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伏隔核作为睾酮及其5α-还原代谢产物奖赏特性的作用位点。

The nucleus accumbens as a site of action for rewarding properties of testosterone and its 5alpha-reduced metabolites.

作者信息

Frye C A, Rhodes M E, Rosellini R, Svare B

机构信息

Department of Psychology, The University at Albany-SUNY, Albany, NY 12222, USA.

出版信息

Pharmacol Biochem Behav. 2002 Dec;74(1):119-27. doi: 10.1016/s0091-3057(02)00968-1.

Abstract

Testosterone (T)'s positive hedonic effects may be mediated by actions of its metabolites, dihydrotestosterone (DHT) or 3alpha-androstanediol (3alpha-diol), in the nucleus accumbens (NA). In Experiment 1, adult, intact, male rats were systemically administered 1 mg of T, DHT, 3alpha-diol or vehicle, at different time points to examine concentrations of androgens in the NA. Rats administered 3alpha-diol had significantly increased concentrations of 3alpha-diol in the region of the brain encompassing the NA. These data are consistent with previous data from our laboratory demonstrating that 3alpha-diol elicits a conditioned place preference (CPP) more effectively than either T or DHT, when administered systemically. In Experiment 2, rats received implants of T, DHT or 3alpha-diol to the NA immediately prior to placement in the CPP apparatus on conditioning days. Implants of T, DHT or 3alpha-diol, but not vehicle, significantly increased time spent on the non-preferred side of the chamber on the test day. This effect was only produced by androgenic stimulation of the shell of the NA and not the core of the NA. Thus, androgen regimens we have previously found to enhance CPP produced the greatest increases in 3alpha-diol concentrations in the NA region and direct implants of T, DHT or 3alpha-diol to the shell, but not the core, of the NA enhanced CPP. These data are consistent with the hypothesis that the hedonic effects of T may be due to actions of its metabolites in the NA.

摘要

睾酮(T)的正向享乐效应可能是由其代谢产物双氢睾酮(DHT)或3α-雄烷二醇(3α-二醇)在伏隔核(NA)中的作用介导的。在实验1中,成年、未阉割的雄性大鼠在不同时间点被全身注射1毫克的T、DHT、3α-二醇或赋形剂,以检测NA中雄激素的浓度。注射3α-二醇的大鼠在包含NA的脑区中3α-二醇的浓度显著增加。这些数据与我们实验室之前的数据一致,即全身给药时,3α-二醇比T或DHT更有效地引发条件性位置偏好(CPP)。在实验2中,大鼠在条件训练日被放入CPP装置之前,立即在NA中植入T、DHT或3α-二醇。在测试日,植入T、DHT或3α-二醇而非赋形剂的大鼠在实验箱非偏好侧停留的时间显著增加。这种效应仅由NA壳层而非NA核心的雄激素刺激产生。因此,我们之前发现能增强CPP的雄激素给药方案在NA区域产生了3α-二醇浓度的最大增加,并且将T、DHT或3α-二醇直接植入NA的壳层而非核心增强了CPP。这些数据与T的享乐效应可能归因于其代谢产物在NA中的作用这一假设一致。

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