Macrophage-derived SPP1 exacerbate myocardial injury by interacting with fibroblasts in viral myocarditis.

IF 4.9 2区 生物学 Q1 BIOLOGY Biology Direct Pub Date : 2025-03-14 DOI:10.1186/s13062-025-00621-2
Xiuyun Duan, Li Zhang, Keyu Liu, Kaiyin Guo, Yingnan You, Hailin Jia, Shan Zhou, Bo Han
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Abstract

Background: Viral myocarditis (VMC) is an inflammatory myocardial condition triggered by viral infections which involves pathogenic-related damage and immune-mediated damage. However, the precise immunopathogenic mechanisms underlying VMC remain elusive.

Methods: We performed single-cell RNA sequencing on mouse hearts during the acute phase of CVB3-induced VMC. After manually annotating cell types, functional analyses of macrophage were performed by cell ratio changes, customized gene set module scoring and CellPhoneDB. Utilizing indirect co-culture experiments in vitro, the effects of macrophage-derived SPP1 on cardiac fibroblasts were investigated. Depletion of macrophages and inhibition of SPP1 expression in mice were carried out to study the effects of macrophage-derived SPP1 on cardiac function, inflammation levels, and myocardial injury in mice with VMC.

Results: Our data revealed that macrophages are the major immune cells which infiltrate the heart during the acute phase of VMC, particularly a macrophage subpopulation which highly expresses Spp1 (Spp1+ macrophages) and exhibited characteristics of peripheral blood monocytes. Spp1+ macrophages communicate extensively with fibroblasts during VMC, and that SPP1 promotes fibroblast conversion to an inflammatory phenotype with high Ccl2/Ccl7 expression. This in turn increases monocyte chemotaxis to the heart. Besides, a partial depletion of macrophages in the early stages of VMC attenuated myocardial inflammation and myocardial injury in mice. Inhibition of SPP1 reduced cardiac macrophage infiltration, attenuated myocardial inflammation, and improved cardiac function in VMC mice.

Conclusion: Our findings suggested that Spp1+ macrophages could self-recruit, and macrophage-derived SPP1 exacerbated myocardial immune injury by promoting high Ccl2/Ccl7 expression in fibroblasts. Our study advances understandings of VMC pathogenesis, and provides novel insight into potential immunotherapies for VMC.

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病毒性心肌炎中巨噬细胞源性SPP1通过与成纤维细胞相互作用加重心肌损伤。
背景:病毒性心肌炎(VMC)是一种由病毒感染引起的炎症性心肌疾病,涉及病原性损伤和免疫介导的损伤。然而,VMC的确切免疫致病机制尚不清楚。方法:我们对cvb3诱导的VMC急性期小鼠心脏进行了单细胞RNA测序。在手工标注细胞类型后,通过细胞比例变化、定制基因集模块评分和CellPhoneDB进行巨噬细胞功能分析。利用体外间接共培养实验,研究巨噬细胞源性SPP1对心脏成纤维细胞的影响。通过小鼠巨噬细胞的消耗和SPP1表达的抑制,研究巨噬细胞来源的SPP1对VMC小鼠心功能、炎症水平和心肌损伤的影响。结果:我们的数据显示,巨噬细胞是VMC急性期浸润心脏的主要免疫细胞,特别是巨噬细胞亚群高表达Spp1 (Spp1+巨噬细胞),并表现出外周血单核细胞的特征。在VMC过程中,Spp1+巨噬细胞与成纤维细胞广泛交流,Spp1促进成纤维细胞转化为Ccl2/Ccl7高表达的炎症表型。这反过来又增加了单核细胞对心脏的趋化性。此外,VMC早期巨噬细胞的部分缺失减轻了小鼠心肌炎症和心肌损伤。抑制SPP1可减少VMC小鼠心肌巨噬细胞浸润,减轻心肌炎症,改善心功能。结论:Spp1+巨噬细胞具有自我招募能力,巨噬细胞源性Spp1通过促进成纤维细胞中Ccl2/Ccl7的高表达而加重心肌免疫损伤。我们的研究促进了对VMC发病机制的理解,并为VMC的潜在免疫治疗提供了新的见解。
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来源期刊
Biology Direct
Biology Direct 生物-生物学
CiteScore
6.40
自引率
10.90%
发文量
32
审稿时长
7 months
期刊介绍: Biology Direct serves the life science research community as an open access, peer-reviewed online journal, providing authors and readers with an alternative to the traditional model of peer review. Biology Direct considers original research articles, hypotheses, comments, discovery notes and reviews in subject areas currently identified as those most conducive to the open review approach, primarily those with a significant non-experimental component.
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