Generation of functional thyroid from embryonic stem cells
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- 10 October 2012
- journal article
- research article
- Published by Springer Nature in Nature
- Vol. 491 (7422), 66-71
- https://doi.org/10.1038/nature11525
Abstract
The primary function of the thyroid gland is to metabolize iodide by synthesizing thyroid hormones, which are critical regulators of growth, development and metabolism in almost all tissues. So far, research on thyroid morphogenesis has been missing an efficient stem-cell model system that allows for the in vitro recapitulation of the molecular and morphogenic events regulating thyroid follicular-cell differentiation and subsequent assembly into functional thyroid follicles. Here we report that a transient overexpression of the transcription factors NKX2-1 and PAX8 is sufficient to direct mouse embryonic stem-cell differentiation into thyroid follicular cells that organize into three-dimensional follicular structures when treated with thyrotropin. These in vitro-derived follicles showed appreciable iodide organification activity. Importantly, when grafted in vivo into athyroid mice, these follicles rescued thyroid hormone plasma levels and promoted subsequent symptomatic recovery. Thus, mouse embryonic stem cells can be induced to differentiate into thyroid follicular cells in vitro and generate functional thyroid tissue.Keywords
This publication has 33 references indexed in Scilit:
- Efficient Derivation of Purified Lung and Thyroid Progenitors from Embryonic Stem CellsCell Stem Cell, 2012
- Programming human pluripotent stem cells into white and brown adipocytesNature Cell Biology, 2012
- Deletion of the RNaseIII Enzyme Dicer in Thyroid Follicular Cells Causes Hypothyroidism with Signs of Neoplastic AlterationsPLOS ONE, 2012
- Mouse embryonic stem cell culture for generation of three-dimensional retinal and cortical tissuesNature Protocols, 2011
- Self-organizing optic-cup morphogenesis in three-dimensional cultureNature, 2011
- Intrinsic transition of embryonic stem-cell differentiation into neural progenitorsNature, 2011
- Mesp1 Acts as a Master Regulator of Multipotent Cardiovascular Progenitor SpecificationCell Stem Cell, 2008
- Bone marrow contributes to renal parenchymal turnover and regenerationThe Journal of Pathology, 2001
- Follicular cells of the thyroid gland require Pax8 gene functionNature Genetics, 1998
- Iodide transport in the thyroid glandBiochimica et Biophysica Acta (BBA) - Reviews on Biomembranes, 1993