Suppr超能文献

大鼠视前区对非寒战产热控制的传出投射。

Efferent projection from the preoptic area for the control of non-shivering thermogenesis in rats.

作者信息

Chen X M, Hosono T, Yoda T, Fukuda Y, Kanosue K

机构信息

Department of Physiology, Osaka University Medical School, Yamadaoka 2-2, Suita, Osaka 565-0871, Japan.

出版信息

J Physiol. 1998 Nov 1;512 ( Pt 3)(Pt 3):883-92. doi: 10.1111/j.1469-7793.1998.883bd.x.

Abstract
  1. To investigate the characteristics of efferent projections from the preoptic area for the control of non-shivering thermogenesis, we tested the effects of thermal or chemical stimulation, and transections of the preoptic area on the activity of interscapular brown adipose tissue in cold-acclimated and non-acclimated anaesthetized rats. 2. Electrical stimulation of the ventromedial hypothalamic nucleus (VMH) elicited non-shivering thermogenesis in the brown adipose tissue (BAT); warming the preoptic area to 41.5 C completely suppressed the thermogenic response. 3. Injections of d, l-homocysteic acid (DLH; 0.5 mM, 0.3 microliter) into the preoptic area also significantly attenuated BAT thermogenesis, whereas injections of control vehicle had no effect. 4. Transections of the whole hypothalamus in the coronal plane at the level of the paraventricular nucleus induced rapid and large rises in BAT and rectal temperatures. This response was not blocked by pretreatment with indomethacin. The high rectal and BAT temperatures were sustained more than 1 h, till the end of the experiment. Bilateral knife cuts that included the medial forebrain bundle but not the paraventricular nuclei elicited similar rises in BAT and rectal temperatures. Medial knife cuts had no effect. 5. These results suggest that warm-sensitive neurones in the preoptic area contribute a larger efferent signal for non-shivering thermogenesis than do cold-sensitive neurones, and that the preoptic area contributes a tonic inhibitory input to loci involved with non-shivering thermogenesis. This efferent inhibitory signal passes via lateral, but not medial, hypothalamic pathways.
摘要
  1. 为研究视前区传出投射对非寒战产热控制的特征,我们测试了热刺激或化学刺激以及视前区横断对冷适应和未适应的麻醉大鼠肩胛间棕色脂肪组织活性的影响。2. 电刺激腹内侧下丘脑核(VMH)可引起棕色脂肪组织(BAT)的非寒战产热;将视前区加热至41.5℃可完全抑制产热反应。3. 向视前区注射d,l-高半胱氨酸(DLH;0.5 mM,0.3微升)也可显著减弱BAT产热,而注射对照载体则无作用。4. 在室旁核水平冠状面横断整个下丘脑可导致BAT和直肠温度迅速大幅升高。吲哚美辛预处理不能阻断此反应。高直肠温度和BAT温度持续超过1小时,直至实验结束。包括内侧前脑束但不包括室旁核的双侧刀切也可引起BAT和直肠温度类似升高。内侧刀切无作用。5. 这些结果表明,视前区的温敏神经元对非寒战产热的传出信号贡献大于冷敏神经元,且视前区对参与非寒战产热的位点有紧张性抑制性输入。这种传出抑制信号通过下丘脑外侧而非内侧途径传递。

相似文献

2
Central efferent pathways for cold-defensive and febrile shivering.冷防御性和发热性战栗的中枢传出通路。
J Physiol. 2011 Jul 15;589(Pt 14):3641-58. doi: 10.1113/jphysiol.2011.210047. Epub 2011 May 24.

引用本文的文献

7
Central nervous system circuits that control body temperature.控制体温的中枢神经系统回路。
Neurosci Lett. 2019 Mar 23;696:225-232. doi: 10.1016/j.neulet.2018.11.027. Epub 2018 Dec 23.
10
Regulation of Body Temperature by the Nervous System.神经系统对体温的调节。
Neuron. 2018 Apr 4;98(1):31-48. doi: 10.1016/j.neuron.2018.02.022.

本文引用的文献

1
4
Hypothalamic network for thermoregulatory shivering.用于体温调节性寒战的下丘脑网络。
Am J Physiol. 1994 Jul;267(1 Pt 2):R275-82. doi: 10.1152/ajpregu.1994.267.1.R275.
10
A simple microknife manipulator.一种简易的微型刀操纵器。
Electroencephalogr Clin Neurophysiol. 1982 Aug;54(2):237-8. doi: 10.1016/0013-4694(82)90167-5.

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