Bumetanide induces post-traumatic microglia–interneuron contact to promote neurogenesis and recovery

Author:

Tessier Marine1ORCID,Garcia Marta Saez2,Goubert Emmanuelle1,Blasco Edith1,Consumi Amandine1,Dehapiot Benoit3,Tian Li4ORCID,Molinari Florence5,Laurin Jerome1,Guillemot François6,Hübner Christian A7,Pellegrino Christophe1,Rivera Claudio12

Affiliation:

1. Aix Marseille Univ, INSERM, INMED , 13273 Marseille , France

2. Neuroscience Center, 00014 University of Helsinki , Helsinki , Finland

3. Aix Marseille Univ, CNRS, IBDM-UMR7288, Turing Center for Living Systems , 13288 Marseille , France

4. Institute of Biomedicine and Translational Medicine, University of Tartu , 50411 Tartu , Estonia

5. Aix Marseille Univ, INSERM, MMG , 50411 Marseille , France

6. The Francis Crick Institute , London NW1 1AT , UK

7. Institut für Humangenetik, Universitätsklinikum Jena , 07747 Jena , Germany

Abstract

Abstract Although the Na-K-Cl cotransporter (NKCC1) inhibitor bumetanide has prominent positive effects on the pathophysiology of many neurological disorders, the mechanism of action is obscure. Attention paid to elucidating the role of Nkcc1 has mainly been focused on neurons, but recent single cell mRNA sequencing analysis has demonstrated that the major cellular populations expressing NKCC1 in the cortex are non-neuronal. We used a combination of conditional transgenic animals, in vivo electrophysiology, two-photon imaging, cognitive behavioural tests and flow cytometry to investigate the role of Nkcc1 inhibition by bumetanide in a mouse model of controlled cortical impact (CCI). Here, we found that bumetanide rescues parvalbumin-positive interneurons by increasing interneuron-microglia contacts shortly after injury. The longitudinal phenotypic changes in microglia were significantly modified by bumetanide, including an increase in the expression of microglial-derived BDNF. These effects were accompanied by the prevention of CCI-induced decrease in hippocampal neurogenesis. Treatment with bumetanide during the first week post-CCI resulted in significant recovery of working and episodic memory as well as changes in theta band oscillations 1 month later. These results disclose a novel mechanism for the neuroprotective action of bumetanide mediated by an acceleration of microglial activation dynamics that leads to an increase in parvalbumin interneuron survival following CCI, possibly resulting from increased microglial BDNF expression and contact with interneurons. Salvage of interneurons may normalize ambient GABA, resulting in the preservation of adult neurogenesis processes as well as contributing to bumetanide-mediated improvement of cognitive performance.

Funder

Aix-Marseille Université

Academy of Finland

BMBF

Publisher

Oxford University Press (OUP)

Subject

Neurology (clinical)

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