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高热量负荷会引发产热,但会抑制交感神经系统和下丘脑-垂体-肾上腺轴系统中的应激反应。

A hypercaloric load induces thermogenesis but inhibits stress responses in the SNS and HPA system.

作者信息

Strack A M, Akana S F, Horsley C J, Dallman M F

机构信息

Department of Physiology, University of California, San Francisco 94143-0444, USA.

出版信息

Am J Physiol. 1997 Mar;272(3 Pt 2):R840-8. doi: 10.1152/ajpregu.1997.272.3.R840.

Abstract

Caloric overingestion generates a sympathetic nervous system (SNS)-mediated increase in brown adipose tissue (BAT) thermogenesis; its effect on the hypothalamo-pituitary-adrenal (HPA) axis is unknown. To determine whether metabolic activation affects the HPA axis, male rats were provided palatable sucrose ad libitum. After 5 or 10 days of sucrose ingestion, BAT and basal and restraint-induced HPA variables were measured. Some rats were instrumented with temperature probes. BAT temperature and HPA axis responses to restraint were measured. Although caloric intake increased > or = 18%, body weight gain did not change after sucrose ingestion; DNA, protein, and uncoupling protein increased in BAT depots, and white adipose tissues were heavier after both 5 and 10 days. During days 5-10, the BAT-core temperature difference was +0.30 degrees C in sucrose rats and -0.46 degrees C in controls (P < 0.05); this, together with the biochemical changes, shows persistent activation of BAT by excess calories. Basal HPA measures were not altered. The sucrose group exhibited smaller BAT temperature and HPA responses to restraint on day 10; there was no HPA difference on day 5. We conclude that calorically mediated increases in BAT thermogenesis are independent of basal HPA activity; however, both systems respond concordantly to restraint stress. The diminished response to restraint in both systems in sucrose-fed rats may result from signals indicating increased energy stores.

摘要

热量摄入过多会引发交感神经系统(SNS)介导的棕色脂肪组织(BAT)产热增加;但其对下丘脑 - 垂体 - 肾上腺(HPA)轴的影响尚不清楚。为了确定代谢激活是否会影响HPA轴,给雄性大鼠随意提供美味的蔗糖。在摄入蔗糖5天或10天后,测量BAT以及基础和束缚诱导的HPA变量。一些大鼠安装了温度探头。测量BAT温度和HPA轴对束缚的反应。尽管热量摄入增加≥18%,但摄入蔗糖后体重增加并未改变;BAT储存部位的DNA、蛋白质和解偶联蛋白增加,5天和10天后白色脂肪组织均更重。在第5 - 10天期间,蔗糖喂养大鼠的BAT与核心体温差为+0.30℃,对照组为-0.46℃(P < 0.05);这与生化变化一起表明,多余热量使BAT持续激活。基础HPA指标未改变。蔗糖组在第10天对束缚的BAT温度和HPA反应较小;第5天HPA无差异。我们得出结论,热量介导的BAT产热增加独立于基础HPA活性;然而,两个系统对束缚应激的反应是一致的。蔗糖喂养大鼠的两个系统对束缚的反应减弱可能是由于表明能量储存增加的信号所致。

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