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硫胺素缺乏引起大鼠昼夜节律和体温调节的紊乱。

Thiamine deficiency-induced disruptions in the diurnal rhythm and regulation of body temperature in the rat.

作者信息

Langlais P J, Hall T

机构信息

Neurology Research, VA Medical Center/UCSD Sch Med., Department of Psychology, San Diego State University, CA 92120, USA.

出版信息

Metab Brain Dis. 1998 Sep;13(3):225-39. doi: 10.1023/a:1023276009477.

Abstract

In the present study, diurnal rhythm and regulation of body temperature were monitored during and several weeks following pyrithiamine-induced thiamine deficiency (PTD group, n=8) or pairfeeding (control group, n=9). A significant decline of core body temperature and a disruption of its diurnal rhythm were observed at varying stages of PTD treatment. Following thiamine administration and return to thiamine-fortified chow, body temperature continued to fall and several days transpired before body temperature and its diurnal rhythm were returned to normal. When exposed to warm and cold environments, no significant group differences were observed in either the maximum temperature change or the time elapsed to reach maximal temperature change. Histological examination revealed necrotic lesions in thalamus and mammillary body in the PTD group characteristic of Wernicke's encephalopathy. No significant damage was observed in the medial preoptic and suprachiasmatic nuclei, brain regions involved in the regulation of body temperature and circadian rhythm. These findings suggest that hypothermia and disruption of the diurnal rhythm of body temperature can be reversed by restoration of adequate thiamine levels and are related to biochemical and physiological disturbances rather than gross structural changes.

摘要

在本研究中,对硫胺素诱导的硫胺素缺乏期间及之后数周(硫胺素缺乏组,n = 8)或配对喂养(对照组,n = 9)的体温昼夜节律和调节进行了监测。在硫胺素缺乏治疗的不同阶段观察到核心体温显著下降及其昼夜节律紊乱。给予硫胺素并恢复到添加硫胺素的食物后,体温继续下降,数天后体温及其昼夜节律才恢复正常。当暴露于温暖和寒冷环境时,在最大温度变化或达到最大温度变化所需的时间方面,未观察到显著的组间差异。组织学检查显示硫胺素缺乏组丘脑和乳头体有坏死性病变,具有韦尼克脑病的特征。在视前内侧核和视交叉上核(参与体温调节和昼夜节律的脑区)未观察到明显损伤。这些发现表明,通过恢复足够的硫胺素水平,体温过低和体温昼夜节律紊乱可以得到逆转,并且与生化和生理紊乱有关,而非严重的结构变化。

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