Search Results - "Jenkinson, Eric"
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An essential role for medullary thymic epithelial cells during the intrathymic development of invariant NKT cells
Published in The Journal of immunology (1950) (15-03-2014)“…In the thymus, interactions with both cortical and medullary microenvironments regulate the development of self-tolerant conventional CD4(+) and CD8(+) αβT…”
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Generation of both cortical and Aire+ medullary thymic epithelial compartments from CD205+ progenitors
Published in European journal of immunology (01-03-2013)“…In the adult thymus, the development of self‐tolerant thymocytes requires interactions with thymic epithelial cells (TECs). Although both cortical and…”
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The thymic medulla is required for Foxp3+ regulatory but not conventional CD4+ thymocyte development
Published in The Journal of experimental medicine (08-04-2013)“…A key role of the thymic medulla is to negatively select autoreactive CD4(+) and CD8(+) thymocytes, a process important for T cell tolerance induction…”
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Clonal analysis reveals a common progenitor for thymic cortical and medullary epithelium
Published in Nature (22-06-2006)“…The thymus provides an essential environment for the development of T cells from haemopoietic progenitors. This environment is separated into cortical and…”
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RANK signals from CD4(+)3(-) inducer cells regulate development of Aire-expressing epithelial cells in the thymic medulla
Published in The Journal of experimental medicine (11-06-2007)“…Aire-expressing medullary thymic epithelial cells (mTECs) play a key role in preventing autoimmunity by expressing tissue-restricted antigens to help purge the…”
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Rank Signaling Links the Development of Invariant γδ T Cell Progenitors and Aire+ Medullary Epithelium
Published in Immunity (Cambridge, Mass.) (23-03-2012)“…The thymic medulla provides a specialized microenvironment for the negative selection of T cells, with the presence of autoimmune regulator (Aire)-expressing…”
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Wnt4 and LAP2alpha as pacemakers of thymic epithelial senescence
Published in PloS one (18-05-2010)“…Age-associated thymic involution has considerable physiological impact by inhibiting de novo T-cell selection. This impaired T-cell production leads to…”
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Generating intrathymic microenvironments to establish T-cell tolerance
Published in Nature reviews. Immunology (01-12-2007)“…Alphabeta T cells pass through a series of lymphoid tissue stromal microenvironments to acquire self tolerance and functional competence. In the thymus,…”
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Lymphotoxin signals from positively selected thymocytes regulate the terminal differentiation of medullary thymic epithelial cells
Published in The Journal of immunology (1950) (15-10-2010)“…The thymic medulla represents a key site for the induction of T cell tolerance. In particular, autoimmune regulator (Aire)-expressing medullary thymic…”
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10
Lymphostromal interactions in thymic development and function
Published in Nature reviews. Immunology (01-10-2001)“…The generation of a peripheral T-cell pool is essential for normal immune system function. CD4+ and CD8+ T cells are produced most efficiently in the thymus,…”
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Checkpoints in the Development of Thymic Cortical Epithelial Cells
Published in The Journal of immunology (1950) (01-01-2009)“…In the thymus, interactions between immature thymocytes and thymic epithelial cells (TECs) regulate the development and selection of self-tolerant…”
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Differential Requirement for CCR4 and CCR7 during the Development of Innate and Adaptive alpha beta T Cells in the Adult Thymus
Published in The Journal of immunology (1950) (01-08-2014)“…alpha beta T cell development depends upon serial migration of thymocyte precursors through cortical and medullary microenvironments, enabling specialized…”
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13
Developmentally regulated availability of RANKL and CD40 ligand reveals distinct mechanisms of fetal and adult cross-talk in the thymus medulla
Published in The Journal of immunology (1950) (15-12-2012)“…T cell tolerance in the thymus is a key step in shaping the developing T cell repertoire. Thymic medullary epithelial cells play multiple roles in this…”
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Osteoprotegerin-Mediated Homeostasis of Rank+ Thymic Epithelial Cells Does Not Limit Foxp3+ Regulatory T Cell Development
Published in The Journal of immunology (1950) (15-09-2015)“…In the thymus, medullary thymic epithelial cells (mTEC) regulate T cell tolerance via negative selection and Foxp3(+) regulatory T cell (Treg) development, and…”
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Differential requirement for CCR4 in the maintenance but not establishment of the invariant Vγ5(+) dendritic epidermal T-cell pool
Published in PloS one (12-09-2013)“…Thymocytes expressing the invariant Vγ5 γδT-cell receptor represent progenitors of dendritic epidermal T-cells (DETC) that play an important immune…”
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Normal T cell selection occurs in CD205-deficient thymic microenvironments
Published in PloS one (31-12-2012)“…The thymus imparts a developmental imprint upon T cells, screening beneficial and self-tolerant T cell receptor (TCR) specificities. Cortical thymic epithelial…”
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Sequential phases in the development of Aire-expressing medullary thymic epithelial cells involve distinct cellular input
Published in European journal of immunology (01-04-2008)“…Intrathymic deletion of immature thymocytes that express self-reactive TCR specificities is essential in the generation of self tolerance. Medullary thymic…”
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Redefining epithelial progenitor potential in the developing thymus
Published in European journal of immunology (01-09-2007)“…Cortical and medullary epithelium represent specialised cell types that play key roles in thymocyte development, including positive and negative selection of…”
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An Epithelial Progenitor Pool Regulates Thymus Growth
Published in The Journal of immunology (1950) (01-11-2008)“…Thymic epithelium provides an essential cellular substrate for T cell development and selection. Gradual age-associated thymic atrophy leads to a reduction in…”
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roadmap for thymic epithelial cell development
Published in European journal of immunology (01-07-2009)“…Thymic epithelial cells (TEC) are essential components of the thymus that guide and control the development and TCR repertoire selection of T cells…”
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