Literature DB >> 23759711

Astroglial cells regulate the developmental timeline of human neurons differentiated from induced pluripotent stem cells.

Xin Tang1, Li Zhou, Alecia M Wagner, Maria C N Marchetto, Alysson R Muotri, Fred H Gage, Gong Chen.   

Abstract

Neurons derived from human induced-pluripotent stem cells (hiPSCs) have been used to model a variety of neurological disorders. Different protocols have been used to differentiate hiPSCs into neurons, but their functional maturation process has varied greatly among different studies. Here, we demonstrate that laminin, a commonly used substrate for iPSC cultures, was inefficient to promote fully functional maturation of hiPSC-derived neurons. In contrast, astroglial substrate greatly accelerated neurodevelopmental processes of hiPSC-derived neurons. We have monitored the neural differentiation and maturation process for up to two months after plating hiPSC-derived neuroprogenitor cells (hNPCs) on laminin or astrocytes. We found that one week after plating hNPCs, there were 21-fold more newly differentiated neurons on astrocytes than on laminin. Two weeks after plating hNPCs, there were 12-fold more dendritic branches in neurons cultured on astrocytes than on laminin. Six weeks after plating hNPCs, the Na(+) and K(+) currents, as well as glutamate and GABA receptor currents, were 3-fold larger in neurons cultured on astrocytes than on laminin. And two months after plating hNPCs, the spontaneous synaptic events were 8-fold more in neurons cultured on astrocytes than on laminin. These results highlight a critical role of astrocytes in promoting neural differentiation and functional maturation of human neurons derived from hiPSCs. Moreover, our data presents a thorough developmental timeline of hiPSC-derived neurons in culture, providing important benchmarks for future studies on disease modeling and drug screening.
Copyright © 2013 Elsevier B.V. All rights reserved.

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Year:  2013        PMID: 23759711      PMCID: PMC3979966          DOI: 10.1016/j.scr.2013.05.002

Source DB:  PubMed          Journal:  Stem Cell Res        ISSN: 1873-5061            Impact factor:   2.020


  49 in total

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4.  Actin-dependent activation of presynaptic silent synapses contributes to long-term synaptic plasticity in developing hippocampal neurons.

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Authors:  K D McCarthy; J de Vellis
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  64 in total

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Review 6.  Single-cell analysis of diversity in human stem cell-derived neurons.

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Journal:  Cell Tissue Res       Date:  2017-11-29       Impact factor: 5.249

7.  Predicting the functional states of human iPSC-derived neurons with single-cell RNA-seq and electrophysiology.

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8.  Recreating blood-brain barrier physiology and structure on chip: A novel neurovascular microfluidic bioreactor.

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Review 10.  Back and forth in time: Directing age in iPSC-derived lineages.

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