Excessive Astrocytic GABA Causes Cortical Hypometabolism and Impedes Functional Recovery after Subcortical Stroke

Authors
Nam, Min-HoCho, JongwookKwon, Dae-HyukPark, Ji-YoungWoo, JunsungLee, JungmooLee, SangwonKo, Hae YoungWon, WoojinKim, Ra GyungSong, HanlimOh, Soo-JinChoi, Ji WonPark, Ki DukPark, Eun KyungJung, HaejinKim, Hyung-SeokLee, Min-CheolYun, MijinLee, C. JustinKim, Hyoung-Ihl
Issue Date
2020-07-07
Publisher
CELL PRESS
Citation
CELL REPORTS, v.32, no.1
Abstract
Glucose hypometabolism in cortical structures after functional disconnection is frequently reported in patients with white matter diseases such as subcortical stroke. However, the molecular and cellular mechanisms have been poorly elucidated. Here we show, in an animal model of internal capsular infarct, that GABA-synthesizing reactive astrocytes in distant cortical areas cause glucose hypometabolism via tonic inhibition of neighboring neurons. We find that reversal of aberrant astrocytic GABA synthesis, by pharmacological inhibition and astrocyte-specific gene silencing of MAO-B, reverses the reduction in cortical glucose metabolism. Moreover, induction of aberrant astrocytic GABA synthesis by cortical injection of putrescine or adenovirus recapitulates cortical hypometabolism. Furthermore, MAO-B inhibition causes a remarkable recovery from post-stroke motor deficits when combined with a rehabilitation regimen. Collectively, our data indicate that cortical glucose hypometabolism in subcortical stroke is caused by aberrant astrocytic GABA and MAO-B inhibition and that attenuating cortical hypometabolism can be a therapeutic approach in subcortical stroke.
Keywords
CROSSED CEREBELLAR DIASCHISIS; MONOAMINE-OXIDASE B; REACTIVE ASTROCYTES; TONIC INHIBITION; CORTEX LESIONS; MOTOR CORTEX; GLIAL GABA; GLIOSIS; RELEASE; MODELS; CROSSED CEREBELLAR DIASCHISIS; MONOAMINE-OXIDASE B; REACTIVE ASTROCYTES; TONIC INHIBITION; CORTEX LESIONS; MOTOR CORTEX; GLIAL GABA; GLIOSIS; RELEASE; MODELS; astrocyte; diaschisis; GABA; internal capsule; monoamine oxidase B; PET imaging; reactive astrocyte; rehabilitation; stroke
ISSN
2211-1247
URI
https://pubs.kist.re.kr/handle/201004/118395
DOI
10.1016/j.celrep.2020.107861
Appears in Collections:
KIST Article > 2020
Files in This Item:
There are no files associated with this item.
Export
RIS (EndNote)
XLS (Excel)
XML

qrcode

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

BROWSE