Moises H C, Waterhouse B D, Woodward D J
Brain Res. 1981 Oct 5;222(1):43-64. doi: 10.1016/0006-8993(81)90939-2.
In cerebellum, the evoked responses of the Purkinje cell to both excitatory and inhibitory afferent input have previously been shown to be enhanced by local iontophoresis of norepinephrine (NE). The influence of locus coeruleus (LC) conditioning stimulation on Purkinje cell responses to climbing fiber input was examined to determine whether endogenous NE, released from synaptic terminals, could exert similar potentiative effects. Stimulation of LC, at intensities which by themselves were subthreshold for directly affecting background activity, markedly enhanced complex spike excitation of Purkinje cells elicited by activation of climbing fiber inputs from sensorimotor cortex. Depressant responses observed after complex spike excitation were also augmented by the LC conditioning. Iontophoretic application of sotalol, a specific beta-adrenergic receptor blocker, reversibly antagonized this facilitation of climbing fiber-evoked responses. In addition, the potentiative effects of LC stimulation were not observed after destruction of NE-containing axons and terminals in cerebellum by 6-OHDA. These results suggest that noradrenergic input from the LC can enhance the efficacy of climbing fiber synaptic action on the Purkinje cell, and are thus consistent with the hypothesis of a 'modulatory' role rather than a specific information transfer function for NE in cerebellum.
在小脑,先前已表明,通过去甲肾上腺素(NE)的局部离子电渗法可增强浦肯野细胞对兴奋性和抑制性传入输入的诱发反应。研究了蓝斑(LC)条件刺激对浦肯野细胞对攀缘纤维输入反应的影响,以确定从突触终末释放的内源性NE是否能发挥类似的增强作用。以本身低于直接影响背景活动阈值的强度刺激LC,可显著增强由感觉运动皮层的攀缘纤维输入激活所引发的浦肯野细胞的复合锋电位兴奋。在复合锋电位兴奋后观察到的抑制性反应也因LC条件刺激而增强。离子电渗法应用索他洛尔(一种特异性β-肾上腺素能受体阻滞剂)可可逆地拮抗这种对攀缘纤维诱发反应的易化作用。此外,在用6-羟基多巴胺破坏小脑中含NE的轴突和终末后,未观察到LC刺激的增强作用。这些结果表明,来自LC的去甲肾上腺素能输入可增强攀缘纤维对浦肯野细胞的突触作用效能,因此与NE在小脑中具有“调制”作用而非特定信息传递功能的假说一致。