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Paper Details

Blocking microglial activation of reactive astrocytes is neuroprotective in models of Alzheimer's disease.
Acta Neuropathol Commun
73
2021
+ microglia, A-induced GLP-1R+ microglia, AD, Alzheimer's disease, GLP-1, GLP-1R, NLY01, age-related dementia, astrocyte, astrocytes, exedin-4, glucagon-like peptide-1 receptor, microglia, mouse, neurodegeneration, neurodegenerative disorders, neuroinflammation, neurons, reactive astrocytes, resting astrocytes
Author NameAffiliation
Juan C TroncosoThe Johns Hopkins University School of Medicine
Juan C TroncosoThe Johns Hopkins University School of Medicine
Valina L DawsonInstitute for Cell Engineering, The Johns Hopkins University School of Medicine
Valina L DawsonThe Johns Hopkins University School of Medicine
Valina L DawsonThe Johns Hopkins University School of Medicine
Valina L DawsonThe Johns Hopkins University School of Medicine
Valina L DawsonInstitute for Cell Engineering, The Johns Hopkins University School of Medicine
Valina L DawsonThe Johns Hopkins University School of Medicine
Valina L DawsonThe Johns Hopkins University School of Medicine
Valina L DawsonThe Johns Hopkins University School of Medicine
Ted M DawsonInstitute for Cell Engineering, The Johns Hopkins University School of Medicine
Ted M DawsonThe Johns Hopkins University School of Medicine
Ted M DawsonThe Johns Hopkins University School of Medicine
Ted M DawsonThe Johns Hopkins University School of Medicine
Ted M DawsonInstitute for Cell Engineering, The Johns Hopkins University School of Medicine
Ted M DawsonThe Johns Hopkins University School of Medicine
Ted M DawsonThe Johns Hopkins University School of Medicine
Ted M DawsonThe Johns Hopkins University School of Medicine
Seulki LeeThe Johns Hopkins University School of Medicine
Seulki LeeCenter for Nanomedicine at the Wilmer Eye Institute, The Johns Hopkins University School of Medicine
Seulki LeeD&D Pharmatech Inc.
Seulki LeeNeuraly Inc.
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