| Literature DB >> 32451506 |
Pedro Rifes1,2, Marc Isaksson3,4, Gaurav Singh Rathore1,2, Patrick Aldrin-Kirk1,2, Oliver Knights Møller1, Guido Barzaghi2, Julie Lee5, Kristoffer Lihme Egerod5, Dylan M Rausch5, Malin Parmar4, Tune H Pers5, Thomas Laurell3, Agnete Kirkeby6,7,8,9.
Abstract
The study of brain development in humans is limited by the lack of tissue samples and suitable in vitro models. Here, we model early human neural tube development using human embryonic stem cells cultured in a microfluidic device. The approach, named microfluidic-controlled stem cell regionalization (MiSTR), exposes pluripotent stem cells to signaling gradients that mimic developmental patterning. Using a WNT-activating gradient, we generated a neural tissue exhibiting progressive caudalization from forebrain to midbrain to hindbrain, including formation of isthmic organizer characteristics. Single-cell transcriptomics revealed that rostro-caudal organization was already established at 24 h of differentiation, and that the first markers of a neural-specific transcription program emerged in the rostral cells at 48 h. The transcriptomic hallmarks of rostro-caudal organization recapitulated gene expression patterns of the early rostro-caudal neural plate in mouse embryos. Thus, MiSTR will facilitate research on the factors and processes underlying rostro-caudal neural tube patterning.Entities:
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Year: 2020 PMID: 32451506 DOI: 10.1038/s41587-020-0525-0
Source DB: PubMed Journal: Nat Biotechnol ISSN: 1087-0156 Impact factor: 54.908