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Myeloid skewing in murine autoimmune arthritis occurs in hematopoietic stem and primitive progenitor cells

机译:小鼠自身免疫性关节炎中的骨髓偏斜发生在造血干细胞和原始祖细胞中

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摘要

Skewing toward myeloid cell production is often observed in chronic inflammation and autoimmune diseases. Herein, we determined whether persistent myeloid activation and proinflammatory output occurring in pathologic conditions is at the level of hematopoietic stem and primitive progenitor cells (HSPPCs). By using a mouse arthritis model, we found that even though HSPPCs in arthritis still retained the capacity to differentiate into different lineages, they acquired enhanced in vitro and in vivo propensity in a disease-dependent manner to generate myeloid cells, the key perpetrators of tissue damage in arthritis. This myeloid skewing was cell intrinsic, as arthritic HSPPCs up-regulate myeloid-specific transcripts including S100a8. Exogenous S100a8 promoted myeloid cell output from wild-type HSPPCs, suggesting mechanistic involvement of this gene in the myeloid priming that occurs in arthritic HSPPCs. Therefore, our results indicate that in arthritic mice, HSPPCs adopt a pathologic state that favors disease persistence.
机译:在慢性炎症和自身免疫性疾病中经常观察到偏向骨髓细胞的产生。本文中,我们确定了病理条件下发生的持续性髓样活化和促炎输出是否在造血干细胞和原始祖细胞(HSPPCs)水平。通过使用小鼠关节炎模型,我们发现,即使关节炎中的HSPPC仍然保留了分化成不同谱系的能力,它们仍以疾病依赖的方式获得了增强的体外和体内倾向,从而产生了髓样细胞,而髓样细胞是组织的关键肇事者关节炎损害。由于关节炎的HSPPC上调了包括S100a8在内的髓样特异性转录物,因此这种髓样倾斜是细胞固有的。外源性S100a8促进了野生型HSPPCs的髓样细胞输出,这表明该基因参与了关节炎HSPPCs的髓样启动过程。因此,我们的结果表明,在关节炎小鼠中,HSPPC具有有利于疾病持久性的病理状态。

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