4.6 Article

Retinoic Acid Accelerates the Specification of Enteric Neural Progenitors from In-Vitro-Derived Neural Crest

Journal

STEM CELL REPORTS
Volume 15, Issue 3, Pages 557-565

Publisher

CELL PRESS
DOI: 10.1016/j.stemcr.2020.07.024

Keywords

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Funding

  1. Medical Research Council Confidence in Concept [MC_PC_14115]
  2. BBSRC [BB/P000444/1]
  3. European Union's Horizon 2020 Research and Innovation program H2020-FETPROACT-2018-01 [824070]
  4. Guts UK (Derek Butler Fellowship)
  5. Great Ormond Street Hospital Children's Charity [GOSHCC - V1258]
  6. GOSHCC grant [W1018C]
  7. NIHR Great Ormond Street Hospital Biomedical Research Center
  8. BBSRC [BB/P000444/1] Funding Source: UKRI
  9. MRC [MR/R015724/1, MC_PC_14115] Funding Source: UKRI

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The enteric nervous system (ENS) is derived primarily from the vagal neural crest, a migratory multipotent cell population emerging from the dorsal neural tube between somites 1 and 7. Defects in the development and function of the ENS cause a range of enteric neuropathies, including Hirschsprung disease. Little is known about the signals that specify early ENS progenitors, limiting progress in the generation of enteric neurons from human pluripotent stem cells (hPSCs) to provide tools for disease modeling and regenerative medicine for enteric neuropathies. We describe the efficient and accelerated generation of ENS progenitors from hPSCs, revealing that retinoic acid is critical for the acquisition of vagal axial identity and early ENS progenitor specification. These ENS progenitors generate enteric neurons in vitro and, following in vivo transplantation, achieved long-term colonization of the ENS in adult mice. Thus, hPSC-derived ENS progenitors may provide the basis for cell therapy for defects in the ENS.

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