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早期胸腺发育过程中的细胞和分子事件。

Cellular and molecular events during early thymus development.

作者信息

Holländer Georg, Gill Jason, Zuklys Saulius, Iwanami Norimasa, Liu Cunlan, Takahama Yousuke

机构信息

Pediatric Immunology, The Center for Biomedicine, Department of Clinical-Biological Sciences, University of Basel, and The University Children's Hospital of Basel, Basel, Switzerland.

出版信息

Immunol Rev. 2006 Feb;209:28-46. doi: 10.1111/j.0105-2896.2006.00357.x.

Abstract

The thymic stromal compartment consists of several cell types that collectively enable the attraction, survival, expansion, migration, and differentiation of T-cell precursors. The thymic epithelial cells constitute the most abundant cell type of the thymic microenvironment and can be differentiated into morphologically, phenotypically, and functionally separate subpopulations of the postnatal thymus. All thymic epithelial cells are derived from the endodermal lining of the third pharyngeal pouch. Very soon after the formation of a thymus primordium and prior to its vascularization, thymic epithelial cells orchestrate the first steps of intrathymic T-cell development, including the attraction of lymphoid precursor cells to the thymic microenvironment. The correct segmentation of pharyngeal epithelial cells and their subsequent crosstalk with cells in the pharyngeal arches are critical prerequisites for the formation of a thymus anlage. Mutations in several transcription factors and their target genes have been informative to detail some of the complex mechanisms that control the development of the thymus anlage. This review highlights recent findings related to the genetic control of early thymus organogenesis and provides insight into the molecular basis by which lymphocyte precursors are attracted to the thymus.

摘要

胸腺基质细胞区室由几种细胞类型组成,这些细胞共同促成T细胞前体的吸引、存活、扩增、迁移和分化。胸腺上皮细胞是胸腺微环境中最丰富的细胞类型,可分化为出生后胸腺在形态、表型和功能上不同的亚群。所有胸腺上皮细胞均来源于第三咽囊的内胚层内衬。在胸腺原基形成后不久且在其血管化之前,胸腺上皮细胞就协调胸腺内T细胞发育的第一步,包括将淋巴前体细胞吸引到胸腺微环境中。咽上皮细胞的正确分割及其随后与咽弓细胞的相互作用是形成胸腺原基的关键先决条件。几种转录因子及其靶基因的突变有助于详细了解一些控制胸腺原基发育的复杂机制。本综述重点介绍了与早期胸腺器官发生的遗传控制相关的最新发现,并深入探讨了淋巴细胞前体被吸引到胸腺的分子基础。

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