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脑脊液接触神经元通过将机械刺激传递至脊髓回路来调节运动。

CSF-contacting neurons regulate locomotion by relaying mechanical stimuli to spinal circuits.

作者信息

Böhm Urs Lucas, Prendergast Andrew, Djenoune Lydia, Nunes Figueiredo Sophie, Gomez Johanna, Stokes Caleb, Kaiser Sonya, Suster Maximilliano, Kawakami Koichi, Charpentier Marine, Concordet Jean-Paul, Rio Jean-Paul, Del Bene Filippo, Wyart Claire

机构信息

Institut du Cerveau et de la Moelle épinière, Paris 75013, France.

UPMC Univ. Paris 06, Paris 75005, France.

出版信息

Nat Commun. 2016 Mar 7;7:10866. doi: 10.1038/ncomms10866.

Abstract

Throughout vertebrates, cerebrospinal fluid-contacting neurons (CSF-cNs) are ciliated cells surrounding the central canal in the ventral spinal cord. Their contribution to modulate locomotion remains undetermined. Recently, we have shown CSF-cNs modulate locomotion by directly projecting onto the locomotor central pattern generators (CPGs), but the sensory modality these cells convey to spinal circuits and their relevance to innate locomotion remain elusive. Here, we demonstrate in vivo that CSF-cNs form an intraspinal mechanosensory organ that detects spinal bending. By performing calcium imaging in moving animals, we show that CSF-cNs respond to both passive and active bending of the spinal cord. In mutants for the channel Pkd2l1, CSF-cNs lose their response to bending and animals show a selective reduction of tail beat frequency, confirming the central role of this feedback loop for optimizing locomotion. Altogether, our study reveals that CSF-cNs constitute a mechanosensory organ operating during locomotion to modulate spinal CPGs.

摘要

在整个脊椎动物中,脑脊液接触神经元(CSF-cNs)是围绕脊髓腹侧中央管的纤毛细胞。它们对运动调节的贡献尚未确定。最近,我们发现CSF-cNs通过直接投射到运动中枢模式发生器(CPG)上来调节运动,但这些细胞向脊髓回路传递的感觉模式及其与先天运动的相关性仍然难以捉摸。在这里,我们在体内证明CSF-cNs形成了一个检测脊髓弯曲的脊髓内机械感觉器官。通过对活动动物进行钙成像,我们发现CSF-cNs对脊髓的被动和主动弯曲都有反应。在通道Pkd2l1的突变体中,CSF-cNs失去了对弯曲的反应,动物的尾鳍摆动频率选择性降低,证实了这个反馈回路对优化运动的核心作用。总之,我们的研究表明CSF-cNs构成了一个在运动过程中起作用以调节脊髓CPG的机械感觉器官。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d98/4786674/de4dd3a3186c/ncomms10866-f1.jpg

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