Liang Hou-Cheng, Zhang Jing-Dong, Luo Pi-Fu, Qiao Ying, Su An-Le, Zhang Ting, Zhu Hong-Na
Xi'an BRIGHT Eye Hospital, Xi'an 710068, Shaanxi Province, China.
Department of Ophthalmology, the Second Affiliated Hospital of Xi'an Jiaotong University (Xibei Hospital), Xi'an 710002, Shaanxi Province, China.
Int J Ophthalmol. 2018 Mar 18;11(3):382-388. doi: 10.18240/ijo.2018.03.06. eCollection 2018.
To investigate a possible trigeminal proprioceptive-oculomotor neural pathway and explore possible synaptic connections between neurons in this pathway. Attempt to bring a new insight to mechanism of Marcus Gunn syndrome (MGS).
Anterograde and retrograde tract tracing was applied and combined with immunofluorescent stain in rats. After electrophysiological identifying mesencephalic trigeminal nucleus (Vme) neurons, intracellular injection of tracer was performed to trace axon trajectory.
Following injections of anterograde tracers into the Vme, labeled terminals were observed ipsilateral in oculomotor and trochlear nuclei (III/IV), as well as in their premotor neurons in interstitial nucleus of Cajal and Darkschewitsch nucleus (INC/DN). Combining with choline acetyltransferase (ChAT) immunofluorescent stain, it showed that Vme projecting terminals contact upon ChAT positive III/IV motoneurons under confocal microscope. By retrograde labeling premotor neurons of the III, it showed that Vme neuronal terminals contact with retrogradely labeled pre-oculomotor neurons in the INC/DN. Axons of intracellularly labeled Vme neurons that respond to electric stimuli of the masseter nerve traveled into the ipsilateral III.
There may exist a trigeminal proprioceptive-oculomotor system neural circuit in the rat, which is probably related to vertical-torsional eye movements. Possible association of this pathway with MGS etiology was discussed.
研究可能存在的三叉神经本体感觉 - 动眼神经神经通路,并探索该通路中神经元之间可能的突触连接。试图为马库斯·冈恩综合征(MGS)的发病机制带来新的见解。
在大鼠中应用顺行和逆行束路追踪,并结合免疫荧光染色。在电生理鉴定中脑三叉神经核(Vme)神经元后,进行细胞内注射示踪剂以追踪轴突轨迹。
将顺行示踪剂注入Vme后,在同侧的动眼神经核和滑车神经核(III/IV)以及它们在 Cajal 间质核和 Darkschewitsch 核(INC/DN)中的运动前神经元中观察到标记的终末。结合胆碱乙酰转移酶(ChAT)免疫荧光染色,共聚焦显微镜下显示Vme投射终末与ChAT阳性的III/IV运动神经元接触。通过逆行标记III的运动前神经元,显示Vme神经元终末与INC/DN中逆行标记的动眼神经前神经元接触。对咬肌神经电刺激有反应的细胞内标记的Vme神经元的轴突进入同侧III。
大鼠中可能存在三叉神经本体感觉 - 动眼神经系统神经回路,这可能与垂直扭转眼球运动有关。讨论了该通路与MGS病因学的可能关联。