Abstract

What roles do astrocytes play in human disease?This question remains unanswered for nearly every human neurological disorder. Yet, because of their abundance and complexity astrocytes can impact neurological function in many ways. The differentiation of human pluripotent stem cells (hPSCs) into neuronal and glial subtypes, including astrocytes, is becoming routine, thus their use as tools for modeling neurodevelopment and disease will provide one important approach to answer this question. When designing experiments, careful consideration must be given to choosing paradigms for differentiation, maturation, and functional analysis of these temporally asynchronous cellular populations in culture. In the case of astrocytes, they display heterogeneous characteristics depending upon species of origin, brain region, developmental stage, environmental factors, and disease states, all of which may render experimental results highly variable. In this review, challenges and future directions are discussed for using hPSC-derived astroglial progenitors and mature astrocytes for neurodevelopmental studies with a focus on exploring human astrocyte effects upon neuronal function. As new technologies emerge to measure the functions of astrocytes in vitro and in vivo, there is also a need for a standardized source of human astrocytes that are most relevant to the diseases of interest.

Highlights

  • CELLULAR NEUROSCIENCEA cellular star atlas: using astrocytes from human pluripotent stem cells for disease studies

  • With the recent technological advances for astrocyte manipulation, generation, purification, and functional analyses in normal and diseased states, there is a need for standardization and optimization of the experimental system

  • In regards to this review, the system of interest is the differentiation of astrocytes from human pluripotent stem cells, either embryonic stem cells (ESCs) or induced pluripotent stem cells

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Summary

CELLULAR NEUROSCIENCE

A cellular star atlas: using astrocytes from human pluripotent stem cells for disease studies. This question remains unanswered for nearly every human neurological disorder. Because of their abundance and complexity astrocytes can impact neurological function in many ways. The differentiation of human pluripotent stem cells (hPSCs) into neuronal and glial subtypes, including astrocytes, is becoming routine, their use as tools for modeling neurodevelopment and disease will provide one important approach to answer this question. Challenges and future directions are discussed for using hPSC-derived astroglial progenitors and mature astrocytes for neurodevelopmental studies with a focus on exploring human astrocyte effects upon neuronal function.

INTRODUCTION
Krencik and Ullian
Heterogeneity between lines
Functional characterization
Rescue the phenotype
CONCLUSIONS
Full Text
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