938 resultados para dopamine receptors


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BACKGROUND Temporomandibular disorder (TMD) is a multifactorial syndrome related to a critical period of human life. TMD has been associated with psychological dysfunctions, oxidative state and sexual dimorphism with coincidental occurrence along the pubertal development. In this work we study the association between TMD and genetic polymorphisms of folate metabolism, neurotransmission, oxidative and hormonal metabolism. Folate metabolism, which depends on genes variations and diet, is directly involved in genetic and epigenetic variations that can influence the changes of last growing period of development in human and the appearance of the TMD. METHODS A case-control study was designed to evaluate the impact of genetic polymorphisms above described on TMD. A total of 229 individuals (69% women) were included at the study; 86 were patients with TMD and 143 were healthy control subjects. Subjects underwent to a clinical examination following the guidelines by the Research Diagnostic Criteria for Temporomandibular Disorders (RDC/TMD). Genotyping of 20 Single Nucleotide Polymorphisms (SNPs), divided in two groups, was performed by multiplex minisequencing preceded by multiplex PCR. Other seven genetic polymorphisms different from SNPs (deletions, insertions, tandem repeat, null genotype) were achieved by a multiplex-PCR. A chi-square test was performed to determine the differences in genotype and allelic frequencies between TMD patients and healthy subjects. To estimate TMD risk, in those polymorphisms that shown significant differences, odds ratio (OR) with a 95% of confidence interval were calculated. RESULTS Six of the polymorphisms showed statistical associations with TMD. Four of them are related to enzymes of folates metabolism: Allele G of Serine Hydoxymethyltransferase 1 (SHMT1) rs1979277 (OR = 3.99; 95%CI 1.72, 9.25; p = 0.002), allele G of SHMT1 rs638416 (OR = 2.80; 95%CI 1.51, 5.21; p = 0.013), allele T of Methylentetrahydrofolate Dehydrogenase (MTHFD) rs2236225 (OR = 3.09; 95%CI 1.27, 7.50; p = 0.016) and allele A of Methionine Synthase Reductase (MTRR) rs1801394 (OR = 2.35; 95CI 1.10, 5.00; p = 0.037). An inflammatory oxidative stress enzyme, Gluthatione S-Tranferase Mu-1(GSTM1), null allele (OR = 2.21; 95%CI 1.24, 4.36; p = 0.030) and a neurotransmission receptor, Dopamine Receptor D4 (DRD4), long allele of 48 bp-repeat (OR = 3.62; 95%CI 0.76, 17.26; p = 0.161). CONCLUSIONS Some genetic polymorphisms related to folates metabolism, inflammatory oxidative stress, and neurotransmission responses to pain, has been significantly associated to TMD syndrome.

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A central feature of drugs of abuse is to induce gene expression in discrete brain structures that are critically involved in behavioral responses related to addictive processes. Although extracellular signal-regulated kinase (ERK) has been implicated in several neurobiological processes, including neuronal plasticity, its role in drug addiction remains poorly understood. This study was designed to analyze the activation of ERK by cocaine, its involvement in cocaine-induced early and long-term behavioral effects, as well as in gene expression. We show, by immunocytochemistry, that acute cocaine administration activates ERK throughout the striatum, rapidly but transiently. This activation was blocked when SCH 23390 [a specific dopamine (DA)-D1 antagonist] but not raclopride (a DA-D2 antagonist) was injected before cocaine. Glutamate receptors of NMDA subtypes also participated in ERK activation, as shown after injection of the NMDA receptor antagonist MK 801. The systemic injection of SL327, a selective inhibitor of the ERK kinase MEK, before cocaine, abolished the cocaine-induced ERK activation and decreased cocaine-induced hyperlocomotion, indicating a role of this pathway in events underlying early behavioral responses. Moreover, the rewarding effects of cocaine were abolished by SL327 in the place-conditioning paradigm. Because SL327 antagonized cocaine-induced c-fos expression and Elk-1 hyperphosphorylation, we suggest that the ERK intracellular signaling cascade is also involved in the prime burst of gene expression underlying long-term behavioral changes induced by cocaine. Altogether, these results reveal a new mechanism to explain behavioral responses of cocaine related to its addictive properties.

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The complex etiology of schizophrenia has prompted researchers to develop clozapine-related multitargetstrategies to combat its symptoms. Here we describe a series of new 6-aminomethylbenzofuranones in aneffort to find new chemical structures with balanced affinities for 5-HT2 and dopamine receptors. Throughbiological and computational studies of 5-HT2A and D2 receptors, we identified the receptor serine residuesS3.36 and S5.46 as the molecular keys to explaining the differences in affinity and selectivity betweenthese new compounds for this group of receptors. Specifically, the ability of these compounds to establishone or two H-bonds with these key residues appears to explain their difference in affinity. In addition, wedescribe compound 2 (QF1004B) as a tool to elucidate the role of 5-HT2C receptors in mediating antipsychoticeffects and metabolic adverse events. The compound 16a (QF1018B) showed moderate to high affinitiesfor D2 and 5-HT2A receptors, and a 5-HT2A/D2 ratio was predictive of an atypical antipsychotic profile.

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Parmi les neuroleptiques disponibles, l'amisulpride est de plus en plus prescrit. De par son affinité sélective dose-dépendante aux récepteurs dopaminergiques, il est possible de moduler les effets de cette substance montrant des propriétés antidépressives à faible dose et agissant comme un puissant antipsychotique à forte dose. Toutefois, l'amisulpride induit une prolongation dose-dépendante de l'intervalle QT ce qui peut potentialiser la survenue d'arythmies ventriculaires, souvent fatales lorsque sa consommation est concomitante à celles d'autres médicaments ou stupéfiants allongeant l'intervalle QT. Cependant, la littérature scientifique demeure peu documentée en ce qui concerne la détermination de concentrations sanguines thérapeutiques, toxiques et létales. Après avoir présenté les propriétés pharmacodynamiques et pharmacocinétiques de l'amisulpride, nous nous proposons de définir plus précisément les seuils sanguins de concentrations thérapeutiques, toxiques et létales pour cette molécule illustrée par la revue des cas mortels impliquant l'amisulpride en Suisse romande depuis 2005. Among the available neuroleptic drugs, amisulpride is increasingly prescribed. Thanks to its dose-dependent selective affinity for dopamine receptors, it is possible to modulate the effects of this substance showing antidepressant properties at low dose and acting as a powerful antipsychotic at high dose. However, amisulpride induces a dose-dependent prolongation of the QT interval which may potentiate the occurrence of ventricular arrhythmias, often fatal when its consumption is concomitant with those of other drugs that prolong the QT interval. However, the scientific literature remains poorly documented with regard to the determination of therapeutic, toxic and lethal blood concentrations. After presenting the pharmacodynamic and pharmacokinetic properties of amisulpride, we propose to define more precisely the blood levels of therapeutic, toxic and lethal concentrations for this molecule illustrated by a review of the fatal cases involving amisulpride in Western Switzerland since 2005.

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Dopaminergic, serotonergic and noradrenergic nuclei form the trimonoamine modulating system (TMMS). This system modulates emotional/motivational activities mediated by the limbic circuitry, where glutamate is the major excitatory neurotransmitter. Two main concepts are the basis of this review. First, since 1950 and the discovery of the antipsychotic activity of the dopamine D2 receptor antagonist chlorpromazine, it appears that drugs that can modulate the TMMS possess therapeutic psychiatric properties. Second, the concept of glutamate/trimonoamine imbalance in the cortico-striato-thalamo-cortical loop that has been so successful in explaining the pathophysiology of Parkinson disease has been applied in the pathophysiology of schizophrenia. This review will focus on the complex interactions between the fast synaptic glutamatergic transmission and the TMMS in specific parts of the limbic lobe and we will try to link these interactions to some psychiatric disorders, mainly depression, schizophrenia and drug addiction.

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Dopamine release in the prefrontal cortex plays a critical role in cognitive function such as working memory, attention and planning. Dopamine exerts complex modulation on excitability of pyramidal neurons and interneurons, and regulates excitatory and inhibitory synaptic transmission. Because of the complexity of this modulation, it is difficult to fully comprehend the effect of dopamine on neuronal network activity. In this study, we investigated the effect of dopamine on local high-frequency oscillatory neuronal activity (in β band) in slices of the mouse anterior cingulate cortex (ACC). We found that dopamine enhanced the power of these oscillations induced by kainate and carbachol, but did not affect their peak frequency. Activation of D2R and in a lesser degree D1R increased the oscillation power, while activation of D4R had no effect. These high-frequency oscillations in the ACC relied on both phasic inhibitory and excitatory transmission and functional gap junctions. Thus, dopamine released in the ACC promotes high-frequency synchronized local cortical activity which is known to favor information transfer, fast selection and binding of distributed neuronal responses. Finally, the power of these oscillations was significantly enhanced after degradation of the perineuronal nets (PNNs) enwrapping most parvalbumin interneurons. This study provides new insights for a better understanding of the abnormal prefrontal gamma activity in schizophrenia (SZ) patients who display prefrontal anomalies of both the dopaminergic system and the PNNs.

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Dopamine receptors are involved in the expression of grooming behavior. The pregnancy-induced increase in self-licking observed in rats is important for mammary gland development and lactation. This study focuses on the role of dopamine receptor subtypes in grooming behavior of virgin and pregnant female rats. General and mammary gland grooming were measured in virgin rats treated with 0.25 mg/kg of the D1-like agonist SKF-81297 and antagonist SKF-83566 and the D2-like agonist lisuride and antagonist sulpiride. The effects of 0.01 and 0.25 mg/kg doses of the same agonists and antagonists were evaluated in pregnant rats as well. In virgin animals both SKF-83566 and sulpiride treatments significantly reduced the time spent in general grooming, while none of the dopamine agonists was able to significantly change any parameter of general grooming. Time spent in grooming directed at the mammary glands was not affected significantly by any of the drug treatments in virgin rats. All drugs tested significantly decreased the frequency of and the time spent with general grooming, while SKF-81297 treatment alone did not significantly reduce the duration of mammary gland grooming in pregnant rats. These data show that in female rats the behavioral effects of D1-like and D2-like dopamine receptor stimulation and blockade differ according to physiological state. The results suggest that dopamine receptors may play specific roles modulating grooming behavior in pregnant rats. Since grooming of the mammary gland during pregnancy may influence lactation, this aspect is relevant for studies regarding the perinatal use of dopamine-related drugs.

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Ginkgo biloba extract EGb 761 has been reported to have therapeutic effects which have been attributed to anti-oxidant and free radical-scavenging activities, including a direct action on nitric oxide production. L G-nitro-arginine (L-NOARG), a nitric oxide synthase inhibitor, and haloperidol, a drug that blocks dopamine receptors, are both known to induce catalepsy in rodents. Nitric oxide has been shown to influence dopaminergic transmission in the striatum. The purpose of the present study was to evaluate the effect of the extract obtained from leaves of Ginkgo biloba tree EGb 761 on catalepsy induced by haloperidol or by L-NOARG. Albino Swiss mice (35-45 g, N = 8-12) received by gavage a single or repeated oral dose (twice a day for 4 days) of EGb 761 followed by ip injection of haloperidol or L-NOARG. After the treatments, the animals were submitted to behavioral evaluation using the catalepsy test. Acute treatment with 80 mg/kg EGb did not modify the catalepsy induced by L-NOARG but, the dose of 40 mg/kg significantly enhanced haloperidol-induced catalepsy measured at the 10th min of the test. After repeated treatment with 80 mg/kg EGb 761, a significant increase in the cataleptic effect produced by both haloperidol and L-NOARG was observed. These data show that repeated EGb 761 administration increases the effects of drugs that modify motor behavior in mice. Since the catalepsy test has predictive value regarding extrapyramidal effects, the possibility of pharmacological interactions between haloperidol and Ginkgo biloba extracts should be further investigated in clinical studies.

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The developmental remodelling of motivational systems that underlie drug dependence and addiction may account for the greater frequency and severity of drug abuse in adolescence compared to adulthood. Recent advances in animal models have begun to identify the morphological and the molecular factors that are being remodelled, but little is known about the culmination of these factors in altered sensitivity to psycho stimulant drugs, like amphetamine, in adolescence. Amphetamine induces potent locomotor activating effects in rodents through increased dopamine release in the mesocorticolimbic dopamine system, which makes locomotor activity a useful behavioural marker of age differences in amphetamine sensitivity. The aim of the thesis was to investigate the neural basis for age differences in amphetamine sensitivity with a focus on the nucleus accumbens and the medial prefrontal cortex, which initiate and regulate amphetamine-induced locomotor activity, respectively. In study 1, I found pre- and post- pubertal adolescent rats to be less active (i.e., hypoactive) than adults to a first injection of 0.5, but not of 1.5, mg/kg of intraperitonealy (i.p.) administered amphetamine. Although initially hypoactive, only adolescent rats exhibited an increase in activity to a second injection of amphetamine given 24 h later, indicating that adolescents may be more sensitive to the rapid changes in amphetamineinduced plasticity than adults. Given that the locomotor activating effects of amphetamine are initiated in the nucleus accumbens, age differences in response to direct injections of amphetamine into this brain region were investigated in study 2. In contrast to i.p. injections, adolescents were more active than adults when amphetamine was given directly into the nucleus accumbens, indicating that hypo activity may be attributed to the development of regulatory regions outside of the accumbens. The medial prefrontal cortex (mPFC) is a key regulator of the locomotor activating effects of amphetamine that undergoes extensive remodelling in adolescence. In study 3, I found that an i.p. injection of 1.5, and not of 0.5, mg/kg of amphetamine resulted in a high expression of c-fos, a marker of neural activation, in the pre limbic mPFC only in pre-pubertal adolescent rats. This finding suggests that the ability of adolescent rats to overcome hypo activity at the 1.5 mg/kg dose may involve greater activation of the prelimbic mPFC compared to adulthood. In support of this hypothesis, I found that pharmacological inhibition of prelimbic D 1 dopamine receptors disrupted the locomotor activating effects of the 1.5 mg/kg dose of amphetamine to a greater extent in adolescent than in adult rats. In addition, the stimulation of prelimbic D 1 dopamine receptors potentiated locomotor activity at the 0.5 mg/kg dose of amphetamine only in adolescent rats, indicating that the prelimbic D1 dopamine receptors are involved in overcoming locomotor hypoactivity during adolescence. Given my finding that the locomotor activating effects of amphetamine rely on slightly different mechanisms in adolescence than in adulthood, study 4 was designed to determine whether the lasting consequences of drug use would also differ with age. A short period of pre-treatment with 0.5 mg/kg of amphetamine in adolescence, but not in adulthood, resulted in heightened sensitivity to an injection of amphetamine given 30 days after the start of the procedure, when adolescent rats had reached adulthood. The finding of an age-specific increase in amphetamine sensitivity is consistent with evidence for increased risk for addiction when drug use is initiated in adolescence compared to adulthood in people (Merline et aI., 2002), and with the hypothesis that adolescence is a sensitive period of development.

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Bien que les troubles cognitifs soient un aspect essentiel de la schizophrénie, le dysfonctionnement des systèmes émotionnels y est également considéré comme un élément très important de cette maladie d’autant plus que plusieurs régions du cerveau sont concernées par la régulation émotionnelle. Le principal objectif du présent travail était d’explorer, en imagerie par résonnance magnétique fonctionnelle (IRMf), l’effet de la ziprasidone sur les différentes réponses neuronales à l’affichage de stimuli émotionnels au niveau de la région préfrontale,particulièrement dans le cortex cingulaire antérieur [CCA], le cortex orbito-frontal [COF] et le cortex préfrontal dorso-latéral [CPFDL]. Nous avons examiné les activations cérébrales, chez des patients souffrants de schizophrénie avant et après médication à la ziprasidone, en leur présentant des séries d’images émotionnellement chargées (négatives, neutres et positives) associées à différentes instructions quand aux types d’images qu’ils devaient sélectionner (négatives,neutres et positives). Nous avons analysé les différents changements d’activation (avant et après médication) essentiellement pour les valences extrêmes des stimuli (positives et négatives), ensuite nous avons regardé l’effet du type d’instruction sur ces changements. L’échantillon comprenait 13 patients atteints de schizophrénie et 15 témoins sains. Nous avons également effectué une évaluation clinique des symptômes dépressifs, positifs et négatifs de la maladie ainsi que des mesures biochimiques et de poids avant et après 16 semaines de médication. Malgré l’absence de changement significatif sur les mesures cliniques (PANSS et Dépression) avant et après une moyenne de 14.3 semaines de médication à la ziprasidone, plusieurs régions préfrontales (CCA, COF, CPDL) ont sensiblement accru leur réponse aux stimuli positifs par rapport aux stimuli négatifs. En outre, dans les régions habituellement impliquées dans le contrôle cognitif (CCA et CPFDL), cette tendance s'est accentuée lorsque les patients ont été invités à ne sélectionner que les stimuli négatifs (effet du type d’instruction). Nous avons également trouvé plusieurs similitudes dans le fonctionnement préfrontal (à la fois dans le volume et la force d'activation) entre les contrôles sains et les patients après médication en tenant compte du type d’instruction plus que de la valence émotionnelle des images. Pour conclure, les résultats de la présente étude suggèrent que le traitement antipsychotique avec la ziprasidone améliore le fonctionnement cognitif lié au traitement de l'information émotionnelle dans le cortex préfrontal chez les patients souffrant de schizophrénie. Étant donné le mécanisme d'action neuro-pharmacologique de la ziprasidone (plus d'affinité pour la sérotonine que pour les récepteurs de la dopamine dans le cortex préfrontal), nous pensons que nos résultats démontrent que le contrôle cognitif et la régulation des réactions face à des stimuli émotionnellement chargés dans la schizophrénie sont liés à une plus forte concentration de dopamine dans les voies préfrontales.

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Les dyskinésies tardives (DT) sont des troubles moteurs associés à l’utilisation chronique des antagonistes des récepteurs dopaminergiques D2 tels que les antipsychotiques et le métoclopramide. Ces dyskinésies correspondent à une incoordination motrice portant préférentiellement sur la musculature oro-faciale. La gestion des DT s'est imposée comme défi de santé publique surtout en l’absence d’une alternative thérapeutique efficace et abordable. L’hypothèse classiquement avancée pour expliquer la physiopathologie des DT inhérente au traitement par les antipsychotiques s’articule autour de l’hypersensibilité des récepteurs dopaminergiques D2, cibles principales de ces molécules. Néanmoins, plusieurs données remettent la véracité de cette hypothèse en question. Hypothèse: nous proposons que le blocage chronique des récepteurs dopaminergiques soit effectivement responsable d’un phénomène d’hypersensibilisation mais contrairement à l’hypothèse classique, cette hypersensibilisation porterait sur des paramètres de la transmission dopaminergique autres que les récepteurs D2. De même nous postulons que cette hypersensibilisation se traduirait par des altérations des cascades signalétiques au niveau des cellules du striatum. Ces altérations aboutissent à des changements portant sur le récepteur nucléaire (Nur77), qui est hautement associé au système dopaminergique; l’induction de ces récepteurs déclencherait des cascades associées à la compensation ou à la genèse des DT. Matériels et méthodes: 23 femelles Cebus apella, réparties en 3 groupes: groupe halopéridol, groupe clozapine, et groupe contrôle, ont été exposées aux traitements respectifs pendant 6-36 mois. Après l’analyse comportementale, les animaux ont été décapités et leurs cerveaux isolés pour fin d’analyse. Hybridation in situ: nous avons fait appel à cette technique pour mesurer l’expression de l’ARNm de Nur77 et du neuropeptide enképhaline. Hybridation in situ double: nous avons exploités cette technique pour identifier les populations neuronales exprimant les récepteurs dopaminergiques D3 et localiser leur éventuelle induction. Autoradiographies des récepteurs dopaminergiques D1, D2 et D3 et autoradiographies des récepteurs i glutamatergiques mGluR5. Ces autoradiographies avaient pour objectif d’évaluer l’expression de ces différents récepteurs. Mutagenèse dirigée et transfection cellulaire: nous faisons appel à ces techniques pour reproduire le polymorphisme identifié au niveau de la région 3’UTR de l’ARNm Nur77 et évaluer l’impact que pourrait avoir ce polymorphisme sur la stabilité de l’ARNm Nur77 sinon sur l’expression de la protèine Nur77. Western Blot des kinases ERK 1 et 2: cette technique nous a servi comme moyen pour quantifier l’expression globale de ces kinases. Analyses statistiques: l’expression de l’ARNm Nur77 a été évaluée en utilisant l’analyse de la variance à un seul facteur (One way ANOVA). Nous avons procédé de la même façon pour mesurer l’expression des récepteurs D2, D3 et mGluR5. Résultats: le groupe des animaux traités par l’halopéridol montre une plus forte expression des récepteurs D3 par rapport aux sujets des autres groupes. Cette expression se produit au niveau des neurones de la voie directe. De plus, cette augmentation corrèle positivement avec la sévérité des DT. L’expression des récepteurs D2 et mGluR5 reste relativement inchangée entre les différents groupes, alors qu’un gradient d’expression a été observé pour le récepteur D1. Par ailleurs, Nur77 est induit par l’halopéridol, alors que son expression semble baisser chez les animaux traités par la clozapine. L’induction de l’expression de Nur77 par l’halopéridol est plus accrue chez les animaux non dyskinétiques. Les animaux traités par la clozapine démontrent une expression amoindrie de l’ARNm de Nur77 qui tend à être plus faible que l’expression de base. D’autre part, la présence du polymorphisme au niveau de la région 3’UTR semble affecter l’expression cellulaire de Nur77. Conclusion: ces résultats confortent notre hypothèse concernant l’existence d’un phénomène d’hypersensibilisation prenant place suite un traitement chronique par les antipsychotiques. Ce phénomène s’est traduit par une augmentation de l’expression des récepteurs D3 sans porter sur les récepteurs D2 tel que prôné classiquement. Cette hypersensibilisation des récepteurs D3 implique également l’existence d’un débalancement des voies striatales pouvant ainsi sous tendre l’apparition des DT. Ces résultats dévoilent ainsi un nouveau mécanisme qui pourrait contribuer à l’apparition des DT et pourraient permettre une meilleure gestion, nous l’espérons, des DT à l’échelle clinique.

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The concentrations of serotonin in various brain areas were significantly decreased in the pyridoxine-deficient young rat. 2. There was no change in the concentration of dopamine. 3. Both Bmax and Kid of [3H]serotonin binding to membrane preparations from cerebral cortex were increased in deficiency and were restored to normal upon pyridoxine supplementation. 4. There was no change in [3H]spiroperidol binding to corpus striatal membrane preparations in pyridoxine-deficient rats.

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The positive, psychotic symptoms of schizophrenia can be treated by antipsychotic drugs and it has been assumed that these are antagonists at the D-2 and D-3 dopamine receptors in the brain. Recently, the D-2/D-3 partial agonist aripiprazole has been introduced as an antipsychotic drug. It has also been realized that, using in vitro assays, the other antipsychotic drugs are in fact inverse agonists at D-2/D-3 dopamine receptors. This raises questions about how these disparate drugs can achieve a similar clinical outcome. In this review, I shall consider the efficacies of these drugs in signalling assays and how these efficacies might affect treatment outcomes. It seems that the treatment outcome might depend on the overall level of cell stimulation, which is in turn dependent on the level of residual dopamine and the efficacy of the drug in signalling assays.

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Rats with unilateral lesion of the substantia nigra pars compacta (SNpc) have been used as a model of Parkinson`s disease. Depending on the lesion protocol and on the drug challenge, these rats rotate in opposite directions. The aim of the present study was to propose a model to explain how critical factors determine the direction of these turns. Unilateral lesion of the SNpc was induced with 6-hydroxydopamine (6-OHDA) or 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP). Separate analysis showed that neither the type of neurotoxin nor the site of lesion along the nigrostriatal. pathway was able to predict the direction of the turns these rats made after they were challenged with apomorphine. However, the combination of these two factors determined the magnitude of the lesion estimated by tyrosine-hydroxylase immunohistochemistry and HPLC-ED measurement of striatal dopamine. Very small lesions did Dot cause turns, medium-size lesions caused ipsiversive turns, and large lesions caused contraversive turns. Large-size SNpc lesions resulted in an increased binding of [H-3] raclopride to D2 receptors, while medium-size lesions reduced the binding of [H-3]SCH-23390 D1 receptors in the ipsilateral striatum. These results are coherent with the model proposing that after challenged with a dopamine receptor agonist, unilaterally SNpc-lesioned rats rotate toward the side with the weaker activation of dopamine receptors. This activation is weaker on the lesioned side in animals with small SNpc lesions due to the loss of dopamine, but stronger in animals with large lesions due to dopamine receptor supersensitivity. (C) 2008 Elsevier B.V. All rights reserved.

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A esquizofrenia envolve um conjunto de sintomas de sensopercepção, cognição e afeto que compromete significativamente a vida do sujeito. O mais aceito modelo para se entender essa doença é o modelo de hiperatividade dopaminérgica, pois drogas como anfetamina e cocaína, que aumentam a atividade dopaminérgica, mimetizam alguns sintomas dessa patologia, e os fármacos usados para o tratamento são os que bloqueiam os receptores de dopamina. Além da dopamina, o sistema glutamatérgico também tem sido relacionado à esquizofrenia, pelo fato de antagonistas de receptores glutamatérgicos do tipo NMDA, tais como PCP, MK-801 e cetamina, provocarem alguns sintomas dessa doença, como desorganização cognitiva e delírios em pessoas saudáveis. adenosina, por sua vez, desempenha um papel neuromodulatório tanto da atividade dopaminérgica quanto da atividade glutamatérgica, inibindo o tônus de ambos neurotransmissores por diferentes vias. Assim, sugerimos que antagonistas de receptores adenosinérgicos, como a cafeína, também seriam um modelo farmacológico para a doença. Com base nisso, demonstramos previamente que camundongos tratados cronicamente com cafeína desenvolvem tolerância cruzada ao efeito do antagonista NMDA MK-801 em provocar hiperlocomoção, mas não em seu déficit cognitivo na esquiva inibitória. Buscando ampliar e melhor caracterizar essa interação, os seguintes parâmetros foram avaliados em camundongos: atividade locomotora realizando-se as curvas de dose e de tempo; memória de trabalho, avaliada na tarefa de alternação tardia; memória de longa duração, avaliada na tarefa de esquiva inibitória e a avaliação de ataxia. Os resultados nos mostraram que camundongos subcronicamente tratados com cafeína na bebida (1 mg/mL, por 1, 3, ou 7 dias) apresentaram habituação semelhante entre os grupos e que MK-801 (0,25 mg/kg, i.p.) produziu hiperlocomoção nos animais tratados com água e 1 dia de cafeína, com efeito diminuído depois de 3 dias e praticamente abolido depois de 7 dias. Depois de 7 dias, o efeito também foi dose-dependente, sem tolerância cruzada na dose de 0,1 mg/mL, intermediária na dose de 0,3 mg/mL e total a 1,0 mg/mL. Os escores de ataxia induzidos por 0,5 mg/kg de MK-801 não foram afetados pelo tratamento com cafeína por 7 dias a 1 mg/mL, mas uma hiperlocomoção transitória foi observada. O tratamento com cafeína por 7 dias a 1 mg/mL preveniu os déficits induzidos por 0,01 mg/kg de MK-801 na tarefa de esquiva inibitória e os atenuou, a 0,4 mg/kg de MK-801, na tarefa de alternação tardia, no labirinto em T. Conclui-se, então, que a hiperlocomoção e os déficits cognitivos – mas não a ataxia – induzidos por MK-801 podem estar influenciados pela atividade reduzida da adenosina. Assim, os estudos sobre a ação da adenosina podem se fazer relevantes para a melhor compreensão da neurobiologia da esquizofrenia. Estes resultados são concordantes com o novo modelo proposto, que é o de hipofunção adenosinérgica na esquizofrenia.