High-throughput micropatterning platform reveals Nodal-dependent bisection of peri-gastrulation-associated versus preneurulation-associated fate patterning.
Mukul TewaryDominika DziedzickaJoel OstblomLaura ProchazkaNika ShakibaTiam HeydariDaniel Aguilar-HidalgoCurtis WoodfordElia PiccininiDavid Becerra-AlonsoAlice VickersBlaise LouisNafees RahmanDavide DanoviMieke GeensFiona M WattPeter W ZandstraPublished in: PLoS biology (2019)
In vitro models of postimplantation human development are valuable to the fields of regenerative medicine and developmental biology. Here, we report characterization of a robust in vitro platform that enabled high-content screening of multiple human pluripotent stem cell (hPSC) lines for their ability to undergo peri-gastrulation-like fate patterning upon bone morphogenetic protein 4 (BMP4) treatment of geometrically confined colonies and observed significant heterogeneity in their differentiation propensities along a gastrulation associable and neuralization associable axis. This cell line-associated heterogeneity was found to be attributable to endogenous Nodal expression, with up-regulation of Nodal correlated with expression of a gastrulation-associated gene profile, and Nodal down-regulation correlated with a preneurulation-associated gene profile expression. We harness this knowledge to establish a platform of preneurulation-like fate patterning in geometrically confined hPSC colonies in which fates arise because of a BMPs signalling gradient conveying positional information. Our work identifies a Nodal signalling-dependent switch in peri-gastrulation versus preneurulation-associated fate patterning in hPSC cells, provides a technology to robustly assay hPSC differentiation outcomes, and suggests conserved mechanisms of organized fate specification in differentiating epiblast and ectodermal tissues.
Keyphrases
- high throughput
- poor prognosis
- lymph node
- neoadjuvant chemotherapy
- single cell
- endothelial cells
- stem cells
- cell fate
- genome wide
- copy number
- induced apoptosis
- mesenchymal stem cells
- induced pluripotent stem cells
- healthcare
- gene expression
- long non coding rna
- type diabetes
- transcription factor
- dna methylation
- squamous cell carcinoma
- magnetic resonance
- metabolic syndrome
- endoplasmic reticulum stress
- computed tomography
- signaling pathway
- cell cycle arrest
- combination therapy
- locally advanced
- weight loss
- bone regeneration
- rectal cancer
- pi k akt