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Adaptations in pre- and postsynaptic 5-HT1A receptor function and cocaine supersensitivity in serotonin transporter knockout rats.

机译:适应5-羟色胺转运蛋白敲除大鼠突触前和突触后5-HT1A受体功能和可卡因超敏性。

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摘要

RATIONALE: While individual differences in vulnerability to psychostimulants have been largely attributed to dopaminergic neurotransmission, the role of serotonin is not fully understood. OBJECTIVES: To study the rewarding and motivational properties of cocaine in the serotonin transporter knockout (SERT-/-) rat and the involvement of compensatory changes in 5-HT1A receptor function are the objectives of the study. MATERIALS AND METHODS: The SERT-/- rat was tested for cocaine-induced locomotor activity, cocaine-induced conditioned place preference, and intravenous cocaine self-administration. In addition, the function and expression of 5-HT1A receptors was assessed using telemetry and autoradiography, respectively, and the effect of 5-HT1A receptor ligands on cocaine's psychomotor effects were studied. RESULTS: Cocaine-induced hyperactivity and conditioned place preference, as well as intravenous cocaine self-administration were enhanced in SERT-/- rats. Furthermore, SERT-/- rats displayed a reduced hypothermic response to the 5-HT1A receptor agonist 8-OHDPAT. S-15535, a selective somatodendritic 5-HT1A receptor agonist, reduced stress-induced hyperthermia (SIH) in wild-type controls (SERT+/+), while it increased SIH in SERT-/- rats. As 5-HT1A receptor binding was reduced in selective brain regions, these thermal responses may be indicative for desensitized 5-HT1A receptors. We further found that both 8-OHDPAT and S-15535 pretreatment increased low-dose cocaine-induced locomotor activity in SERT-/- rats, but not SERT+/+ rats. At a high cocaine dose, only SERT+/+ animals responded to 8-OHDPAT and S-15535. CONCLUSION: These data indicate that SERT-/- -associated 5-HT1A receptor adaptations facilitate low-dose cocaine effects and attenuate high-dose cocaine effects in cocaine supersensitive animals. The role of postsynaptic and somatodendritic 5-HT1A receptors is discussed.
机译:理由:尽管个体对精神兴奋药的脆弱性差异主要归因于多巴胺能神经传递,但血清素的作用尚未得到充分了解。目的:研究可卡因在5-羟色胺转运蛋白敲除(SERT-/-)大鼠中的奖励和动机特性,以及参与5-HT1A受体功能的代偿性变化是本研究的目的。材料和方法:对SERT-/-大鼠进行了可卡因诱导的运动活性,可卡因诱导的条件性位置偏爱和静脉内可卡因自我给药的测试。此外,分别使用遥测和放射自显影来评估5-HT1A受体的功能和表达,并研究了5-HT1A受体配体对可卡因精神运动作用的影响。结果:在可逆性大鼠中,可卡因诱发的活动过度和条件性位置偏爱以及静脉注射可卡因的自我给药均得到增强。此外,SERT-/-大鼠对5-HT1A受体激动剂8-OHDPAT的低温反应降低。 S-15535是一种选择性树突状5-HT1A受体激动剂,可降低野生型对照(SERT + / +)中的应激诱导的高温(SIH),而可提高SERT-/-大鼠的SIH。由于5-HT1A受体在选择性脑区的结合减少,这些热反应可能表明脱敏的5-HT1A受体。我们进一步发现8-OHDPAT和S-15535预处理均增加了SERT-/-大鼠(而非SERT + / +)中低剂量可卡因诱导的运动活性。在高可卡因剂量下,仅SERT + / +动物对8-OHDPAT和S-15535产生反应。结论:这些数据表明,在可卡因超敏感动物中,与SERT-/-相关的5-HT1A受体适应性促进了低剂量可卡因的作用并减弱了高剂量可卡因的作用。讨论了突触后和树突状5-HT1A受体的作用。

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