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PMID: 11580902 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Synchronization of an embryonic network of identified spinal interneurons solely by electrical coupling.

Neuron ·Vol. 31 ·No. 6 ·2001-09-27 ·Pages 1035-46

Saint-Amant L, Drapeau P

Abstract

There is a need to understand the mechanisms of neural synchronization during development because correlated rhythmic activity is thought to be critical for the establishment of proper connectivity. The relative importance of chemical and electrical synapses for synchronization of electrical activity during development is unclear. We examined the activity patterns of identified spinal neurons at the onset of motor activity in zebrafish embryos. Rhythmic activity appeared early and persisted upon blocking chemical neurotransmission but was abolished by inhibitors of gap junctions. Paired recordings revealed that active spinal neurons were electrically coupled and formed a simple network of motoneurons and a subset of interneurons. Thus, the earliest spinal central pattern generator consists of synchronously active, electrically coupled neurons.

MeSH Terms
2-Amino-5-phosphonovalerate/pharmacology 6-Cyano-7-nitroquinoxaline-2,3-dione/pharmacology Animals Apamin/pharmacology Axons/ultrastructure Blastocyst/drug effects,physiology Botulinum Toxins/pharmacology Botulinum Toxins, Type A Embryo, Nonmammalian/drug effects,physiology Excitatory Amino Acid Antagonists/pharmacology Fluorescent Dyes/analysis Gap Junctions/drug effects,physiology Interneurons/physiology Membrane Potentials/drug effects Microscopy, Fluorescence Morphogenesis Motor Activity/physiology Nerve Net/embryology,physiology Patch-Clamp Techniques Periodicity Receptors, Glutamate/drug effects Spinal Cord/cytology,embryology Strychnine/pharmacology Tetrodotoxin/pharmacology Zebrafish
Chemicals
Excitatory Amino Acid Antagonists Fluorescent Dyes Receptors, Glutamate rimabotulinumtoxinB Apamin Tetrodotoxin 6-Cyano-7-nitroquinoxaline-2,3-dione 2-Amino-5-phosphonovalerate Botulinum Toxins Botulinum Toxins, Type A Strychnine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Saint-Amant L
Centre for Research in Neuroscience, Montreal General Hospital Research Institute, Montréal, Québec, Canada H3G 1A4.
Drapeau P
Article Info
Journal
Neuron
Abbr.
Neuron
ISSN
0896-6273
Published
2001-09-27
Pages
1035-46
Language
English
Region
United States
NLM ID
8809320
Subset
IM
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