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睾酮对雄性大鼠可卡因敏化至关重要。

Testosterone is essential for cocaine sensitization in male rats.

机构信息

Physioogy Department, School of Medicine, University of Puerto Rico, San Juan, Puerto Rico 00936-5067.

出版信息

Physiol Behav. 2011 Jan 10;102(1):96-104. doi: 10.1016/j.physbeh.2010.09.025. Epub 2010 Oct 14.

Abstract

Most studies agree that males and females respond differently to drugs of abuse. In females, estradiol enhances the behavioral response to cocaine. However, studies on the role of testosterone and the locomotor response to psychostimulants in the male rat are inconclusive. Our study was designed to determine the behavioral effects of testosterone on the development and persistence of cocaine sensitization in male rats. We tested different doses of cocaine (10, 15 and 30mg/kg) to determine which dose induced locomotor sensitization in intact (INT) and gonadectomized (GDX) animals. We also investigated if GDX males with testosterone replacement (GDX-T) showed a similar locomotor response to cocaine as INT males. Our data showed that gonadectomy enhanced the locomotor response to a single cocaine injection. This effect was not observed in gonadectomized rats that received testosterone replacement. However, GDX rats did not show a progressive increase in their locomotor response to repeated cocaine administration (15 and 30mg/kg) (sensitization) as did INT and GDX-T animals. It is possible that in GDX males, the initial high locomotor response to cocaine creates a ceiling effect that limits further increase in cocaine-induced hyperactivity. These findings indicate that testosterone not only modulates the behavioral response to a single and to repeated cocaine injections, but is also essential for male rats to become sensitized to cocaine.

摘要

大多数研究都认为男性和女性对滥用药物的反应不同。在女性中,雌二醇增强了对可卡因的行为反应。然而,关于睾酮在雄性大鼠中的作用以及对精神兴奋剂的运动反应的研究尚无定论。我们的研究旨在确定睾酮对雄性大鼠可卡因敏化的发展和持续的行为影响。我们测试了不同剂量的可卡因(10、15 和 30mg/kg),以确定哪种剂量会在完整(INT)和去势(GDX)动物中引起运动敏化。我们还研究了是否接受睾酮替代治疗的 GDX 雄性(GDX-T)会像 INT 雄性一样对可卡因产生类似的运动反应。我们的数据表明,去势增强了对单次可卡因注射的运动反应。在接受睾酮替代治疗的去势大鼠中没有观察到这种作用。然而,GDX 大鼠在重复给予可卡因(15 和 30mg/kg)时(敏化)并未表现出运动反应的逐渐增加,而 INT 和 GDX-T 动物则表现出这种反应。在 GDX 雄性中,可卡因引起的初始高运动反应可能产生了一个上限效应,限制了可卡因引起的过度兴奋的进一步增加。这些发现表明,睾酮不仅调节对单次和重复可卡因注射的行为反应,而且对于雄性大鼠对可卡因产生敏化作用也是必不可少的。

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