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抗炎激活序列调控斑马鱼组织损伤过程中巨噬细胞的转录动力学。

An anti-inflammatory activation sequence governs macrophage transcriptional dynamics during tissue injury in zebrafish.

机构信息

Stowers Institute for Medical Research, 1000 east 50th street, Kansas City, MO, 64110, USA.

Parse Biosciences, 201 Elliott Ave W, Suite 290, Seattle, WA, 98119, USA.

出版信息

Nat Commun. 2022 Sep 20;13(1):5356. doi: 10.1038/s41467-022-33015-3.

Abstract

Macrophages are essential for tissue repair and regeneration. Yet, the molecular programs, as well as the timing of their activation during and after tissue injury are poorly defined. Using a high spatio-temporal resolution single cell analysis of macrophages coupled with live imaging after sensory hair cell death in zebrafish, we find that the same population of macrophages transitions through a sequence of three major anti-inflammatory activation states. Macrophages first show a signature of glucocorticoid activation, then IL-10 signaling and finally the induction of oxidative phosphorylation by IL-4/Polyamine signaling. Importantly, loss-of-function of glucocorticoid and IL-10 signaling shows that each step of the sequence is independently activated. Lastly, we show that IL-10 and IL-4 signaling act synergistically to promote synaptogenesis between hair cells and efferent neurons during regeneration. Our results show that macrophages, in addition to a switch from M1 to M2, sequentially and independently transition though three anti-inflammatory pathways in vivo during tissue injury in a regenerating organ.

摘要

巨噬细胞对于组织修复和再生是至关重要的。然而,它们在组织损伤过程中和损伤后的激活的分子程序及其时间仍未被很好地定义。我们通过对斑马鱼感觉毛细胞死亡后的巨噬细胞进行高时空分辨率单细胞分析以及活体成像,发现相同的巨噬细胞群体通过三个主要的抗炎激活状态的顺序发生转变。巨噬细胞首先表现出糖皮质激素激活的特征,然后是 IL-10 信号转导,最后通过 IL-4/多胺信号诱导氧化磷酸化。重要的是,糖皮质激素和 IL-10 信号转导的功能丧失表明,该序列的每个步骤都是独立激活的。最后,我们发现 IL-10 和 IL-4 信号转导协同作用,促进了再生过程中毛细胞和传出神经元之间的突触形成。我们的研究结果表明,在再生器官的组织损伤过程中,巨噬细胞除了从 M1 向 M2 转变之外,还在体内通过三个抗炎途径顺序且独立地发生转变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fedb/9489698/801cee58f192/41467_2022_33015_Fig1_HTML.jpg

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