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Spatiotemporal photolabeling of neutrophil trafficking during inflammation in live zebrafish

机译:活斑马鱼发炎时中性粒细胞运输的时空光标记

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摘要

How neutrophils traffic during inflammation in vivo remains elusive. To visualize the origin and fate of neutrophils during induction and resolution of inflammation, we established a genetically encoded photolabeling system by generating transgenic zebrafish that express a photoconvertible fluorescent reporter Dendra2 in neutrophils. Spatiotemporal photolabeling of neutrophils in vivo demonstrates that they emerge from the hematopoietic tissue in close proximity to injured tissue and repeat forward and reverse migration between the wound and the vasculature. Subsequently, neutrophils disperse throughout the body as wound-healing proceeds, contributing to local resolution at injured tissue and systemic dissemination of wound-sensitized neutrophils. Tissue damage also alters the fate of neutrophils in the caudal hematopoietic tissue and promotes caudorostral mobilization of neutrophils via the circulation to the cephalic mesenchyme. This work provides new insight into neutrophil behaviors during inflammation and resolution within a multicellular organism.
机译:在体内炎症过程中嗜中性粒细胞如何运输仍然难以捉摸。为了可视化中性粒细胞在炎症的诱导和消退过程中的起源和命运,我们通过产生在中性粒细胞中表达可光转换的荧光报告基因Dendra2的转基因斑马鱼,建立了遗传编码的光标记系统。嗜中性粒细胞在体内的时空光标记表明,它们从造血组织中非常靠近受损组织出现,并在伤口和脉管系统之间重复向前和向后迁移。随后,随着伤口愈合的进行,嗜中性粒细胞会散布到全身,有助于伤口处的局部消融和伤口敏感的嗜中性粒细胞的全身扩散。组织损伤还改变了尾部造血组织中嗜中性粒细胞的命运,并促进了嗜中性粒细胞通过环向头皮间充质的循环移动。这项工作提供了在多细胞生物体内炎症和消退过程中嗜中性粒细胞行为的新见解。

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