PSEN1 Mutant iPSC-Derived Model Reveals Severe Astrocyte Pathology in Alzheimer's Disease

Minna Oksanen(University of Eastern Finland), Andrew J. Petersen(University of Wisconsin–Madison), Nikolay Naumenko(University of Eastern Finland), Katja A. Puttonen(University of Eastern Finland), Šárka Lehtonen(University of Eastern Finland), Max Gubert Olivé(University of Eastern Finland), Anastasia Shakirzyanova(University of Eastern Finland), Stina Leskelä(University of Eastern Finland), Timo Sarajärvi(University of Eastern Finland), Matti Viitanen(Karolinska Institutet), Juha O. Rinne(University of Turku), Mikko Hiltunen(University of Eastern Finland), Annakaisa Haapasalo(University of Eastern Finland), Rashid Giniatullin(University of Eastern Finland), Pasi Tavi(University of Eastern Finland), Su‐Chun Zhang(University of Wisconsin–Madison), Katja M. Kanninen(University of Eastern Finland), Riikka H. Hämäläinen(University of Eastern Finland), Jari Koıstınaho(University of Eastern Finland)
Stem Cell Reports
November 16, 2017
Cited by 341Open Access
Full Text

Abstract

Alzheimer's disease (AD) is a common neurodegenerative disorder and the leading cause of cognitive impairment. Due to insufficient understanding of the disease mechanisms, there are no efficient therapies for AD. Most studies have focused on neuronal cells, but astrocytes have also been suggested to contribute to AD pathology. We describe here the generation of functional astrocytes from induced pluripotent stem cells (iPSCs) derived from AD patients with PSEN1 DE9 mutation, as well as healthy and gene-corrected isogenic controls. AD astrocytes manifest hallmarks of disease pathology, including increased b-amyloid production, altered cytokine release, and dysregulated Ca 2+ homeostasis. Furthermore, due to altered metabolism, AD astrocytes show increased oxidative stress and reduced lactate secretion, as well as compromised neuronal supportive function, as evidenced by altering Ca 2+ transients in healthy neurons. Our results reveal an important role for astrocytes in AD pathology and highlight the strength of iPSC-derived models for brain diseases.


Related Papers

No related papers found

Powered by citation graph analysis