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瘦鼠和肥胖大鼠下丘脑神经肽Y释放的生理调节

Physiological regulation of hypothalamic neuropeptide Y release in lean and obese rats.

作者信息

Stricker-Krongrad A, Kozak R, Burlet C, Nicolas J P, Beck B

机构信息

Institut National de la Santé et de la Recherche Médicale U308 Mécanismes de Régulation du Comportement Alimentaire, Nancy, France.

出版信息

Am J Physiol. 1997 Dec;273(6):R2112-6. doi: 10.1152/ajpregu.1997.273.6.R2112.

Abstract

The paraventricular nucleus (PVN) of the hypothalamus is an important site for the regulation of feeding behavior. Neuropeptide Y (NPY) injected into this nucleus strongly stimulates food intake. In the current study we measured NPY release in the PVN of unrestrained rats through the push-pull technique. The rats were placed in their habitual environment and conditions of life. NPY release was augmented by > 40% (P < 0.01) in Long-Evans rats deprived of food for 12 h. It returned to the baseline as measured in ad libitum-fed rats 90 min after food access. Its stimulation by 55 mM KCl in refed animals indicated that the whole stock of NPY was not used during a short fast. During the light-dark transition, when feeding behavior is initiated. NPY release in lean Zucker rats showed a peak 20 min after lights off and then declined. It corresponded well with the first feeding episodes. In the obese Zucker rats, this peak was absent. NPY release was totally anarchic but at a high level. The feeding behavior of the obese rats was not as time delimited as in the lean rats. This study performed in very physiological conditions therefore indicates that NPY release could drive feeding behavior in the normal life. Its dysregulation in obese rats could participate in overeating and absence of feeding rhythm measured in these rats and speed up the development of their obesity.

摘要

下丘脑室旁核(PVN)是调节摄食行为的重要部位。向该核内注射神经肽Y(NPY)可强烈刺激食物摄入。在本研究中,我们通过推挽技术测量了自由活动大鼠PVN中NPY的释放。将大鼠置于其习惯的环境和生活条件下。禁食12小时的Long-Evans大鼠中,NPY释放增加了40%以上(P<0.01)。在给予食物90分钟后,其恢复到随意进食大鼠所测的基线水平。再喂食动物中55 mM KCl对其的刺激表明,在短期禁食期间NPY的全部储备并未被消耗。在明暗交替期间,即开始摄食行为时,瘦型Zucker大鼠的NPY释放在熄灯后20分钟出现峰值,然后下降。这与首次进食发作情况非常吻合。在肥胖型Zucker大鼠中,该峰值不存在。NPY释放完全无规律,但处于高水平。肥胖大鼠的摄食行为不像瘦大鼠那样受时间限制。因此,在非常接近生理条件下进行的这项研究表明,NPY释放可能在正常生活中驱动摄食行为。其在肥胖大鼠中的失调可能参与了这些大鼠中所观察到的过度进食和缺乏进食节律的情况,并加速了它们肥胖的发展。

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