Donor monocyte–derived macrophages promote human acute graft-versus-host disease

CD11c公司 免疫学 CD14型 生物 单核细胞 巨噬细胞 移植物抗宿主病 骨髓生成 人口 趋化因子 表型 转录组 抗原 发病机制 造血 炎症 免疫系统 细胞生物学 干细胞 医学 基因表达 体外 基因 环境卫生 生物化学
作者
Laura Jardine,Urszula Cytlak,Merry Gunawan,Gary Reynolds,Kile Green,Xiao-Nong Wang,Sarah Pagan,Maharani Paramitha,Christopher A Lamb,Anna Long,Erin Hurst,Smeera Nair,Graham Jackson,Amy Publicover,Venetia Bigley,Muzlifah Haniffa,A. John Simpson,Matthew Collin
出处
期刊:Journal of Clinical Investigation [American Society for Clinical Investigation]
卷期号:130 (9): 4574-4586 被引量:31
标识
DOI:10.1172/jci133909
摘要

Myelopoiesis is invariably present and contributes to pathology in animal models of graft-versus-host disease (GVHD). In humans, a rich inflammatory infiltrate bearing macrophage markers has also been described in histological studies. In order to determine the origin, functional properties, and role in pathogenesis of these cells, we isolated single-cell suspensions from acute cutaneous GVHD and subjected them to genotype, transcriptome, and in vitro functional analysis. A donor-derived population of CD11c+CD14+ cells was the dominant population of all leukocytes in GVHD. Surface phenotype and NanoString gene expression profiling indicated the closest steady-state counterpart of these cells to be monocyte-derived macrophages. In GVHD, however, there was upregulation of monocyte antigens SIRPα and S100A8/9 transcripts associated with leukocyte trafficking, pattern recognition, antigen presentation, and costimulation. Isolated GVHD macrophages stimulated greater proliferation and activation of allogeneic T cells and secreted higher levels of inflammatory cytokines than their steady-state counterparts. In HLA-matched mixed leukocyte reactions, we also observed differentiation of activated macrophages with a similar phenotype. These exhibited cytopathicity to a keratinocyte cell line and mediated pathological damage to skin explants independently of T cells. Together, these results define the origin, functional properties, and potential pathogenic roles of human GVHD macrophages.
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