Seto K, Saito H, Kaba H, Tanaka J, Kitagawa K, Edashige N, Tamai A, Kawakami M
Exp Clin Endocrinol. 1986 Dec;88(3):285-92. doi: 10.1055/s-0029-1210608.
The pyruvate metabolic response to the 1st exposure (exposure on the 1st day) to immobilization stress (IMO) were considerably altered by lesions of the periventricular arcuate nucleus (ARC), ventromedial hypothalamus (VMH), stria terminalis (ST) and dorsal fornix (FX). The pyruvate metabolic responses to IMO were completely abolished by seven times repetition of exposure to IMO in the rabbits with lesions of ARC and VMH; they were similar to sham-operated groups. In rabbits with lesions of ST and FX, the pyruvate metabolic responses to the 7th exposure (exposure on the 7th day) to IMO were almost the same as those after the 1st exposure to IMO, but these metabolic responses were completely abolished by the seven times repetition of exposure to IMO in the sham-operated animals. These results suggest that firstly the ARC, VMH, amygdala (AMYG)-ST system and dorsal hippocampus (HPC)-FX system are involved in the pyruvate metabolic responses to the 1st exposure to IMO, and secondly, that the AMYG-ST system and the HPC-FX system are involved in the disappearance process of pyruvate metabolic responses to IMO by the daily repetition of exposure to IMO.
脑室周围弓状核(ARC)、腹内侧下丘脑(VMH)、终纹床核(ST)和穹窿背侧(FX)的损伤显著改变了丙酮酸对首次暴露(第1天暴露)于制动应激(IMO)的代谢反应。在患有ARC和VMH损伤的兔子中,对IMO的丙酮酸代谢反应在七次重复暴露于IMO后完全消失;它们与假手术组相似。在患有ST和FX损伤的兔子中,对第7次暴露(第7天暴露)于IMO的丙酮酸代谢反应与首次暴露于IMO后的反应几乎相同,但在假手术动物中,这些代谢反应在七次重复暴露于IMO后完全消失。这些结果表明,首先,ARC、VMH、杏仁核(AMYG)-ST系统和背侧海马(HPC)-FX系统参与了对首次暴露于IMO的丙酮酸代谢反应;其次,AMYG-ST系统和HPC-FX系统参与了通过每日重复暴露于IMO导致的丙酮酸对IMO代谢反应的消失过程。