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1.
Nat Commun ; 13(1): 7057, 2022 11 17.
Article in English | MEDLINE | ID: mdl-36396935

ABSTRACT

The thyroid gland captures iodide in order to synthesize hormones that act on almost all tissues and are essential for normal growth and metabolism. Low plasma levels of thyroid hormones lead to hypothyroidism, which is one of the most common disorder in humans and is not always satisfactorily treated by lifelong hormone replacement. Therefore, in addition to the lack of in vitro tractable models to study human thyroid development, differentiation and maturation, functional human thyroid organoids could pave the way to explore new therapeutic approaches. Here we report the generation of transplantable thyroid organoids derived from human embryonic stem cells capable of restoring plasma thyroid hormone in athyreotic mice as a proof of concept for future therapeutic development.


Subject(s)
Hypothyroidism , Organoids , Humans , Animals , Mice , Hypothyroidism/therapy , Embryonic Stem Cells , Thyroid Hormones
2.
Methods Mol Biol ; 1597: 85-95, 2017.
Article in English | MEDLINE | ID: mdl-28361312

ABSTRACT

During the last decade three-dimensional (3D) cultures of pluripotent stem cells have been intensively used to understand morphogenesis and molecular signaling important for the embryonic development of many tissues. In addition, pluripotent stem cells have been shown to be a valid tool for the in vitro modeling of several congenital or chronic human diseases, opening new possibilities to study their physiopathology without using animal models. Even more interestingly, 3D culture has proved to be a powerful and versatile tool to successfully generate functional tissues ex vivo. Using similar approaches, we here describe a protocol for the generation of functional thyroid tissue using mouse embryonic stem cells and give all the details and references for its characterization and analysis both in vitro and in vivo. This model is a valid approach to study the expression and the function of genes involved in the correct morphogenesis of thyroid gland, to elucidate the mechanisms of production and secretion of thyroid hormones and to test anti-thyroid drugs.


Subject(s)
Embryonic Stem Cells/cytology , Thyroid Gland/cytology , Animals , Cell Culture Techniques/methods , Cell Differentiation/physiology , Cell Line , Induced Pluripotent Stem Cells/cytology , Mice , Morphogenesis/physiology , Pluripotent Stem Cells/cytology
3.
Nature ; 491(7422): 66-71, 2012 Nov 01.
Article in English | MEDLINE | ID: mdl-23051751

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.


Subject(s)
Cell Differentiation , Embryonic Stem Cells/cytology , Thyroid Gland/cytology , Thyroid Gland/physiology , Animals , Disease Models, Animal , Embryonic Stem Cells/metabolism , Female , Humans , Hypothyroidism/pathology , Hypothyroidism/surgery , Hypothyroidism/therapy , Mice , Nuclear Proteins/genetics , Nuclear Proteins/metabolism , PAX8 Transcription Factor , Paired Box Transcription Factors/genetics , Paired Box Transcription Factors/metabolism , Thyroid Gland/anatomy & histology , Thyroid Gland/drug effects , Thyroid Gland/transplantation , Thyroid Nuclear Factor 1 , Thyrotropin/blood , Thyrotropin/pharmacology , Thyroxine/blood , Transcription Factors/genetics , Transcription Factors/metabolism
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