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Harnessing lipid signaling pathways to target specialized pro-angiogenic neutrophil subsets for regenerative immunotherapy

机译:利用脂质信号传导途径以靶向再生免疫疗法的专用促血管生成中性粒细胞亚集

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To gain insights into neutrophil heterogeneity dynamics in the context of sterile inflammation and wound healing, we performed a pseudotime analysis of single-cell flow cytometry data using the spanning-tree progression analysis of density-normalized events algorithm. This enables us to view neutrophil transitional subsets along a pseudotime trajectory and identify distinct VEGFR1, VEGFR2, and CXCR4 high-expressing pro-angiogenic neutrophils. While the proresolving lipid mediator aspirin-triggered resolvin D1 (AT-RvD1) has a known ability to limit neutrophil infiltration, our analysis uncovers a mode of action in which AT-RvD1 leads to inflammation resolution through the selective reprogramming toward a therapeutic neutrophil subset. This accumulation leads to enhanced vascular remodeling in the skinfold window chamber and a proregenerative shift in macrophage and dendritic cell phenotype, resulting in improved wound closure after skin transplantation. As the targeting of functional immune subsets becomes the key to regenerative immunotherapies, single-cell pseudotime analysis tools will be vital in this field.
机译:为了在无菌炎症和伤口愈合的背景下进入嗜中性粒细胞异质性动态,我们使用密度标准化事件算法的跨度树进展分析进行了单细胞流式细胞术数据的假期分析。这使我们能够沿伪轨迹观察嗜中性粒细胞过渡亚群,并鉴定不同的VEGFR1,VEGFR2和CXCR4高表达促血管生成中性粒细胞。虽然预测脂质介体触发的reatvin d1(ar-rvd1)具有已知的限制中性粒细胞浸润的能力,但我们的分析揭示了一种作用方式,其中AT-RVD1通过朝向治疗性嗜中性粒细胞子集的选择性重编程导致炎症分辨率。该累积导致皮带窗户腔室中的血管重塑和巨噬细胞和树突细胞表型的前省移位,导致皮肤移植后改善伤口闭合。由于功能性免疫子集的靶向成为再生免疫检查的关键,单细胞伪时间分析工具在该领域至关重要。

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