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中脑运动区向四足动物的后脑网状脊髓神经元发送双侧谷氨酸能驱动。

The mesencephalic locomotor region sends a bilateral glutamatergic drive to hindbrain reticulospinal neurons in a tetrapod.

作者信息

Ryczko Dimitri, Auclair Francois, Cabelguen Jean-Marie, Dubuc Réjean

机构信息

Groupe de Recherche sur le Système Nerveux Central, Département de neurosciences, Université de Montréal, Montréal, Québec, Canada.

INSERM U862 - Neurocentre Magendie, Motor System Diseases Team, Bordeaux Cedex, France.

出版信息

J Comp Neurol. 2016 May 1;524(7):1361-83. doi: 10.1002/cne.23911. Epub 2015 Nov 7.

Abstract

In vertebrates, stimulation of the mesencephalic locomotor region (MLR) on one side evokes symmetrical locomotor movements on both sides. How this occurs was previously examined in detail in a swimmer using body undulations (lamprey), but in tetrapods the downstream projections from the MLR to brainstem neurons are not fully understood. Here we examined the brainstem circuits from the MLR to identified reticulospinal neurons in the salamander Notophthalmus viridescens. Using neural tracing, we show that the MLR sends bilateral projections to the middle reticular nucleus (mRN, rostral hindbrain) and the inferior reticular nucleus (iRN, caudal hindbrain). Ca(2+) imaging coupled to electrophysiology in in vitro isolated brains revealed very similar responses in reticulospinal neurons on both sides to a unilateral MLR stimulation. As the strength of MLR stimulation was increased, the responses increased in size in reticulospinal neurons of the mRN and iRN, but the responses in the iRN were smaller. Bath-application or local microinjections of glutamatergic antagonists markedly reduced reticulospinal neuron responses, indicating that the MLR sends glutamatergic inputs to reticulospinal neurons. In addition, reticulospinal cells responded to glutamate microinjections and the size of the responses paralleled the amount of glutamate microinjected. Immunofluorescence coupled with anatomical tracing confirmed the presence of glutamatergic projections from the MLR to reticulospinal neurons. Overall, we show that the brainstem circuits activated by the MLR in the salamander are organized similarly to those previously described in lampreys, indicating that the anatomo-physiological features of the locomotor drive are well conserved in vertebrates. J. Comp. Neurol. 524:1361-1383, 2016. © 2015 The Authors The Journal of Comparative Neurology Published by Wiley Periodicals, Inc.

摘要

在脊椎动物中,刺激一侧的中脑运动区(MLR)会引发双侧对称的运动。此前,人们曾在利用身体波动进行游动的动物(七鳃鳗)身上详细研究过这一现象的发生机制,但在四足动物中,MLR向脑干神经元的下游投射尚未完全明确。在此,我们研究了蝾螈绿红东美螈中从MLR到已鉴定的网状脊髓神经元的脑干回路。通过神经示踪,我们发现MLR向中间网状核(mRN,延髓前部)和下位网状核(iRN,延髓后部)发出双侧投射。在体外分离脑片中,结合电生理学的Ca(2+)成像显示,单侧MLR刺激时,两侧的网状脊髓神经元反应非常相似。随着MLR刺激强度的增加,mRN和iRN的网状脊髓神经元反应幅度增大,但iRN中的反应较小。浴用或局部微量注射谷氨酸能拮抗剂可显著降低网状脊髓神经元的反应,表明MLR向网状脊髓神经元发送谷氨酸能输入。此外,网状脊髓细胞对谷氨酸微量注射有反应,且反应幅度与微量注射的谷氨酸量平行。免疫荧光结合解剖学示踪证实了从MLR到网状脊髓神经元存在谷氨酸能投射。总体而言,我们表明蝾螈中由MLR激活的脑干回路与此前在七鳃鳗中描述的回路组织方式相似,这表明运动驱动的解剖生理特征在脊椎动物中得到了很好的保留。《比较神经学杂志》524:1361 - 1383, 2016。© 2015作者 比较神经学杂志 由威利期刊公司出版

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67f8/5019149/65967cf3f1d6/CNE-524-1361-g001.jpg

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