Literature DB >> 29694883

Adrenergic Modulation Regulates the Dendritic Excitability of Layer 5 Pyramidal Neurons In Vivo.

Christina Labarrera1, Yair Deitcher1, Amir Dudai1, Benjamin Weiner1, Adi Kaduri Amichai1, Neta Zylbermann1, Michael London2.   

Abstract

The excitability of the apical tuft of layer 5 pyramidal neurons is thought to play a crucial role in behavioral performance and synaptic plasticity. We show that the excitability of the apical tuft is sensitive to adrenergic neuromodulation. Using two-photon dendritic Ca2+ imaging and in vivo whole-cell and extracellular recordings in awake mice, we show that application of the α2A-adrenoceptor agonist guanfacine increases the probability of dendritic Ca2+ events in the tuft and lowers the threshold for dendritic Ca2+ spikes. We further show that these effects are likely to be mediated by the dendritic current Ih. Modulation of Ih in a realistic compartmental model controlled both the generation and magnitude of dendritic calcium spikes in the apical tuft. These findings suggest that adrenergic neuromodulation may affect cognitive processes such as sensory integration, attention, and working memory by regulating the sensitivity of layer 5 pyramidal neurons to top-down inputs.
Copyright © 2018. Published by Elsevier Inc.

Entities:  

Keywords:  ADHD; Ca(2+) spike; HCN; I(h); apical tuft; cortical layer 5 pyramidal neuron; dendrites; guanfacine; norepinephrine; somatosensory cortex

Mesh:

Substances:

Year:  2018        PMID: 29694883     DOI: 10.1016/j.celrep.2018.03.103

Source DB:  PubMed          Journal:  Cell Rep            Impact factor:   9.423


  20 in total

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5.  Differential dendritic integration of long-range inputs in association cortex via subcellular changes in synaptic AMPA-to-NMDA receptor ratio.

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7.  Anterolateral Motor Cortex Connects with a Medial Subdivision of Ventromedial Thalamus through Cell Type-Specific Circuits, Forming an Excitatory Thalamo-Cortico-Thalamic Loop via Layer 1 Apical Tuft Dendrites of Layer 5B Pyramidal Tract Type Neurons.

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Authors:  Craig Kelley; Salvador Dura-Bernal; Samuel A Neymotin; Srdjan D Antic; Nicholas T Carnevale; Michele Migliore; William W Lytton
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