Finkel Eran, Etlin Alex, Cherniak Meir, Mor Yoav, Lev-Tov Aharon, Anglister Lili
Department of Medical Neurobiology, IMRIC, Hebrew University-Hadassah Medical School, Jerusalem, 91120, Israel.
J Comp Neurol. 2014 Oct 15;522(15):3437-55. doi: 10.1002/cne.23613. Epub 2014 May 5.
Synaptic excitation by sacrocaudal afferent (SCA) input of sacral relay neurons projecting rostrally through the ventral white matter funiculi (VF neurons) is a potent activator of the hindlimb central pattern generators (CPGs) in rodent spinal cords lacking descending supraspinal control. Using electrophysiological recordings from the sacral and lumbar spinal segments, we show that the motor output of the lumbar segments produced by SCA stimulation is enhanced by exposing the sacral segments of the neonatal rat spinal cord to the acetylcholinesterase inhibitor edrophonium (EDR). Histochemical and immunostaining of the sacral cord reveals expression of acetylcholinesterase activity, ability to synthesize acetylcholine, and/or innervation by cholinergic synaptic inputs in significant proportions of fluorescently back-labeled sacral VF neurons. Moreover, the majority of the VF neurons express M2 muscarinic receptors, raising the possibility that the elevated acetylcholine levels resulting from inhibition of acetylcholinesterase act on such receptors. Indeed, sacral application of atropine or the M2 -type receptor antagonist methoctramine was found to reverse the effects of EDR. We suggest that variations in the sacral level of acetylcholine modulate the SCA-induced locomotor rhythm via muscarinic receptor-dependent mechanisms and that the modified activity of sacral VF neurons in the presence of an acetylcholinesterase inhibitor can be partially ascribed to the cholinergic components associated with them. Thus, pharmacological manipulations of the sacral cholinergic system may be used to modulate the locomotor-related motor output in the absence of descending supraspinal control.
通过腹侧白质索向上投射的骶中继神经元(VF神经元)的骶尾传入(SCA)输入产生的突触兴奋,是缺乏下行脊髓上控制的啮齿动物脊髓中后肢中枢模式发生器(CPG)的有效激活剂。利用来自骶段和腰段脊髓的电生理记录,我们发现,通过将新生大鼠脊髓的骶段暴露于乙酰胆碱酯酶抑制剂依酚氯铵(EDR),SCA刺激产生的腰段运动输出会增强。骶段脊髓的组织化学和免疫染色显示,在相当比例的荧光逆向标记的骶VF神经元中,存在乙酰胆碱酯酶活性表达、合成乙酰胆碱的能力和/或胆碱能突触输入的神经支配。此外,大多数VF神经元表达M2毒蕈碱受体,这增加了乙酰胆碱酯酶抑制导致的乙酰胆碱水平升高作用于此类受体的可能性。事实上,发现骶段应用阿托品或M2型受体拮抗剂甲溴东莨菪碱可逆转EDR的作用。我们认为,骶段乙酰胆碱水平的变化通过毒蕈碱受体依赖性机制调节SCA诱导的运动节律,并且在存在乙酰胆碱酯酶抑制剂的情况下,骶VF神经元的活性改变可部分归因于与其相关的胆碱能成分。因此,在没有下行脊髓上控制的情况下,骶胆碱能系统的药理学操作可用于调节与运动相关的运动输出。