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Regeneration of Thyroid Function by Transplantation of Differentiated Pluripotent Stem Cells

  • Anita A. Kurmann
  • , Maria Serra
  • , Finn Hawkins
  • , Scott A. Rankin
  • , Munemasa Mori
  • , Inna Astapova
  • , Soumya Ullas
  • , Sui Lin
  • , Melanie Bilodeau
  • , Janet Rossant
  • , Jyh C. Jean
  • , Laertis Ikonomou
  • , Robin R. Deterding
  • , John M. Shannon
  • , Aaron M. Zorn
  • , Anthony N. Hollenberg
  • , Darrell N. Kotton
  • Harvard University
  • Boston University
  • Cincinnati Children's Hospital Medical Center
  • Beth Israel Deaconess Medical Center
  • University of Toronto
  • University of Colorado Anschutz Medical Campus

Research output: Contribution to journalArticlepeer-review

183 Scopus citations

Abstract

Differentiation of functional thyroid epithelia from pluripotent stem cells (PSCs) holds the potential for application in regenerative medicine. However, progress toward this goal is hampered by incomplete understanding of the signaling pathways needed for directed differentiation without forced overexpression of exogenous transgenes. Here we use mouse PSCs to identify key conserved roles for BMP and FGF signaling in regulating thyroid lineage specification from foregut endoderm in mouse and Xenopus. Thyroid progenitors derived from mouse PSCs can be matured into thyroid follicular organoids that provide functional secretion of thyroid hormones in vivo and rescue hypothyroid mice after transplantation. Moreover, by stimulating the same pathways, we were also able to derive human thyroid progenitors from normal and disease-specific iPSCs generated from patients with hypothyroidism resulting from NKX2-1 haploinsufficiency. Our studies have therefore uncovered the regulatory mechanisms that underlie early thyroid organogenesis and provide a significant step toward cell-based regenerative therapy for hypothyroidism.

Original languageEnglish
Pages (from-to)527-542
Number of pages16
JournalCell Stem Cell
Volume17
Issue number5
DOIs
StatePublished - Nov 5 2015

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