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中枢神经肽K的厌食作用与雏鸡下丘脑的变化有关。

Anorexigenic effects of central neuropeptide K are associated with hypothalamic changes in juvenile Gallus gallus.

作者信息

Prall Brian C, Cline Mark A

机构信息

Department of Biology (6931), Radford University, Radford, VA 24142, USA.

出版信息

Gen Comp Endocrinol. 2008 Nov-Dec;159(2-3):130-5. doi: 10.1016/j.ygcen.2008.08.007. Epub 2008 Aug 26.

Abstract

The central mechanisms that mediate neuropeptide K (NPK) associated anorexia are poorly understood in any species, and information in this area of avian biology is totally lacking. Thus, the effects of intracerebroventricular NPK treatment were studied in Cobb-500 chicks (Gallus gallus). In Experiment 1, NPK caused decreased feed intake, but did not affect water intake or whole blood glucose concentration. In Experiment 2, NPK-treated chicks had increased c-Fos immunoreactivity in the parvicellular division of the paraventricular nucleus and arcuate nucleus. The lateral hypothalamus, ventromedial hypothalamus, dorsomedial hypothalamus, periventricular nucleus, magnocellular division of the paraventricular nucleus, and the superchiasmatic nucleus were not affected by NPK treatment. In Experiment 3, the number of feed pecks, exploratory pecks, jumps, escape attempts, and distance moved were decreased, while time spent standing was increased. None of the NPK-treated chicks sat or entered deep rest. In Experiment 4, blockage of corticotrophin releasing factor receptors did not affect NPK-induced anorexia. Thus, we conclude that NPK is a regulator of chick appetite and the effects may be mediated directly in the arcuate nucleus and parvicellular division of the paraventricular nucleus.

摘要

在任何物种中,介导神经肽K(NPK)相关厌食症的核心机制都尚未完全明确,而鸟类生物学这一领域的相关信息更是完全缺失。因此,研究人员在科宝500肉鸡(原鸡)中探究了脑室内注射NPK的影响。在实验1中,NPK导致采食量下降,但不影响饮水量或全血葡萄糖浓度。在实验2中,接受NPK处理的雏鸡室旁核小细胞部和弓状核中的c-Fos免疫反应性增强。下丘脑外侧区、腹内侧下丘脑、背内侧下丘脑、室周核、室旁核大细胞部和视交叉上核不受NPK处理的影响。在实验3中,啄食次数、探索性啄食次数、跳跃次数、逃跑尝试次数和移动距离减少,而站立时间增加。接受NPK处理后的雏鸡均未坐下或进入深度休息状态。在实验4中,促肾上腺皮质激素释放因子受体的阻断并不影响NPK诱导的厌食症。因此,我们得出结论,NPK是雏鸡食欲的调节因子,其作用可能直接通过弓状核和室旁核小细胞部介导。

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