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喂食和禁食24小时的大鼠在热应激和制动应激联合作用下肾上腺儿茶酚胺合成速率的变化

Adrenal catecholamine synthesis rate changes induced by combined thermal and immobilization stress in fed and 24 hour fasted rats.

作者信息

Bargiel Z, Nowicka H

机构信息

Department of Animal Physiology, N. Copernicus University, Toruń.

出版信息

Folia Histochem Cytobiol. 1989;27(2):89-95.

PMID:2767283
Abstract

The combined stress of acute immobilization (IM) at high and low ambient temperature has been used to determine its influence on adrenal catecholamine (CA) content assassed histofluorimetrically in fed and 24 hour fasted rats. The general course of changes obtained after the arrangement of adrenal strips deriving from the adrenals of rats exposed to cold and IM stress (CIMS) at +10 degrees C to -25 degrees C during the different time fragments presented the adrenal CA depletion events followed sometimes by the adrenal CA content increase after the longer stress exposure or/and stronger CIMS and WIMS conditions. It was found that this depletion-stimulated increase of adrenal Ca synthesis rate had been accelerated in 24 h fasted rats compared to satiated ones exposed to the same stress conditions, especially after the CIMS exposure. Moreover the survival time duration at first lethal temperature (-5 degrees C and +45 degrees C) was significantly higher in fasted rats. The possible hypothalamic regulation of adrenal CA synthesis rate accordingly to the actual metabolism needs and beta-adrenoceptor sensitivity changes depending on satiety state have been discussed and the necessity of further investigations concerning the specificity of stress-induced metabolism changes in 24 h starved rats has been suggested.

摘要

在高低环境温度下急性固定(IM)的联合应激已被用于确定其对通过组织荧光分析法测定的喂食和禁食24小时大鼠肾上腺儿茶酚胺(CA)含量的影响。在不同时间段,将暴露于+10摄氏度至-25摄氏度的寒冷和IM应激(CIMS)环境下的大鼠肾上腺制成条带后,所获得的变化总体过程显示,肾上腺CA出现耗竭情况,有时在较长时间的应激暴露或/和更强的CIMS和WIMS条件下,肾上腺CA含量会增加。结果发现,与处于相同应激条件下的饱腹大鼠相比,禁食24小时的大鼠中这种因耗竭而刺激的肾上腺CA合成速率增加有所加速,尤其是在暴露于CIMS之后。此外,禁食大鼠在首个致死温度(-5摄氏度和+45摄氏度)下的存活时间明显更长。文中讨论了下丘脑根据实际代谢需求对肾上腺CA合成速率的可能调节以及β-肾上腺素能受体敏感性随饱腹感状态的变化,并提出有必要进一步研究24小时饥饿大鼠应激诱导的代谢变化的特异性。

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