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使 cPLAα 活性偏向氧化二十碳烯酸产物会促进中性粒细胞 N2 极化、伤口愈合和对脓毒症的反应。

Skewing cPLAα activity toward oxoeicosanoid production promotes neutrophil N2 polarization, wound healing, and the response to sepsis.

机构信息

Department of Cell Biology, Microbiology, and Molecular Biology, University of South Florida, Tampa, FL 33620, USA.

Department of Medicine, Division of Hematology and Oncology, University of Virginia, Charlottesville, VA 22903, USA.

出版信息

Sci Signal. 2023 Jul 11;16(793):eadd6527. doi: 10.1126/scisignal.add6527.

Abstract

Uncontrolled inflammation is linked to poor outcomes in sepsis and wound healing, both of which proceed through distinct inflammatory and resolution phases. Eicosanoids are a class of bioactive lipids that recruit neutrophils and other innate immune cells. The interaction of ceramide 1-phosphate (C1P) with the eicosanoid biosynthetic enzyme cytosolic phospholipase A (cPLA) reduces the production of a subtype of eicosanoids called oxoeicosanoids. We investigated the effect of shifting the balance in eicosanoid biosynthesis on neutrophil polarization and function. Knockin mice expressing a cPLA mutant lacking the C1P binding site (α mice) showed enhanced and sustained neutrophil infiltration into wounds and the peritoneum during the inflammatory phase of wound healing and sepsis, respectively. The mice exhibited improved wound healing and reduced susceptibility to sepsis, which was associated with an increase in anti-inflammatory N2-type neutrophils demonstrating proresolution behaviors and a decrease in proinflammatory N1-type neutrophils. The N2 polarization of α neutrophils resulted from increased oxoeicosanoid biosynthesis and autocrine signaling through the oxoeicosanoid receptor OXER1 and partially depended on OXER1-dependent inhibition of the pentose phosphate pathway (PPP). Thus, C1P binding to cPLAα suppresses neutrophil N2 polarization, thereby impairing wound healing and the response to sepsis.

摘要

失控的炎症与脓毒症和伤口愈合不良有关,这两者都通过不同的炎症和消退阶段进行。类二十烷酸是一类生物活性脂质,可招募中性粒细胞和其他先天免疫细胞。神经酰胺 1-磷酸(C1P)与类二十烷酸生物合成酶细胞质磷脂酶 A(cPLA)的相互作用,减少了一类称为氧代二十烷酸的类二十烷酸亚型的产生。我们研究了改变类二十烷酸生物合成平衡对中性粒细胞极化和功能的影响。表达缺乏 C1P 结合位点的 cPLA 突变体的敲入小鼠(α 小鼠)在伤口愈合和脓毒症的炎症阶段分别表现出增强和持续的中性粒细胞浸润到伤口和腹膜中。这些小鼠表现出改善的伤口愈合和降低的脓毒症易感性,这与抗炎 N2 型中性粒细胞的增加有关,其表现出促解决行为,而促炎 N1 型中性粒细胞减少。α 中性粒细胞的 N2 极化是由于氧化二十烷酸生物合成增加和通过氧化二十烷酸受体 OXER1 的自分泌信号转导所致,部分依赖于 OXER1 依赖性抑制戊糖磷酸途径(PPP)。因此,C1P 与 cPLAα 的结合抑制中性粒细胞的 N2 极化,从而损害伤口愈合和对脓毒症的反应。

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