Literature DB >> 29937280

Layer I Interneurons Sharpen Sensory Maps during Neonatal Development.

Alicia Che1, Rachel Babij2, Andrew F Iannone2, Robert N Fetcho2, Monica Ferrer1, Conor Liston1, Gord Fishell3, Natalia V De Marco García4.   

Abstract

The neonatal mammal faces an array of sensory stimuli when diverse neuronal types have yet to form sensory maps. How these inputs interact with intrinsic neuronal activity to facilitate circuit assembly is not well understood. By using longitudinal calcium imaging in unanesthetized mouse pups, we show that layer I (LI) interneurons, delineated by co-expression of the 5HT3a serotonin receptor (5HT3aR) and reelin (Re), display spontaneous calcium transients with the highest degree of synchrony among cell types present in the superficial barrel cortex at postnatal day 6 (P6). 5HT3aR Re interneurons are activated by whisker stimulation during this period, and sensory deprivation induces decorrelation of their activity. Moreover, attenuation of thalamic inputs through knockdown of NMDA receptors (NMDARs) in these interneurons results in expansion of whisker responses, aberrant barrel map formation, and deficits in whisker-dependent behavior. These results indicate that recruitment of specific interneuron types during development is critical for adult somatosensory function. VIDEO ABSTRACT.
Copyright © 2018 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  barrel cortex; calcium imaging; development; interneuron; layer I; spontaneous activity; thalamocortical connectivity

Mesh:

Substances:

Year:  2018        PMID: 29937280      PMCID: PMC6152945          DOI: 10.1016/j.neuron.2018.06.002

Source DB:  PubMed          Journal:  Neuron        ISSN: 0896-6273            Impact factor:   18.688


  95 in total

1.  Synaptic basis for whisker deprivation-induced synaptic depression in rat somatosensory cortex.

Authors:  Kevin J Bender; Cara B Allen; Vanessa A Bender; Daniel E Feldman
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Authors:  R Yuste; A Peinado; L C Katz
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4.  Thalamocortical responses of mouse somatosensory (barrel) cortex in vitro.

Authors:  A Agmon; B W Connors
Journal:  Neuroscience       Date:  1991       Impact factor: 3.590

5.  GABA depolarizes immature neurons and inhibits network activity in the neonatal neocortex in vivo.

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6.  Principles of connectivity among morphologically defined cell types in adult neocortex.

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7.  Imaging large-scale neural activity with cellular resolution in awake, mobile mice.

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8.  Emergence of cortical inhibition by coordinated sensory-driven plasticity at distinct synaptic loci.

Authors:  Ramesh Chittajallu; John T R Isaac
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9.  A gradual depth-dependent change in connectivity features of supragranular pyramidal cells in rat barrel cortex.

Authors:  Jochen F Staiger; Ingo Bojak; Stéphanie Miceli; Dirk Schubert
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10.  GABAergic interneurons form transient layer-specific circuits in early postnatal neocortex.

Authors:  Paul G Anastasiades; Andre Marques-Smith; Daniel Lyngholm; Tom Lickiss; Sayda Raffiq; Dennis Kätzel; Gero Miesenböck; Simon J B Butt
Journal:  Nat Commun       Date:  2016-02-04       Impact factor: 14.919

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2.  The Logic of Developing Neocortical Circuits in Health and Disease.

Authors:  Ileana L Hanganu-Opatz; Simon J B Butt; Simon Hippenmeyer; Natalia V De Marco García; Jessica A Cardin; Bradley Voytek; Alysson R Muotri
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Review 5.  Development and Functional Diversification of Cortical Interneurons.

Authors:  Lynette Lim; Da Mi; Alfredo Llorca; Oscar Marín
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6.  Assemblies of Perisomatic GABAergic Neurons in the Developing Barrel Cortex.

Authors:  Laura Modol; Yannick Bollmann; Thomas Tressard; Agnès Baude; Alicia Che; Zhe Ran S Duan; Rachel Babij; Natalia V De Marco García; Rosa Cossart
Journal:  Neuron       Date:  2019-11-25       Impact factor: 17.173

7.  Loss of KCNQ2 or KCNQ3 Leads to Multifocal Time-Varying Activity in the Neonatal Forebrain Ex Vivo.

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Review 9.  The Emergence of Network Activity Patterns in the Somatosensory Cortex - An Early Window to Autism Spectrum Disorders.

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10.  Non-canonical role for Lpar1-EGFP subplate neurons in early postnatal mouse somatosensory cortex.

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