Guo Ao, Feng Jun-Yang, Li Jia, Ding Nan, Li Ying-Jun, Qiu De-Lai, Piao Ri-Long, Chu Chun-Ping
Cellular Function Research Center, Yanbian University, 977 GongYuan Road, Yanji City, Jilin Province, 133002, China; College of Medicine, Yanbian University, 977 GongYuan Road, Yanji City, Jilin Province, 133002, China.
College of Medicine, Yanbian University, 977 GongYuan Road, Yanji City, Jilin Province, 133002, China.
Neurosci Lett. 2016 Aug 26;629:262-266. doi: 10.1016/j.neulet.2016.06.058. Epub 2016 Jun 28.
Norepinephrine (NE), from the locus coeruleus (LC), has been supported to affect GABAergic system and parallel fiber (PF)-Purkinje cell (PC) synaptic transmission via adrenoceptor in cerebellum cortex. However, the effects of NE on the spontaneous spike activity of cerebellar PCs in living mouse have not yet been fully understood. We here examined the effects of NE on the spontaneous activity of PC in urethane-anesthetized mice by electrophysiological and pharmacological methods. Cerebellar surface application of NE (2.5-25μM) reduced the PC simple spike (SS) firing rate in a dose-dependent manner. The half-inhibitory concentration (IC50) was 5.97μM. In contrast, NE significantly increased the spontaneous firing rate of molecular layer interneuron (MLI). Application of GABAA receptor antagonist, gabazine (SR95531, 20μM) not only blocked the NE-induced inhibition of PC SS firing but also revealed NE-induced excitation of cerebellar PC. Blocking AMPA receptors activity enhanced NE-induced inhibition of PC spontaneous activity. Moreover, the effects of NE on PC spontaneous activity were abolished by simultaneously blocking GABAA and AMPA receptors activity. These results indicated that NE bidirectional modulated the spontaneous activity of PCs via enhancing both inhibitory inputs from MLIs and excitatory inputs of parallel fibers, but NE-induced enhance of inhibitory inputs overwhelmed the excitatory inputs under in vivo conditions.
来自蓝斑核(LC)的去甲肾上腺素(NE)已被证实可通过小脑皮质中的肾上腺素能受体影响GABA能系统和平行纤维(PF)-浦肯野细胞(PC)突触传递。然而,NE对活体小鼠小脑浦肯野细胞自发放电活动的影响尚未完全清楚。我们在此通过电生理和药理学方法研究了NE对乌拉坦麻醉小鼠浦肯野细胞自发放电活动的影响。小脑表面应用NE(2.5 - 25μM)以剂量依赖的方式降低了浦肯野细胞简单锋电位(SS)的发放频率。半数抑制浓度(IC50)为5.97μM。相反,NE显著增加了分子层中间神经元(MLI)的自发放电频率。应用GABAA受体拮抗剂gabazine(SR95531,20μM)不仅阻断了NE诱导的浦肯野细胞SS发放抑制,还揭示了NE诱导的小脑浦肯野细胞兴奋。阻断AMPA受体活性增强了NE诱导的浦肯野细胞自发放电活动抑制。此外,同时阻断GABAA和AMPA受体活性可消除NE对浦肯野细胞自发放电活动的影响。这些结果表明,NE通过增强来自分子层中间神经元的抑制性输入和平行纤维的兴奋性输入双向调节浦肯野细胞的自发放电活动,但在体内条件下,NE诱导的抑制性输入增强超过了兴奋性输入。