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工程化龛位支持人源化小鼠中人类树突状细胞的发育。

Engineered niches support the development of human dendritic cells in humanized mice.

机构信息

Centre for Inflammation Biology and Cancer Immunology, The Peter Gorer Department of Immmunobiology, King's College London, London, UK.

Cancer Research UK, King's Health Partners Cancer Centre, King's College London, London, UK.

出版信息

Nat Commun. 2020 Apr 28;11(1):2054. doi: 10.1038/s41467-020-15937-y.

Abstract

Classical dendritic cells (cDCs) are rare sentinel cells specialized in the regulation of adaptive immunity. Modeling cDC development is crucial to study cDCs and harness their therapeutic potential. Here we address whether cDCs could differentiate in response to trophic cues delivered by mesenchymal components of the hematopoietic niche. We find that mesenchymal stromal cells engineered to express membrane-bound FLT3L and stem cell factor (SCF) together with CXCL12 induce the specification of human cDCs from CD34 hematopoietic stem and progenitor cells (HSPCs). Engraftment of engineered mesenchymal stromal cells (eMSCs) together with CD34 HSPCs creates an in vivo synthetic niche in the dermis of immunodeficient mice driving the differentiation of cDCs and CD123AXLCD327 pre/AS-DCs. cDC2s generated in vivo display higher levels of resemblance with human blood cDCs unattained by in vitro-generated subsets. Altogether, eMSCs provide a unique platform recapitulating the full spectrum of cDC subsets enabling their functional characterization in vivo.

摘要

经典树突状细胞(cDCs)是一种稀有且具有特殊功能的哨兵细胞,专门调节适应性免疫。建立 cDC 分化模型对于研究 cDCs 及其治疗潜力至关重要。在这里,我们研究了 cDC 是否可以对造血龛位间质成分提供的营养信号做出反应而进行分化。我们发现,与表达膜结合型 FLT3L 和干细胞因子(SCF)以及 CXCL12 的间充质基质细胞共培养,可以从 CD34 造血干祖细胞(HSPCs)中诱导产生人类 cDC。将工程化的间充质基质细胞(eMSCs)与 CD34 HSPCs 共移植到免疫缺陷小鼠的真皮中,可以创建一个体内合成龛位,驱动 cDC 和 CD123AXLCD327 pre/AS-DCs 的分化。体内生成的 cDC2 与体外生成的亚群相比,更接近人类血液 cDCs。总之,eMSCs 提供了一个独特的平台,可以重现 cDC 亚群的全貌,从而在体内对其功能进行特征分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0c9/7189247/86d315eac6d6/41467_2020_15937_Fig1_HTML.jpg

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