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肝脏神经分离后以及全胃肠外营养时进餐量、进餐次数和进餐持续时间的变化。

Change in meal size, number and duration after neural isolation of liver and with TPN.

作者信息

Ratto C, Gleason J R, Yang Z J, Bellantone R, Crucitti F, Meguid M M

机构信息

Department of Surgery, University Hospital SUNY Health Science Center, Syracuse 13210.

出版信息

Physiol Behav. 1991 Sep;50(3):607-12. doi: 10.1016/0031-9384(91)90553-z.

Abstract

The abundant neural connections between the liver and hypothalamus suggest that the liver contributes to spontaneous food intake (SFI) regulation. This hypothesis was tested in rats after total liver denervation (TLD) and infusing TPN. A sham operation (SO) or TLD was performed in Fischer rats, placed in metabolic cages fitted with an Eater Meter to measure SFI, meal number (MN), size (MZ), and duration (MD). Rats had free access to chow and water. After 22 days, a jugular catheter was placed and normal saline continuously infused for 10 days (days 22-32). Then TPN-100, providing 100% of rats daily energy needs, was infused for 3 days (days 32-35). During the post-SO/TLD and postjugular catheterization periods and during TPN-100, SFI was the same in SO controls and TLD group. However, TLD rats had decreased MZ and MD (interpreted as early satiety) and increased MN (interpreted as increased hunger) to maintain the same SFI as control rats. Although total SFI was not influenced by TLD, it significantly affected feeding pattern, suggesting that the neural isolation of the liver from the brain produces altered hypothalamic regulation of not only the onset of feeding, but also satiety.

摘要

肝脏与下丘脑之间丰富的神经联系表明,肝脏参与了自发食物摄入量(SFI)的调节。在大鼠进行全肝去神经支配(TLD)并输注全胃肠外营养(TPN)后,对这一假设进行了验证。在Fischer大鼠中进行假手术(SO)或TLD,将其置于配备有进食量计的代谢笼中,以测量SFI、进餐次数(MN)、餐量(MZ)和进餐持续时间(MD)。大鼠可自由获取食物和水。22天后,插入颈静脉导管并连续输注生理盐水10天(第22 - 32天)。然后输注提供大鼠每日能量需求100%的TPN - 100,持续3天(第32 - 35天)。在SO/TLD术后、颈静脉插管后以及TPN - 100输注期间,SO对照组和TLD组的SFI相同。然而,TLD大鼠的MZ和MD降低(解释为早期饱腹感),MN增加(解释为饥饿感增加),以维持与对照大鼠相同的SFI。尽管总SFI不受TLD影响,但它显著影响进食模式,这表明肝脏与大脑的神经隔离不仅会改变下丘脑对进食开始的调节,还会改变对饱腹感的调节。

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