Isobe Y, Isobe M
Department of Physiology, Nagoya City University Medical School, Mizuho-ku, Nagoya 467, Japan.
Brain Res. 1998 Jul 27;800(1):78-85. doi: 10.1016/s0006-8993(98)00500-9.
Circadian rhythms of locomotor activity and adrenal glucocorticoid are controlled by the suprachiasmatic nucleus (SCN), the center of a biological clock, in mammals. Arg-vasopressin (AVP) contents in the SCN play a role in endogenous circadian rhythm during the absence of time cues. The AVP-containing neurons in the SCN are considered to transmit a circadian signal to the other parts of the brain. The circadian rhythms of AVP in the SCN in relation to the plasma corticosterone and locomotor activity were investigated. Under the light-dark cycle, plasma corticosterone levels were reciprocally correlated with the AVP content in the SCN. Under free-running conditions with constant dim light, AVP rhythms were reciprocally synchronized with the locomotor activity. The correlation of AVP with plasma corticosterone is different at different times of the day both under the LD cycle and constant dim light. Dexamethasone (i. p., 0.1 mg/100) increased the AVP contents, and this tendency was significantly greater during the dark period. These results indicate that corticosterone in the blood may regulate the circadian rhythm through AVP variation in the SCN.
在哺乳动物中,运动活动和肾上腺糖皮质激素的昼夜节律受生物钟的中心——视交叉上核(SCN)控制。在没有时间线索的情况下,SCN中的精氨酸加压素(AVP)含量在内源性昼夜节律中发挥作用。SCN中含AVP的神经元被认为向大脑的其他部分传递昼夜节律信号。研究了SCN中AVP的昼夜节律与血浆皮质酮和运动活动的关系。在明暗周期下,血浆皮质酮水平与SCN中的AVP含量呈负相关。在持续昏暗光照的自由运行条件下,AVP节律与运动活动呈负向同步。在明暗周期和持续昏暗光照下,一天中不同时间AVP与血浆皮质酮的相关性不同。地塞米松(腹腔注射,0.1mg/100)增加了AVP含量,且这种趋势在黑暗期明显更大。这些结果表明,血液中的皮质酮可能通过SCN中AVP的变化来调节昼夜节律。