Institute for Immunology, Biomedical Center, Ludwig-Maximilian-University, Munich, Germany.
Front Immunol. 2019 May 29;10:1222. doi: 10.3389/fimmu.2019.01222. eCollection 2019.
Dendritic cells (DCs) are professional antigen presenting cells (APCs) that originate in the bone marrow and are continuously replenished from hematopoietic progenitor cells. Conventional DCs (cDCs) and plasmacytoid DCs (pDCs) are distinguished by morphology and function, and can be easily discriminated by surface marker expression, both in mouse and man. Classification of DCs based on their ontology takes into account their origin as well as their requirements for transcription factor (TF) expression. cDCs and pDCs of myeloid origin differentiate from a common DC progenitor (CDP) through committed pre-DC stages. pDCs have also been shown to originate from a lymphoid progenitor derived IL-7R FLT3 precursor population containing cells with pDC or B cell potential. Technological advancements in recent years have allowed unprecedented resolution in the analysis of cell states, down to the single cell level, providing valuable information on the commitment, and dynamics of differentiation of all DC subsets. However, the heterogeneity and functional diversification of pDCs still raises the question whether different ontogenies generate restricted pDC subsets, or fully differentiated pDCs retain plasticity in response to challenges. The emergence of novel techniques for the integration of high-resolution data in individual cells promises interesting discoveries regarding DC development and plasticity in the near future.
树突状细胞(DCs)是专业的抗原呈递细胞(APCs),起源于骨髓,并由造血祖细胞不断补充。经典树突状细胞(cDCs)和浆细胞样树突状细胞(pDCs)在形态和功能上有所区分,并且可以通过表面标志物表达在小鼠和人类中轻松区分。基于其本体论的 DC 分类考虑了它们的起源以及它们对转录因子(TF)表达的要求。髓系起源的 cDCs 和 pDCs 通过定向前 DC 阶段从共同的 DC 祖细胞(CDP)分化而来。研究还表明,pDC 起源于淋巴样祖细胞,来源于含有具有 pDC 或 B 细胞潜能的细胞的 IL-7R FLT3 前体群体。近年来技术的进步使得在单细胞水平上对细胞状态的分析达到了前所未有的分辨率,提供了有关所有 DC 亚群的分化和分化动力学的有价值的信息。然而,pDC 的异质性和功能多样化仍然提出了一个问题,即不同的发生是否会产生受限的 pDC 亚群,或者完全分化的 pDC 在应对挑战时是否保持可塑性。将高分辨率数据整合到单个细胞中的新技术的出现有望在不久的将来对 DC 发育和可塑性的发现有有趣的发现。