Kitaoka K, Kaba H, Saito H, Kimura F, Kawakami M
First Department of Physiology, Kochi Medical School, Nankoku, Japan.
Exp Clin Endocrinol. 1992;100(3):99-105. doi: 10.1055/s-0029-1211186.
In this study we examine the effects of lesions to limbic or hypothalamic structures on the metabolic responses of phenylalanine in liver slices prepared from rabbits exposed to cold stress (-20 degrees C) for 12 hours at a fixed time once a day. The results were as follows: 1. The 1st cold exposure (cold exposure on the 1st day) had marked and various effects on phenylalanine metabolism, and the metabolic responses of phenylalanine to cold exposure gradually decreased and then completely disappeared with repetitions of exposure in intact rabbits. 2. The metabolic patterns and responses of phenylalanine to the 1st cold exposure were altered by lesioning the periventricular arcuate nucleus (ARC), ventromedial hypothalamus (VMH), stria terminalis (ST) or dorsal fornix (FX). 3. The complete abolishment of the metabolic responses to cold exposure by its repetition was observed in rabbits with lesions in the ARC or VMH as well. 4. In contrast, metabolic responses of phenylalanine to cold exposure in rabbits with lesions in the ST or FX remained even after six exposures. These results suggest that the ARC, VMH, amygdala (AMYG)-ST system and dorsal hippocampus (HPC)-FX system played a role in the metabolic regulation of phenylalanine and in the metabolic responses of phenylalanine to the 1st cold exposure and that the AMYG-ST and HPC-FX systems, but not the ARC or VMH, participated in the process of the metabolic adaptation of phenylalanine to cold exposure.
在本研究中,我们检测了对暴露于冷应激(-20℃)12小时的家兔,每天在固定时间进行一次冷应激处理,连续处理12小时后,损毁其边缘系统或下丘脑结构对肝脏切片中苯丙氨酸代谢反应的影响。结果如下:1. 首次冷暴露(第1天的冷暴露)对苯丙氨酸代谢有显著且多样的影响,在未损毁的家兔中,随着冷暴露次数的增加,苯丙氨酸对冷暴露的代谢反应逐渐降低,最终完全消失。2. 损毁室周弓状核(ARC)、腹内侧下丘脑(VMH)、终纹床核(ST)或穹窿背侧部(FX)会改变苯丙氨酸对首次冷暴露的代谢模式和反应。3. 在ARC或VMH损毁的家兔中,重复冷暴露也会导致对冷暴露的代谢反应完全消失。4. 相反,ST或FX损毁的家兔即使经过6次冷暴露,苯丙氨酸对冷暴露的代谢反应仍然存在。这些结果表明,ARC、VMH、杏仁核(AMYG)-ST系统和背侧海马体(HPC)-FX系统在苯丙氨酸的代谢调节以及苯丙氨酸对首次冷暴露的代谢反应中发挥了作用,并且AMYG-ST和HPC-FX系统,而非ARC或VMH,参与了苯丙氨酸对冷暴露的代谢适应过程。