Literature DB >> 33380470

Microglia Elimination Increases Neural Circuit Connectivity and Activity in Adult Mouse Cortex.

Yong-Jun Liu1,2, Elizabeth E Spangenberg3,4, Bryan Tang1, Todd C Holmes5,6, Kim N Green7,4, Xiangmin Xu8,4,6.   

Abstract

Microglia have crucial roles in sculpting synapses and maintaining neural circuits during development. To test the hypothesis that microglia continue to regulate neural circuit connectivity in adult brain, we have investigated the effects of chronic microglial depletion, via CSF1R inhibition, on synaptic connectivity in the visual cortex in adult mice of both sexes. We find that the absence of microglia dramatically increases both excitatory and inhibitory synaptic connections to excitatory cortical neurons assessed with functional circuit mapping experiments in acutely prepared adult brain slices. Microglia depletion leads to increased densities and intensities of perineuronal nets. Furthermore, in vivo calcium imaging across large populations of visual cortical neurons reveals enhanced neural activities of both excitatory neurons and parvalbumin-expressing interneurons in the visual cortex following microglia depletion. These changes recover following adult microglia repopulation. In summary, our new results demonstrate a prominent role of microglia in sculpting neuronal circuit connectivity and regulating subsequent functional activity in adult cortex.SIGNIFICANCE STATEMENT Microglia are the primary immune cell of the brain, but recent evidence supports that microglia play an important role in synaptic sculpting during development. However, it remains unknown whether and how microglia regulate synaptic connectivity in adult brain. Our present work shows chronic microglia depletion in adult visual cortex induces robust increases in perineuronal nets, and enhances local excitatory and inhibitory circuit connectivity to excitatory neurons. Microglia depletion increases in vivo neural activities of both excitatory neurons and parvalbumin inhibitory neurons. Our new results reveal new potential avenues to modulate adult neural plasticity by microglia manipulation to better treat brain disorders, such as Alzheimer's disease.
Copyright © 2021 the authors.

Entities:  

Keywords:  excitatory; parvalbumin; perineuronal nets; plasticity; synaptic connections; visual cortex

Mesh:

Substances:

Year:  2020        PMID: 33380470      PMCID: PMC7888230          DOI: 10.1523/JNEUROSCI.2140-20.2020

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  58 in total

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Review 2.  The role of microglia in the healthy brain.

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Journal:  Annu Rev Immunol       Date:  2017-02-09       Impact factor: 28.527

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10.  Topography and areal organization of mouse visual cortex.

Authors:  Marina E Garrett; Ian Nauhaus; James H Marshel; Edward M Callaway
Journal:  J Neurosci       Date:  2014-09-10       Impact factor: 6.167

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Review 5.  Microglia in brain development and regeneration.

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9.  Cortical diurnal rhythms remain intact with microglial depletion.

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10.  Commentary: How Do Microglia Regulate Neural Circuit Connectivity and Activity in the Adult Brain?

Authors:  Yong-Jun Liu; Kim N Green; Todd C Holmes; Xiangmin Xu
Journal:  Neurosci Insights       Date:  2022-01-24
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