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首页> 外文期刊>Behavioural Brain Research: An International Journal >Behaviorally specific versus non-specific suppression of accumbens shell-mediated feeding by ipsilateral versus bilateral inhibition of the lateral hypothalamus
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Behaviorally specific versus non-specific suppression of accumbens shell-mediated feeding by ipsilateral versus bilateral inhibition of the lateral hypothalamus

机译:同侧或双侧抑制下丘脑外侧的行为对卵壳介导的进食的行为特异性抑制与非特异性抑制

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The nucleus accumbens shell (AcbSh) and lateral hypothalamus (LH) are linked in the control of food intake. Pharmacological inhibition of the LH may block AcbSh-elicited feeding, but the behavioral phenotype associated with this feeding suppression is unknown. To examine this phenotype, adult male Sprague-Dawley rats were implanted with three cannulas - one unilaterally in the AcbSh and two bilaterally in the LH - to allow for central drug injections. The AcbSh received injections of the AMPA receptor antagonist DNQX or the GABAA receptor agonist muscimol, while the LH received injections of the NMDA receptor antagonist D-AP5 or muscimol. Eating, drinking, grooming, locomotion, quiescence, and sleeping behaviors were measured every minute for 60min post-injection. From these observational data, feeding bout durations, feeding frequency, and latency to feed were determined. AcbSh muscimol or DNQX increased food intake by increasing feeding bout durations and frequency and decreasing latency to feed. D-AP5 or muscimol, injected into the LH bilaterally or ipsilateral to the AcbSh injection, reversed these AcbSh-mediated effects. Though bilateral LH D-AP5 or muscimol injections blocked feeding responses, they also hastened onset of sleep. In contrast, ipsilateral LH D-AP5 or muscimol injections suppressed AcbSh-mediated feeding behaviors without substantially altering sleeping or other behaviors. These results suggest bilateral LH inhibition via NMDA receptor blockade or GABAA receptor activation produces behavioral effects that might indirectly suppress feeding, but ipsilateral LH inhibition through these receptors suppresses AcbSh AMPA and GABAA receptor-mediated feeding specifically. This evidence strengthens the concept of a feeding-specific association between these regions.
机译:伏伏核壳(AcbSh)和下丘脑外侧(LH)在食物摄入控制中联系在一起。 LH的药理学抑制作用可能会阻止AcbSh引起的进食,但是与这种进食抑制有关的行为表型尚不清楚。为了检查这种表型,成年雄性Sprague-Dawley大鼠被植入了三个插管-一个单侧在AcbSh中,两个双侧在LH中-以便进行中央药物注射。 AcbSh接受AMPA受体拮抗剂DNQX或GABAA受体激动剂麝香酚的注射,而LH接受NMDA受体拮抗剂D-AP5或麝香酚的注射。注射后60分钟,每分钟测量饮食,饮水,美容,运动,静止和睡眠行为。根据这些观察数据,确定进食持续时间,进食频率和进食潜伏期。 AcbSh muscimol或DNQX通过增加喂食回合的持续时间和频率以及减少喂食潜伏期来增加食物摄入量。在AcHb注射的两侧或同侧注射到LH中的D-AP5或麝香酚逆转了这些AcbSh介导的作用。尽管双侧LH D-AP5或麝香酚注射液可阻止进食反应,但它们也可加速睡眠。相反,同侧LH D-AP5或muscimol注射可抑制AcbSh介导的进食行为,而不会显着改变睡眠或其他行为。这些结果表明,通过NMDA受体阻滞或GABAA受体激活引起的双侧LH抑制会产生可能间接抑制进食的行为效应,但是通过这些受体的同侧LH抑制会特异性抑制AcbSh AMPA和GABAA受体介导的进食。该证据强化了这些区域之间特定于饲料的关联的概念。

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