Thymic microenvironments are essential for the proper development and selection of T cells critical for a functional and self-tolerant adaptive immune response. While significant turnover occurs, it is unclear whether populations of adult stem cells contribute to the maintenance of postnatal thymic epithelial microenvironments. Here, the slow cycling characteristic of stem cells and their property of label-retention were used to identify a K5-expressing thymic stromal cell population capable of generating clonal cell lines that retain the capacity to differentiate into a number of mesenchymal lineages including adipocytes, chondrocytes and osteoblasts suggesting a mesenchymal stem cell-like phenotype. Using cell surface analysis both cultur...
Adult tissue-specific stem cells (SCs) mediate tissue homeostasis and regeneration and can give rise...
International audienceCharacterizing thymic settling progenitors is important to understand the pre-...
SummaryWithin the thymus, two major thymic epithelial cell (TEC) subsets—cortical and medullary TECs...
<div><p>Thymic microenvironments are essential for the proper development and selection of T cells c...
The aim of this work was to characterize multipotent mesenchymal stromal cells (MSCs) in the postnat...
The thymus serves as the primary lymphoid organ responsible for the development and selection of a s...
Summary: Evidence suggests that a stem-cell-driven differentiation hierarchy maintains the dynamic t...
Thymus is necessary for lifelong immunological tolerance and immunity. It displays a distinctive epi...
The thymus is unique in its ability to support the maturation of phenotypically and functionally dis...
<div><p>Common thymic epithelial progenitor/stem cells (TEPCs) differentiate into cortical and medul...
Despite the importance of thymic stromal cells to T-cell development, relatively little is known abo...
The thymic stroma primarily comprises epithelial, mesenchymal and endothelial cells, interspersed wi...
SummaryThymic epithelial cells (TECs) are critical for T cell development and self-tolerance but are...
SummaryAdult tissue-specific stem cells (SCs) mediate tissue homeostasis and regeneration and can gi...
AbstractT cell differentiation and repertoire selection depend critically on several distinct thymic...
Adult tissue-specific stem cells (SCs) mediate tissue homeostasis and regeneration and can give rise...
International audienceCharacterizing thymic settling progenitors is important to understand the pre-...
SummaryWithin the thymus, two major thymic epithelial cell (TEC) subsets—cortical and medullary TECs...
<div><p>Thymic microenvironments are essential for the proper development and selection of T cells c...
The aim of this work was to characterize multipotent mesenchymal stromal cells (MSCs) in the postnat...
The thymus serves as the primary lymphoid organ responsible for the development and selection of a s...
Summary: Evidence suggests that a stem-cell-driven differentiation hierarchy maintains the dynamic t...
Thymus is necessary for lifelong immunological tolerance and immunity. It displays a distinctive epi...
The thymus is unique in its ability to support the maturation of phenotypically and functionally dis...
<div><p>Common thymic epithelial progenitor/stem cells (TEPCs) differentiate into cortical and medul...
Despite the importance of thymic stromal cells to T-cell development, relatively little is known abo...
The thymic stroma primarily comprises epithelial, mesenchymal and endothelial cells, interspersed wi...
SummaryThymic epithelial cells (TECs) are critical for T cell development and self-tolerance but are...
SummaryAdult tissue-specific stem cells (SCs) mediate tissue homeostasis and regeneration and can gi...
AbstractT cell differentiation and repertoire selection depend critically on several distinct thymic...
Adult tissue-specific stem cells (SCs) mediate tissue homeostasis and regeneration and can give rise...
International audienceCharacterizing thymic settling progenitors is important to understand the pre-...
SummaryWithin the thymus, two major thymic epithelial cell (TEC) subsets—cortical and medullary TECs...