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A Enjalbert  M Ruberg  S Arancibia  M Priam  C Kordon 《Nature》1979,280(5723):595-597
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At least three different families of endogenous opioid peptides, the enkephalins, endorphins and dynorphins, are present in the mammalian central nervous system (CNS). Immunocytochemical studies have demonstrated their localization in neurones, which supports the view that these peptides may have a role as neurotransmitter or neuromodulators. However, the target cells and cellular processes acted upon by the opioid peptides are still largely unknown. One possible function of neuropeptides, including the opioid peptides, may be presynaptic modulation of neurotransmission in certain neuronal pathways, for example, by inhibition or promotion of neurotransmitter release from the nerve terminals. Here we report that dynorphin and some benzomorphans potently and selectively inhibit the release of (radiolabelled) dopamine from slices of rat corpus striatum, by activating kappa-opioid receptors. In contrast, [Leu5]enkephalin and [D-Ala2, D-Leu5]enkephalin selectively inhibit acetylcholine release by activating delta-opioid receptors.  相似文献   

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Regulation of striatal acetylcholine concentration by dopamine receptors   总被引:8,自引:0,他引:8  
V H Sethy  M H Van Woert 《Nature》1974,251(5475):529-530
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Effect of guanine nucleotides on striatal dopamine receptors   总被引:24,自引:0,他引:24  
N R Zahniser  P B Molinoff 《Nature》1978,275(5679):453-455
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Subsecond dopamine release promotes cocaine seeking   总被引:25,自引:0,他引:25  
Phillips PE  Stuber GD  Heien ML  Wightman RM  Carelli RM 《Nature》2003,422(6932):614-618
The dopamine-containing projection from the ventral tegmental area of the midbrain to the nucleus accumbens is critically involved in mediating the reinforcing properties of cocaine. Although neurons in this area respond to rewards on a subsecond timescale, neurochemical studies have only addressed the role of dopamine in drug addiction by examining changes in the tonic (minute-to-minute) levels of extracellular dopamine. To investigate the role of phasic (subsecond) dopamine signalling, we measured dopamine every 100 ms in the nucleus accumbens using electrochemical technology. Rapid changes in extracellular dopamine concentration were observed at key aspects of drug-taking behaviour in rats. Before lever presses for cocaine, there was an increase in dopamine that coincided with the initiation of drug-seeking behaviours. Notably, these behaviours could be reproduced by electrically evoking dopamine release on this timescale. After lever presses, there were further increases in dopamine concentration at the concurrent presentation of cocaine-related cues. These cues alone also elicited similar, rapid dopamine signalling, but only in animals where they had previously been paired to cocaine delivery. These findings reveal an unprecedented role for dopamine in the regulation of drug taking in real time.  相似文献   

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Depression of morphine-seeking behaviour by dopamine inhibition   总被引:2,自引:0,他引:2  
A S Schwartz  P L Marchok 《Nature》1974,248(445):257-258
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J M Trugman  W A Geary  G F Wooten 《Nature》1986,323(6085):267-269
Recent work with positron emission and single photon emission computed tomography has demonstrated the feasibility of studying striatal dopamine receptors in the living human brain. For the proper interpretation of these studies in normal and diseased states, the cellular localization of these receptors must be definitively established. It has been claimed, on the basis of receptor binding studies with tissue homogenates in rats, that 30-50% of striatal D-2 dopamine receptors are located on axons or terminals of the corticostriatal pathway. This finding has been incorporated into major reviews and classifications of dopamine receptors. The recent development of quantitative autoradiographic methods for diffusible ligands has facilitated the study of neurotransmitter receptors in cytoarchitechtonically intact tissue. Because this technique provides the necessary anatomic resolution that is lacking in homogenate binding studies, we have used it to re-examine the localization of striatal dopamine receptors. Here we present evidence that D-2 receptors are located exclusively on kainic acid-sensitive intrinsic neuronal elements in the striatum. We report that discrete cortical ablation does not alter 3H-spiperone binding to rat striatum and thus our results do not support the existence of D-2 dopamine receptors on the terminals of the corticostriatal pathway.  相似文献   

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为研究口服药物控释微球的制备及其体外释药性质,以格列吡嗪为模型药物,采用喷雾干燥法制备具有恒速释药性质的微球.通过考察微球的收率、包封率以及体外释放特性,研究了载体材料、材料与药物比例以及药物释放环境对格列吡嗪控释微球释药性质的影响.结果表明,采用醋酸纤维素为载体材料,选用合适的配方,可制得具有零级释药动力学的格列吡嗪控释微球制剂,并且该制剂可以根据需要的条件在12 h或24 h内释放完毕.不同条件下微球的药物释放曲线线性拟合的相关系数在0.981~0.999之间.  相似文献   

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Mesolimbic dopamine-releasing neurons appear to be important in the brain reward system. One behavioural paradigm that supports this hypothesis is intracranial self-stimulation (ICS), during which animals repeatedly press a lever to stimulate their own dopamine-releasing neurons electrically. Here we study dopamine release from dopamine terminals in the nucleus accumbens core and shell in the brain by using rapid-responding voltammetric microsensors during electrical stimulation of dopamine cell bodies in the ventral tegmental area/substantia nigra brain regions. In rats in which stimulating electrode placement failed to elicit dopamine release in the nucleus accumbens, ICS behaviour was not learned. In contrast, ICS was acquired when stimulus trains evoked extracellular dopamine in either the core or the shell of the nucleus accumbens. In animals that could learn ICS, experimenter-delivered stimulation always elicited dopamine release. In contrast, extracellular dopamine was rarely observed during ICS itself. Thus, although activation of mesolimbic dopamine-releasing neurons seems to be a necessary condition for ICS, evoked dopamine release is actually diminished during ICS. Dopamine may therefore be a neural substrate for novelty or reward expectation rather than reward itself.  相似文献   

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Environmental stimuli that are reliably associated with the effects of many abused drugs, especially stimulants such as cocaine, can produce craving and relapse in abstinent human substance abusers. In animals, such cues can induce and maintain drug-seeking behaviour and also reinstate drug-seeking after extinction. Reducing the motivational effects of drug-related cues might therefore be useful in the treatment of addiction. Converging pharmacological, human post-mortem and genetic studies implicate the dopamine D3 receptor in drug addiction. Here we have designed BP 897, the first D3-receptor-selective agonist, as assessed in vitro with recombinant receptors and in vivo with mice bearing disrupted D3-receptor genes. BP 897 is a partial agonist in vitro and acts in vivo as either an agonist or an antagonist. We show that BP 897 inhibits cocaine-seeking behaviour that depends upon the presentation of drug-associated cues, without having any intrinsic, primary rewarding effects. Our data indicate that compounds like BP 897 could be used for reducing the drug craving and vulnerability to relapse that are elicited by drug-associated environmental stimuli.  相似文献   

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右旋糖苷-阿司匹林高分子挂接药物的体外释放   总被引:2,自引:0,他引:2  
为了评价不同载药率的右旋糖苷-阿司匹林高分子挂接药物在人工胃液和人工肠液中的体外释药性能,首先选择阿司匹林(ASA)在不同条件下的测定波长,绘制ASA的紫外吸收标准曲线和线性回归方程,并进行加样回收实验。通过固定温度及转速,做不同释放介质中的体外释药实验,评价其药学性能。结果表明,此药物在人工胃液和人工肠液中均呈零级释放,释药开始阶段无"爆释"现象,累积释药量随挂接药物载药量的增高而增高;挂接药物在人工肠液中的释放速率较其在人工胃液中快。此药物具有均匀缓慢释药的特性,而且能减轻ASA对胃粘膜的刺激作用。  相似文献   

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