首页> 外文期刊>Behavioural Brain Research: An International Journal >Lateral hypothalamic orexin neurons are critically involved in learning to associate an environment with morphine reward.
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Lateral hypothalamic orexin neurons are critically involved in learning to associate an environment with morphine reward.

机译:下丘脑外侧食欲素神经元关键参与学习将环境与吗啡奖励相关联。

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Previously, we reported that lateral hypothalamic (LH) orexin neurons are stimulated in proportion to the preference shown for reward-associated cues during conditioned place preference (CPP) testing. Here, we examine for the first time the role of these neurons in the acquisition of morphine CPP. Results show that LH orexin neurons, but not those in the perifornical area (PFA), are stimulated during conditioning when morphine is given in a novel drug-paired environment (CPP compartment) but not when given in the home cage, nor when saline was given in the CPP environment. Furthermore, bilateral excitotoxic lesions of the LH orexin area completely blocked the acquisition of morphine CPP. Lesions that spared LH orexin neurons had no effect. Orexin neurons in the LH project to the ventral tegmental area (VTA), an area important in the acquisition of morphine CPP. Therefore, we investigated the importance of the LH orexin connection to the VTA in the acquisition of a morphine CPP using a disconnection technique involving a unilateral excitotoxic lesion of LH orexin neurons and contralateral blockade of VTA orexin receptors. Results indicated that a unilateral LH orexin lesion together with a microinjection of the orexin A antagonist (SB 334867) into the contralateral VTA prior to each morphine-pairing session was sufficient to block the development of a morphine CPP. Either of these treatments by themselves was not sufficient to block CPP development. These results demonstrate the importance of LH orexin neurons and their projections to the VTA in the formation of associations between environmental cues and drug reward.
机译:先前,我们报道了在条件性位置偏爱(CPP)测试期间,下丘脑外侧(LH)的orexin神经元的刺激与对奖励相关线索所显示的偏爱成比例。在这里,我们首次检查了这些神经元在吗啡CPP收购中的作用。结果表明,当在新的药物配对环境(CPP隔室)中给予吗啡时,在条件调节过程中,在调节过程中会刺激LH食欲素神经元,但不会刺激术前区(PFA)的神经元,但在家禽笼中给予吗啡,或者当生理盐水在CPP环境中给出。此外,LH orexin区域的双边兴奋性毒性损害完全阻止了吗啡CPP的获得。幸免于LH食欲素神经元的病变没有影响。 LH中的Orexin神经元投射到腹侧被盖区(VTA),该区域是获取吗啡CPP的重要区域。因此,我们调查了LH orexin连接到VTA在使用吗啡CPP的获取中的重要性,该连接使用涉及LH orexin神经元的单侧兴奋性损害和对侧阻断VTA orexin受体的断开技术。结果表明,在每次吗啡配对之前,单侧LH食欲素损害以及微量的食欲素A拮抗剂(SB 334867)注射到对侧VTA中足以阻止吗啡CPP的发展。这些方法中的任何一种都不足以阻止CPP的发展。这些结果证明了LH orexin神经元的重要性及其对VTA的预测在环境提示与药物奖励之间的关联形成中。

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