Resolving cell state in iPSC-derived human neural samples with multiplexed fluorescence imaging.

Commun Biol
Authors
Keywords
Abstract

Human induced pluripotent stem cell-derived (iPSC) neural cultures offer clinically relevant models of human diseases, including Amyotrophic Lateral Sclerosis, Alzheimer's, and Autism Spectrum Disorder. In situ characterization of the spatial-temporal evolution of cell state in 3D culture and subsequent 2D dissociated culture models based on protein expression levels and localizations is essential to understanding neural cell differentiation, disease state phenotypes, and sample-to-sample variability. Here, we apply PRobe-based Imaging for Sequential Multiplexing (PRISM) to facilitate multiplexed imaging with facile, rapid exchange of imaging probes to analyze iPSC-derived cortical and motor neuron cultures that are relevant to psychiatric and neurodegenerative disease models, using over ten protein targets. Our approach permits analysis of cell differentiation, cell composition, and functional marker expression in complex stem-cell derived neural cultures. Furthermore, our approach is amenable to automation, offering in principle the ability to scale-up to dozens of protein targets and samples.

Year of Publication
2021
Journal
Commun Biol
Volume
4
Issue
1
Pages
786
Date Published
2021 06 24
ISSN
2399-3642
DOI
10.1038/s42003-021-02276-x
PubMed ID
34168275
PubMed Central ID
PMC8225800
Links
Grant list
P30 ES002109 / ES / NIEHS NIH HHS / United States
R01 MH112694 / MH / NIMH NIH HHS / United States
U01 MH106011 / MH / NIMH NIH HHS / United States