Literature DB >> 26224620

Chemogenetic Inactivation of Dorsal Anterior Cingulate Cortex Neurons Disrupts Attentional Behavior in Mouse.

Hiroyuki Koike1,2,3,4,5, Michael P Demars1,2,3,4,5, Jennifer A Short1,2,3,4,5, Elisa M Nabel1,2,3,4,5, Schahram Akbarian1,2,5, Mark G Baxter2,5, Hirofumi Morishita1,2,3,4,5.   

Abstract

Attention is disrupted commonly in psychiatric disorders, yet mechanistic insight remains limited. Deficits in this function are associated with dorsal anterior cingulate cortex (dACC) excitotoxic lesions and pharmacological disinhibition; however, a causal relationship has not been established at the cellular level. Moreover, this association has not yet been examined in a genetically tractable species such as mice. Here, we reveal that dACC neurons causally contribute to attention processing by combining a chemogenetic approach that reversibly suppresses neural activity with a translational, touchscreen-based attention task in mice. We virally expressed inhibitory hM4Di DREADD (designer receptor exclusively activated by a designer drug) in dACC neurons, and examined the effects of this inhibitory action with the attention-based five-choice serial reaction time task. DREADD inactivation of the dACC neurons during the task significantly increased omission and correct response latencies, indicating that the neuronal activities of dACC contribute to attention and processing speed. Selective inactivation of excitatory neurons in the dACC not only increased omission, but also decreased accuracy. The effect of inactivating dACC neurons was selective to attention as response control, motivation, and locomotion remain normal. This finding suggests that dACC excitatory neurons play a principal role in modulating attention to task-relevant stimuli. This study establishes a foundation to chemogenetically dissect specific cell-type and circuit mechanisms underlying attentional behaviors in a genetically tractable species.

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Year:  2015        PMID: 26224620      PMCID: PMC4748426          DOI: 10.1038/npp.2015.229

Source DB:  PubMed          Journal:  Neuropsychopharmacology        ISSN: 0893-133X            Impact factor:   7.853


  64 in total

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Journal:  Psychopharmacology (Berl)       Date:  2012-07-14       Impact factor: 4.530

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Journal:  Transl Psychiatry       Date:  2013-11-12       Impact factor: 6.222

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Review 2.  Fractionating impulsivity: neuropsychiatric implications.

Authors:  Jeffrey W Dalley; Trevor W Robbins
Journal:  Nat Rev Neurosci       Date:  2017-02-17       Impact factor: 34.870

3.  A Corticocortical Circuit Directly Links Retrosplenial Cortex to M2 in the Mouse.

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4.  Chemogenetic Activation of Midbrain Dopamine Neurons Affects Attention, but not Impulsivity, in the Five-Choice Serial Reaction Time Task in Rats.

Authors:  Linde Boekhoudt; Elisa S Voets; Jacques P Flores-Dourojeanni; Mieneke Cm Luijendijk; Louk Jmj Vanderschuren; Roger Ah Adan
Journal:  Neuropsychopharmacology       Date:  2016-10-17       Impact factor: 7.853

Review 5.  Resolving Behavioral Output via Chemogenetic Designer Receptors Exclusively Activated by Designer Drugs.

Authors:  C Joseph Burnett; Michael J Krashes
Journal:  J Neurosci       Date:  2016-09-07       Impact factor: 6.167

6.  Contemporary strategies for dissecting the neuronal basis of neurodevelopmental disorders.

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7.  Activation of Somatostatin Interneurons by Nicotinic Modulator Lypd6 Enhances Plasticity and Functional Recovery in the Adult Mouse Visual Cortex.

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Review 8.  Neural mechanisms of sensorimotor transformation and action selection.

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9.  Promoter-Specific Effects of DREADD Modulation on Hippocampal Synaptic Plasticity and Memory Formation.

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10.  Control of impulsivity by Gi-protein signalling in layer-5 pyramidal neurons of the anterior cingulate cortex.

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