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注入眼镜蛇毒素后对视交叉上核的运动活动节律的干扰。

Perturbations of locomotor activity rhythms following suprachiasmatic bungarotoxin infusion.

作者信息

Pauly J R, Horseman N D

机构信息

Department of Biology, Marquette University, Milwaukee, WI 53233.

出版信息

Physiol Behav. 1988;43(6):859-65. doi: 10.1016/0031-9384(88)90390-3.

Abstract

The actions of intracranial injections of alpha bungarotoxin (BTX) on locomotor activity rhythms were examined in male rats. The hypothalamic suprachiasmatic region is known to be a locus of high affinity BTX binding although the potential roles of this receptor system are unknown. Rats were stereotaxically implanted with cannulae aimed just dorsal to the SCN (or cortex for control injections). Free-running locomotor activity rhythms in darkness were constantly monitored. Seventy-eight percent (78%) of the animals injected with BTX in the SCN region had phase shifts that were outside the 99% confidence limits of control animals. Infusion of either saline (into the SCN) or BTX into cortex were without effects. Doses of BTX varied from 125 fmol to 600 pmol. At the highest dose a substantial fraction of the animals showed both period changes and loss of rhythmicity as well as phase shifts. Although nearly all of the animals injected with BTX experienced phase shifts the direction of the shifts were not consistently correlated with the circadian time of injection. However, the sensitivity of the animals varied systematically with the smallest shifts resulting after injection at CT12 and CT16. These results argue that BTX does not influence the SCN pacemaker as an entraining signal but does potently perturb the circadian system.

摘要

研究了向雄性大鼠颅内注射α-银环蛇毒素(BTX)对其运动活动节律的影响。下丘脑视交叉上核区域是已知的高亲和力BTX结合位点,尽管该受体系统的潜在作用尚不清楚。大鼠通过立体定位植入套管,使其正好位于视交叉上核的背侧(或用于对照注射的皮层)。持续监测大鼠在黑暗中的自由活动节律。在视交叉上核区域注射BTX的动物中,78%出现了超出对照动物99%置信区间的相位偏移。向皮层注射生理盐水(注入视交叉上核)或BTX均无影响。BTX的剂量从125飞摩尔到600皮摩尔不等。在最高剂量时,相当一部分动物出现了周期变化、节律丧失以及相位偏移。尽管几乎所有注射BTX的动物都经历了相位偏移,但偏移方向与注射的昼夜时间并不始终相关。然而,动物的敏感性存在系统性差异,在CT12和CT16注射后产生的偏移最小。这些结果表明,BTX并不作为一种同步信号影响视交叉上核起搏器,但确实会强烈干扰昼夜节律系统。

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