Suppr超能文献

向室旁核注射肽YY和神经肽Y可优先增强碳水化合物摄取。

Paraventricular nucleus injections of peptide YY and neuropeptide Y preferentially enhance carbohydrate ingestion.

作者信息

Stanley B G, Daniel D R, Chin A S, Leibowitz S F

出版信息

Peptides. 1985 Nov-Dec;6(6):1205-11. doi: 10.1016/0196-9781(85)90452-8.

Abstract

Neuropeptide Y (NPY) injected into the paraventricular nucleus (PVN) is known to elicit a powerful feeding response in satiated, brain-cannulated rats. The present experiment investigates the effect of peptide YY (PYY), a structurally-related peptide, on feeding behavior and, in addition, the effects of both PYY and NPY on the pattern of macronutrient selection. Injection of PYY directly into the PVN, in doses ranging from 7.8 to 235 pmol/0.3 microliters, caused a strong, dose-dependent stimulation of feeding behavior, as well as a small stimulation of drinking behavior, in satiated rats. The mean latency to eat was 9.3 min, with substantial feeding occurring within 30 min of the injection. At low doses, the increase in feeding was seen predominantly during the first hr. At the highest dose, in contrast, food intake continued to increase progressively over the next few hr. such that by 4 hr postinjection food intake was more than 20 g over vehicle baseline. In 1 hr tests with 3 pure macronutrient (protein, fat and carbohydrate) diets simultaneously available, PYY and NPY (78 pmol/0.3 microliters) both elicited a strong and selective increase in carbohydrate consumption, with little or no effect on protein or fat consumption. These results suggest that hypothalamic receptors sensitive to PYY and NPY may participate in the control of carbohydrate consumption.

摘要

已知向饱足的、脑部插管的大鼠室旁核(PVN)注射神经肽Y(NPY)会引发强烈的进食反应。本实验研究了结构相关肽YY肽(PYY)对进食行为的影响,此外,还研究了PYY和NPY对常量营养素选择模式的影响。向饱足的大鼠PVN直接注射剂量范围为7.8至235 pmol/0.3微升的PYY,会引起强烈的、剂量依赖性的进食行为刺激,以及对饮水行为的轻微刺激。进食的平均潜伏期为9.3分钟,注射后30分钟内出现大量进食。在低剂量时,进食增加主要出现在最初1小时内。相比之下,在最高剂量时,食物摄入量在接下来的几个小时内持续逐渐增加,以至于注射后4小时的食物摄入量比溶剂基线高出20多克。在同时提供三种纯常量营养素(蛋白质、脂肪和碳水化合物)饮食的1小时测试中,PYY和NPY(78 pmol/0.3微升)均引发碳水化合物消耗量的强烈且选择性增加,而对蛋白质或脂肪消耗量几乎没有影响。这些结果表明,对PYY和NPY敏感的下丘脑受体可能参与碳水化合物消耗的控制。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验