercle, cerebellum, and brainstem. More CYP2E1 found in brains from human alcoholics and alcoholic smokers in granular cells of the dentate gyrus, pyramidal cells of CA2 and CA3 hippocampus, and cerebellar Purkinje cells. More CYP2E1 In frontal cortices of alcoholic smokers versus all nonsmokers. CYP2E1 in cultured human neuroblastoma cells Induced by nicotine (Howard et al., 2003). [Pg.60]

Heimer L, Zahm DS, ChurchUl L, Kalivas PW, Wohltman C (1991) Specificity in the projection patterns of accumbal core and medial shell in the rat. Neuroscience 41 89-125 Hemby SE, No C, Koves TR, Smith JE, Dworkin SI (1997) Differences in extracellular dopamine concentration in the nucleus accumbens during response-dependent and response-independent cocaine administration in the rat. Psychopharmacology 133 7-16 Hildebrand BE, Nomikos GG, Hertel P, Sclrilstrom B, Svensson TH (1998) Reduced dopamine output in the nucleus accumbens but not the prefrontal cortex in rats displaying mecamylamine-precipitated nicotine withdrawal syndrome. Brain Res 779 214-225 Ikemoto S (2003) Involvement of the olfactory tubercle in cocaine reward intracranial selfadministration studies. J Neurosd 23 9305-9311... [Pg.231]


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