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1.
Immunity ; 50(1): 152-165.e8, 2019 01 15.
Artículo en Inglés | MEDLINE | ID: mdl-30611611

RESUMEN

The ability of the immune system to discriminate self from non-self is essential for eradicating microbial pathogens but is also responsible for allograft rejection. Whether it is possible to selectively suppress alloresponses while maintaining anti-pathogen immunity remains unknown. We found that mice deficient in coronin 1, a regulator of naive T cell homeostasis, fully retained allografts while maintaining T cell-specific responses against microbial pathogens. Mechanistically, coronin 1-deficiency increased cyclic adenosine monophosphate (cAMP) concentrations to suppress allo-specific T cell responses. Costimulation induced on microbe-infected antigen presenting cells was able to overcome cAMP-mediated immunosuppression to maintain anti-pathogen immunity. In vivo pharmacological modulation of this pathway or a prior transfer of coronin 1-deficient T cells actively suppressed allograft rejection. These results define a coronin 1-dependent regulatory axis in T cells important for allograft rejection and suggest that modulation of this pathway may be a promising approach to achieve long-term acceptance of mismatched allografts.


Asunto(s)
Rechazo de Injerto/inmunología , Trasplante de Corazón , Infecciones/inmunología , Proteínas de Microfilamentos/metabolismo , Trasplante de Piel , Linfocitos T/inmunología , Aloinjertos/inmunología , Animales , Antígenos Bacterianos/inmunología , Antígenos Fúngicos/inmunología , Antígenos Virales/inmunología , Células Cultivadas , AMP Cíclico/inmunología , Supervivencia de Injerto , Homeostasis/genética , Humanos , Inmunidad , Terapia de Inmunosupresión , Ratones , Ratones Endogámicos BALB C , Ratones Endogámicos C57BL , Ratones Noqueados , Transducción de Señal , Tolerancia al Trasplante
2.
Immunol Rev ; 195: 28-50, 2003 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-12969308

RESUMEN

The thymus is a complex epithelial organ in which thymocyte development is dependent upon the sequential contribution of morphologically and phenotypically distinct stromal cell compartments. It is these microenvironments that provide the unique combination of cellular interactions, cytokines, and chemokines to induce thymocyte precursors to undergo a differentiation program that leads to the generation of functional T cells. Despite the indispensable role of thymic epithelium in the generation of T cells, the mediators of this process and the differentiation pathway undertaken by the primordial thymic epithelial cells are not well defined. There is a lack of lineage-specific cell-surface-associated markers, which are needed to characterize putative thymic epithelial stem cell populations. This review explores the role of thymic stromal cells in T-cell development and thymic organogenesis, as well as the molecular signals that contribute to the growth and expansion of primordial thymic epithelial cells. It highlights recent advances in these areas, which have allowed for a lineage relationship amongst thymic epithelial cell subsets to be proposed. While many fundamental questions remain to be addressed, collectively these works have broadened our understanding of how the thymic epithelium becomes specialized in the ability to support thymocyte differentiation. They should also facilitate the development of novel, rationally based therapeutic strategies for the regeneration and manipulation of thymic function in the treatment of many clinical conditions in which defective T cells have an important etiological role.


Asunto(s)
Organogénesis , Regeneración , Timo/citología , Timo/inmunología , Animales , Quimiocinas/genética , Quimiocinas/inmunología , Quimiocinas/metabolismo , Epitelio/embriología , Epitelio/crecimiento & desarrollo , Epitelio/inmunología , Epitelio/metabolismo , Humanos , Transducción de Señal , Linfocitos T/citología , Linfocitos T/inmunología , Linfocitos T/metabolismo , Timo/embriología , Timo/metabolismo
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