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斑马鱼中Peds1缺乏会导致髓样细胞凋亡并加剧炎症。

Peds1 deficiency in zebrafish results in myeloid cell apoptosis and exacerbated inflammation.

作者信息

Arroyo Ana B, Tyrkalska Sylwia D, Bastida-Martínez Eva, Monera-Girona Antonio J, Cantón-Sandoval Joaquín, Bernal-Carrión Martín, García-Moreno Diana, Elías-Arnanz Montserrat, Mulero Victoriano

机构信息

Inmunidad, Inflamación y Cáncer. Departamento de Biología Celular e Histología, Facultad de Biología, Universidad de Murcia, 30100, Murcia, Spain.

Instituto Murciano de Investigación Biosanitaria Pascual Parrilla, 30120, Murcia, Spain.

出版信息

Cell Death Discov. 2024 Aug 29;10(1):388. doi: 10.1038/s41420-024-02141-w.

Abstract

Plasmalogens are glycerophospholipids with a vinyl ether bond that confers unique properties. Recent identification of the gene encoding PEDS1, the desaturase generating the vinyl ether bond, enables evaluation of the role of plasmalogens in health and disease. Here, we report that Peds1-deficient zebrafish larvae display delayed development, increased basal inflammation, normal hematopoietic stem and progenitor cell emergence, and cell-autonomous myeloid cell apoptosis. In a sterile acute inflammation model, Peds1-deficient larvae exhibited impaired inflammation resolution and tissue regeneration, increased interleukin-1β and NF-κB expression, and elevated ROS levels at the wound site. Abnormal immune cell recruitment, neutrophil persistence, and fewer but predominantly pro-inflammatory macrophages were observed. Chronic skin inflammation worsened in Peds1-deficient larvae but was mitigated by exogenous plasmalogen, which also alleviated hyper-susceptibility to bacterial infection, as did pharmacological inhibition of caspase-3 and colony-stimulating factor 3-induced myelopoiesis. Overall, our results highlight an important role for plasmalogens in myeloid cell biology and inflammation.

摘要

缩醛磷脂是一类具有乙烯基醚键的甘油磷脂,该键赋予其独特的性质。最近,编码PEDS1(生成乙烯基醚键的去饱和酶)的基因被鉴定出来,这使得人们能够评估缩醛磷脂在健康和疾病中的作用。在此,我们报告,缺乏Peds1的斑马鱼幼体表现出发育延迟、基础炎症增加、造血干细胞和祖细胞正常出现以及细胞自主性髓样细胞凋亡。在无菌急性炎症模型中,缺乏Peds1的幼体表现出炎症消退和组织再生受损、白细胞介素-1β和核因子-κB表达增加以及伤口部位活性氧水平升高。观察到免疫细胞募集异常、中性粒细胞持续存在以及促炎巨噬细胞数量减少但占主导。缺乏Peds1的幼体慢性皮肤炎症加重,但外源性缩醛磷脂可使其减轻,这也减轻了对细菌感染的高度易感性,对caspase-3的药理学抑制以及集落刺激因子3诱导的骨髓生成也有同样效果。总体而言,我们的结果突出了缩醛磷脂在髓样细胞生物学和炎症中的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4dbc/11362147/2117925841ed/41420_2024_2141_Fig1_HTML.jpg

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