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下丘脑泌素(食欲素)在雄性性行为中的作用。

A role for hypocretin (orexin) in male sexual behavior.

作者信息

Muschamp John W, Dominguez Juan M, Sato Satoru M, Shen Roh-Yu, Hull Elaine M

机构信息

Department of Psychology and Program in Neuroscience, Florida State University, Tallahassee, Florida 32306, USA.

出版信息

J Neurosci. 2007 Mar 14;27(11):2837-45. doi: 10.1523/JNEUROSCI.4121-06.2007.

Abstract

The role of hypocretin (orexin; hcrt/orx) neurons in regulation of arousal is well established. Recently, hcrt/orx has been implicated in food reward and drug-seeking behavior. We report here that in male rats, Fos immunoreactivity (ir) in hcrt/orx neurons increases markedly during copulation, whereas castration produces decreases in hcrt/orx neuron cell counts and protein levels in a time course consistent with postcastration impairments in copulatory behavior. This effect was reversed by estradiol replacement. Immunolabeling for androgen (AR) and estrogen (ER alpha) receptors revealed no colocalization of hcrt/orx with AR and few hcrt/orx neurons expressing ER alpha, suggesting that hormonal regulation of hcrt/orx expression is via afferents from neurons containing those receptors. We also demonstrate that systemic administration of the orexin-1 receptor antagonist SB 334867 [N-(2-methyl-6-benzoxazolyl)-N''-1,5-naphthyridin-4-yl urea] impairs copulatory behavior. One locus for the prosexual effects of hcrt/orx may be the ventral tegmental area (VTA). We show here that hcrt-1/orx-A produces dose-dependent increases in firing rate and population activity of VTA dopamine (DA) neurons in vivo. Activation of hcrt/orx during copulation, and in turn, excitation of VTA DA neurons by hcrt/orx, may contribute to the robust increases in nucleus accumbens DA previously observed during male sexual behavior. Subsequent triple immunolabeling in anterior VTA showed that Fos-ir in tyrosine hydroxylase-positive neurons apposed to hcrt/orx fibers increases during copulation. Together, these data support the view that hcrt/orx peptides may act in a steroid-sensitive manner to facilitate the energized pursuit of natural rewards like sex via activation of the mesolimbic DA system.

摘要

下丘脑泌素(食欲素;hcrt/orx)神经元在觉醒调节中的作用已得到充分证实。最近,hcrt/orx与食物奖赏和觅药行为有关。我们在此报告,在雄性大鼠中,交配期间hcrt/orx神经元中的Fos免疫反应性(ir)显著增加,而阉割会导致hcrt/orx神经元细胞数量和蛋白质水平下降,其时间进程与阉割后交配行为受损一致。雌激素替代可逆转这种效应。雄激素(AR)和雌激素(ERα)受体的免疫标记显示,hcrt/orx与AR没有共定位,且很少有hcrt/orx神经元表达ERα,这表明hcrt/orx表达的激素调节是通过来自含有这些受体的神经元的传入神经实现的。我们还证明,系统性给予食欲素-1受体拮抗剂SB 334867 [N-(2-甲基-6-苯并恶唑基)-N''-1,5-萘啶-4-基脲]会损害交配行为。hcrt/orx促性行为作用的一个位点可能是腹侧被盖区(VTA)。我们在此表明,hcrt-1/orx-A在体内可使VTA多巴胺(DA)神经元的放电率和群体活动呈剂量依赖性增加。交配期间hcrt/orx的激活,以及hcrt/orx对VTA DA神经元的兴奋作用,可能有助于解释先前在雄性性行为中观察到的伏隔核DA的显著增加。随后在前VTA进行的三重免疫标记显示,与hcrt/orx纤维相邻的酪氨酸羟化酶阳性神经元中的Fos-ir在交配期间增加。总之,这些数据支持这样一种观点,即hcrt/orx肽可能以类固醇敏感的方式发挥作用,通过激活中脑边缘DA系统来促进对性等自然奖赏的积极追求。

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