首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Early defects in human T-cell development severely affect distribution and maturation of thymic stromal cells: possible implications for the pathophysiology of Omenn syndrome.
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Early defects in human T-cell development severely affect distribution and maturation of thymic stromal cells: possible implications for the pathophysiology of Omenn syndrome.

机译:人类T细胞发育的早期缺陷严重影响胸腺基质细胞的分布和成熟:可能对Omenn综合征的病理生理产生影响。

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摘要

Thymocytes and thymic epithelial cell (TEC) cross-talk is crucial to preserve thymic architecture and function, including maturation of TECs and dendritic cells, and induction of mechanisms of central tolerance. We have analyzed thymic maturation and organization in 9 infants with various genetic defects leading to complete or partial block in T-cell development. Profound abnormalities of TEC differentiation (with lack of AIRE expression) and severe reduction of thymic dendritic cells were identified in patients with T-negative severe combined immunodeficiency, reticular dysgenesis, and Omenn syndrome. The latter also showed virtual absence of thymic Foxp3(+) T cells. In contrast, an IL2RG-R222C hypomorphic mutation permissive for T-cell development allowed for TEC maturation, AIRE expression, and Foxp3(+) T cells. Our data provide evidence that severe defects of thymopoiesis impinge on TEC homeostasis and may affect deletional and nondeletional mechanisms of central tolerance, thus favoring immune dysreactive manifestations, as in Omenn syndrome.
机译:胸腺细胞与胸腺上皮细胞(TEC)的串扰对于保持胸腺的结构和功能(包括TECs和树突状细胞的成熟以及诱导中枢耐受机制)至关重要。我们分析了9名婴儿的胸腺成熟和组织发育情况,这些婴儿具有各种遗传缺陷,从而导致T细胞发育完全或部分受阻。在T阴性严重合并免疫缺陷,网状细胞发育不全和Omenn综合征的患者中,发现了TEC分化的深层异常(缺乏AIRE表达)和胸腺树突状细胞严重减少。后者还显示几乎没有胸腺Foxp3(+)T细胞。相反,允许T细胞发育的IL2RG-R222C亚型突变允许TEC成熟,AIRE表达和Foxp3(+)T细胞。我们的数据提供了证据,表明胸腺细胞的严重缺陷会影响TEC的稳态,并可能影响中枢耐受的缺失和非缺失机制,从而促进免疫功能低下的表现,如Omenn综合征。

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