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Human glia can both induce and rescue aspects of disease phenotype in Huntington disease

Authors :
Benraiss, Abdellatif
Wang, Su
Herrlinger, Stephanie
Li, Xiaojie
Chandler-Militello, Devin
Mauceri, Joseph
Burm, Hayley B.
Toner, Michael
Osipovitch, Mikhail
Jim Xu, Qiwu
Ding, Fengfei
Wang, Fushun
Kang, Ning
Kang, Jian
Curtin, Paul C.
Brunner, Daniela
Windrem, Martha S.
Munoz-Sanjuan, Ignacio
Nedergaard, Maiken
Goldman, Steven A.
Benraiss, Abdellatif
Wang, Su
Herrlinger, Stephanie
Li, Xiaojie
Chandler-Militello, Devin
Mauceri, Joseph
Burm, Hayley B.
Toner, Michael
Osipovitch, Mikhail
Jim Xu, Qiwu
Ding, Fengfei
Wang, Fushun
Kang, Ning
Kang, Jian
Curtin, Paul C.
Brunner, Daniela
Windrem, Martha S.
Munoz-Sanjuan, Ignacio
Nedergaard, Maiken
Goldman, Steven A.
Source :
Benraiss , A , Wang , S , Herrlinger , S , Li , X , Chandler-Militello , D , Mauceri , J , Burm , H B , Toner , M , Osipovitch , M , Jim Xu , Q , Ding , F , Wang , F , Kang , N , Kang , J , Curtin , P C , Brunner , D , Windrem , M S , Munoz-Sanjuan , I , Nedergaard , M & Goldman , S A 2016 , ' Human glia can both induce and rescue aspects of disease phenotype in Huntington disease ' , Nature Communications , vol. 7 , 11758 .
Publication Year :
2016

Abstract

The causal contribution of glial pathology to Huntington disease (HD) has not been heavily explored. To define the contribution of glia to HD, we established human HD glial chimeras by neonatally engrafting immunodeficient mice with mutant huntingtin (mHTT)-expressing human glial progenitor cells (hGPCs), derived from either human embryonic stem cells or mHTT-transduced fetal hGPCs. Here we show that mHTT glia can impart disease phenotype to normal mice, since mice engrafted intrastriatally with mHTT hGPCs exhibit worse motor performance than controls, and striatal neurons in mHTT glial chimeras are hyperexcitable. Conversely, normal glia can ameliorate disease phenotype in transgenic HD mice, as striatal transplantation of normal glia rescues aspects of electrophysiological and behavioural phenotype, restores interstitial potassium homeostasis, slows disease progression and extends survival in R6/2 HD mice. These observations suggest a causal role for glia in HD, and further suggest a cell-based strategy for disease amelioration in this disorder.

Details

Database :
OAIster
Journal :
Benraiss , A , Wang , S , Herrlinger , S , Li , X , Chandler-Militello , D , Mauceri , J , Burm , H B , Toner , M , Osipovitch , M , Jim Xu , Q , Ding , F , Wang , F , Kang , N , Kang , J , Curtin , P C , Brunner , D , Windrem , M S , Munoz-Sanjuan , I , Nedergaard , M & Goldman , S A 2016 , ' Human glia can both induce and rescue aspects of disease phenotype in Huntington disease ' , Nature Communications , vol. 7 , 11758 .
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1322683703
Document Type :
Electronic Resource