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In vivo tactile stimulation-evoked responses in Caenorhabditis elegans amphid sheath glia.


ABSTRACT: Glial cells are important components of the nervous system. However, how they respond to physiological stimuli in vivo remains largely unknown. In this study, we investigated the electrophysiological activities and Ca2+ responses of the C. elegans amphid sheath glia (AMsh glia) to tactile stimulation in vivo. We recorded robust inward currents and Ca2+ elevation in the AMsh cell with the delivery of tactile stimuli of varying displacements to the nose tip of the worm. Compared to the adjacent mechanoreceptor ASH neuron, the AMsh cell showed greater sensitivity to tactile stimulation. Amiloride, an epithelial Na+ channel blocker, blocked the touch-induced currents and Ca2+ signaling in the ASH neuron, but not those in the AMsh cell. Taken together, our results revealed that AMsh glial cells actively respond to in vivo tactile stimulation and likely function cell-autonomously as mechanoreceptors.

SUBMITTER: Ding G 

PROVIDER: S-EPMC4325002 | biostudies-literature | 2015

REPOSITORIES: biostudies-literature

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In vivo tactile stimulation-evoked responses in Caenorhabditis elegans amphid sheath glia.

Ding Gang G   Zou Wenjuan W   Zhang Hu H   Xue Yadan Y   Cai Yang Y   Huang Guifang G   Chen Lufeng L   Duan Shumin S   Kang Lijun L  

PloS one 20150211 2


Glial cells are important components of the nervous system. However, how they respond to physiological stimuli in vivo remains largely unknown. In this study, we investigated the electrophysiological activities and Ca2+ responses of the C. elegans amphid sheath glia (AMsh glia) to tactile stimulation in vivo. We recorded robust inward currents and Ca2+ elevation in the AMsh cell with the delivery of tactile stimuli of varying displacements to the nose tip of the worm. Compared to the adjacent me  ...[more]

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