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Behavioral effects of dopamine agonists and antagonists: influence of estrous cycle, ovariectomy, and estrogen replacement in rats.

机译:多巴胺激动剂和拮抗剂的行为影响:大鼠发情周期,卵巢切除术和雌激素替代的影响。

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The influence of the hormonal condition on the reactivity of central dopamine (DA) receptors was studied in male and in intact and ovariectomized (OVX) female rats. They were injected with selective DA agonists, acting either on D1 (SKF 38393, 2.5 or 10 mg/kg) or D2 receptors (PPHT, 31.3 or 125 microg/kg), or with selective DA antagonists, acting either on D1 (SCH 23390, 6.25 or 25 microg/kg), or D2 receptors (sulpiride, 10 or 40 mg/kg). The acquisition of an avoidance conditioning response (CAR) and the performance of some spontaneous motor behaviors were tested. Both D1 and D2 agonists and antagonists impaired the acquisition of CARs in diestrous, OVX, and male rats. Nevertheless, the effects of these drugs during estrus and in estradiol-primed OVX rats were different according to the drug and the dose injected. Whereas SKF 38393 failed to induce significative changes, PPHT and low doses of SCH 23390 and sulpiride improved the acquisition of CARS in those groups. The effects on conditioning were not accompanied with equivalent changes in spontaneous motor activity. Estradiol level fluctuations that occur in female rats within the estrous cycle or in OVX rats primed with estradiol would be responsive of changes in the response to DA agents. Although the reactivity of central DA systems is differentially affected by the hormonal condition of the rat, the precise mechanism of this modulatory action remains unknown.
机译:在雄性大鼠和未切除卵巢的雌性大鼠中研究了激素条件对中枢多巴胺(DA)受体反应性的影响。给他们注射选择性D激动剂,作用于D1(SKF 38393,2.5或10 mg / kg)或D2受体(PPHT,31.3或125 microg / kg),或选择性DA拮抗剂,作用于D1(SCH 23390) ,6.25或25 microg / kg)或D2受体(舒必利10或40 mg / kg)。测试了回避条件响应(CAR)的获取和一些自发运动行为的性能。 D1和D2激动剂和拮抗剂均会损害雌性,OVX和雄性大鼠的CAR。然而,根据药物和注射剂量的不同,这些药物在发情期和雌二醇引发的OVX大鼠中的作用是不同的。 SKF 38393未能引起显着变化,而PPHT和低剂量的SCH 23390和舒必利改善了这些组中CARS的获取。对调节的影响不伴随自发运动活动的等效变化。在发情周期内的雌性大鼠中或雌二醇引发的OVX大鼠中发生的雌二醇水平波动将对对DA剂的响应变化做出响应。尽管中枢DA系统的反应性受大鼠荷尔蒙状况的影响不同,但这种调节作用的确切机制仍然未知。

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