首页> 外文期刊>Peptides: An International Journal >The substance P (SP) heptapeptide fragment SP1-7 alters the density of dopamine receptors in rat brain mesocorticolimbic structures during morphine withdrawal.
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The substance P (SP) heptapeptide fragment SP1-7 alters the density of dopamine receptors in rat brain mesocorticolimbic structures during morphine withdrawal.

机译:P(SP)七肽片段SP1-7会在吗啡戒断过程中改变大鼠大脑中皮质皮质结构的多巴胺受体密度。

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The aminoterminal fragment of substance P (SP), SP(1-7), has been suggested to modulate the expression of opiate tolerance and withdrawal behaviors in rodents. However, the mechanism of this effect is not yet clarified. Using a rat model we have previously demonstrated that SP(1-7) affects dopamine transmission and the expression of the dopamine D2-receptor gene transcript in the nucleus accumbens during naloxone precipitated morphine withdrawal. In the present study, we have applied autoradiography to investigate the effect of the heptapeptide on the binding of dopamine D1- and D2-receptors in mesocorticolimbic brain areas of male rats during morphine withdrawal. Morphine dependent animals were treated with an injection of SP(1-7) into the ventral tegmental area prior to naloxone challenge. The result indicated that the SP fragment elicited a significant decrease in specific binding to D1-like receptors in the caudate putamen, nucleus accumbens shell, nucleus accumbens core, substantia nigra and medial globus pallidus. Radioligand binding to dopamine D2-like receptors was also altered by SP(1-7). The heptapeptide induced a decreased density of these sites in the ventral tegmental area but an increased binding in the substantia nigra and the frontal cortex. The observed alterations in the D1- and D2-like receptor density could reflect activations in dopamine pathways associated with the above-mentioned brain regions. The result provides further evidence for the modulatory effect of SP(1-7) on dopamine systems during opioid withdrawal, suggesting the possible role for the heptapeptide to regulate morphine withdrawal reactions.
机译:已提出物质P(SP),SP(1-7)的氨基末端片段可调节啮齿动物中阿片耐受性和戒断行为的表达。但是,这种作用的机理尚不清楚。使用大鼠模型,我们先前已证明SP(1-7)影响多巴胺的传递和伏洛核在纳洛酮沉淀的吗啡戒断期间多巴胺D2受体基因转录物的表达。在本研究中,我们已经应用放射自显影技术研究了吗啡戒断过程中七肽对雄性大鼠中脑皮质边缘脑区多巴胺D1-和D2-受体结合的影响。吗啡依赖性动物在纳洛酮攻击之前,先向腹侧被盖区注射SP(1-7)进行治疗。结果表明,该SP片段引起与尾状壳,伏核核,伏核核,黑质和苍白球内侧D1样受体的特异性结合显着降低。 SP(1-7)也改变了放射性配体与多巴胺D2样受体的结合。七肽在腹侧被盖区中诱导这些部位的密度降低,但在黑质和额叶皮层中的结合增加。观察到的D1和D2样受体密度的变化可能反映了与上述大脑区域相关的多巴胺途径的激活。该结果为阿片戒断过程中SP(1-7)对多巴胺系统的调节作用提供了进一步的证据,表明七肽可能在调节吗啡戒断反应中发挥作用。

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