Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Differential Requirement for Mesenchyme in the Proliferation and Maturation of Thymic Epithelial Progenitors

View through CrossRef
Formation of a mature thymic epithelial microenvironment is an essential prerequisite for the generation of a functionally competent T cell pool. It is likely that recently identified thymic epithelial precursors undergo phases of proliferation and differentiation to generate mature cortical and medullary thymic microenvironments. The mechanisms regulating development of immature thymic epithelial cells are unknown. Here we provide evidence that expansion of embryonic thymic epithelium is regulated by the continued presence of mesenchyme. In particular, mesenchymal cells are shown to mediate thymic epithelial cell proliferation through their provision of fibroblast growth factors 7 and 10. In contrast, differentiation of immature thymic epithelial cells, including acquisition of markers of mature cortical and medullary epithelium, occurs in the absence of ongoing mesenchymal support. Collectively, our data define a role for mesenchymal cells in thymus development, and indicate distinct mechanisms regulate proliferation and differentiation of immature thymic epithelial cells. In addition, our findings may aid in studies aimed at developing strategies to enhance thymus reconstitution and functioning in clinical certain contexts where thymic epithelial cell function is perturbed.
Title: Differential Requirement for Mesenchyme in the Proliferation and Maturation of Thymic Epithelial Progenitors
Description:
Formation of a mature thymic epithelial microenvironment is an essential prerequisite for the generation of a functionally competent T cell pool.
It is likely that recently identified thymic epithelial precursors undergo phases of proliferation and differentiation to generate mature cortical and medullary thymic microenvironments.
The mechanisms regulating development of immature thymic epithelial cells are unknown.
Here we provide evidence that expansion of embryonic thymic epithelium is regulated by the continued presence of mesenchyme.
In particular, mesenchymal cells are shown to mediate thymic epithelial cell proliferation through their provision of fibroblast growth factors 7 and 10.
In contrast, differentiation of immature thymic epithelial cells, including acquisition of markers of mature cortical and medullary epithelium, occurs in the absence of ongoing mesenchymal support.
Collectively, our data define a role for mesenchymal cells in thymus development, and indicate distinct mechanisms regulate proliferation and differentiation of immature thymic epithelial cells.
In addition, our findings may aid in studies aimed at developing strategies to enhance thymus reconstitution and functioning in clinical certain contexts where thymic epithelial cell function is perturbed.

Related Results

An Epithelial Progenitor Pool Regulates Thymus Growth
An Epithelial Progenitor Pool Regulates Thymus Growth
Abstract Thymic epithelium provides an essential cellular substrate for T cell development and selection. Gradual age-associated thymic atrophy leads to a reducti...
PDGFRα-expressing mesenchyme regulates thymus growth and the availability of intrathymic niches
PDGFRα-expressing mesenchyme regulates thymus growth and the availability of intrathymic niches
AbstractThe thymus provides a specialized site for the production of T cells capable of recognizing foreign antigens in the context of self–major histocompatibility complex (MHC) m...
Retropharyngeal Aberrant Thymus
Retropharyngeal Aberrant Thymus
Introduction. Upper airway obstruction from a retropharyngeal mass requires urgent evaluation. In children, the differential diagnosis includes infection, trauma,...
Abstract 1776: Exploring anetumab ravtansine in a preclinical model of thymic carcinoma
Abstract 1776: Exploring anetumab ravtansine in a preclinical model of thymic carcinoma
Abstract Thymic epithelial tumors (TETs) are a group of rare tumors (0.13 per 100,000 persons), comprised of thymomas and thymic carcinoma, arising from the epitheli...
Relationship of thymic changes and complications after congenital heart surgery
Relationship of thymic changes and complications after congenital heart surgery
Background The true role of thymic function in children with congenital heart defects is largely unknown. ...
Infection-Associated Thymic Atrophy
Infection-Associated Thymic Atrophy
The thymus is a vital organ of the immune system that plays an essential role in thymocyte development and maturation. Thymic atrophy occurs with age (physiological thymic atrophy)...

Back to Top