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单细胞RNA测序剖析自身免疫性心肌炎的免疫网络

Single-Cell RNA Sequencing to Dissect the Immunological Network of Autoimmune Myocarditis.

作者信息

Hua Xiumeng, Hu Gang, Hu Qingtao, Chang Yuan, Hu Yiqing, Gao Linlin, Chen Xiao, Yang Ping-Chang, Zhang Yu, Li Mingyao, Song Jiangping

机构信息

State Key Laboratory of Cardiovascular Disease, Fuwai Hospital, National Center for Cardiovascular Diseases, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China (X.H., Y.C., Y.H., X.C., J.S.).

School of Statistics and Data Science, Key Laboratory for Medical Data Analysis and Statistical Research of Tianjin, Nankai University, China (G.H.).

出版信息

Circulation. 2020 Jul 28;142(4):384-400. doi: 10.1161/CIRCULATIONAHA.119.043545. Epub 2020 May 20.

Abstract

BACKGROUND

Myocarditis can develop into dilated cardiomyopathy, which may require heart transplantation. The immunological network of myocarditis phases remains unknown. This study aimed to investigate the immunological network during the transition from myocarditis to cardiomyopathy and to identify the genes contributing to the inflammatory response to myocarditis.

METHODS

Mice were treated with myosin heavy chain-α peptides to generate an experimental autoimmune myocarditis (EAM) model. We performed single-cell RNA sequencing analysis of cells extracted from mouse hearts during different EAM phases, including normal control, acute inflammatory, subacute inflammatory, and myopathy phases. Human heart tissues were collected from the surgically removed hearts of patients who had undergone heart transplantation.

RESULTS

We identified 26 cell subtypes among 34 665 cells. Macrophages constituted the main immune cell population at all disease phases (>60%), and an inflammation-associated macrophage cluster was identified in which the expression of -regulated genes was upregulated. The neutrophil population was increased after the induction of EAM, and neutrophils then released to participate in the EAM process. T cells were observed at the highest percentage at the subacute inflammatory phase. T-helper 17 cells, in which the expression of -regulated genes was upregulated, constituted the main T-cell population detected at the acute inflammatory phase, whereas regulatory T cells were the main T-cell population detected at the subacute inflammatory phase, and γδ T cells releasing were the main T-cell population observed at the myopathy phase. Moreover, the expression level correlated with the extent of inflammation. In addition, PX-478 could alleviate the inflammatory responses of the different EAM phases. Last, was expressed at higher levels in patients with acute autoimmune myocarditis than in patients with dilated cardiomyopathy and healthy control subjects.

CONCLUSIONS

We present here a comprehensive single-cell landscape of the cardiac immune cells in different EAM phases. In addition, we elucidate the contribution of to the inflammatory response through the regulation of immune cell activity, particularly of macrophage cluster 2 and T-helper 17 cells. Moreover, an inhibitor alleviated inflammatory cell infiltration of the EAM model and may serve as a potential therapeutic target in the clinic.

摘要

背景

心肌炎可发展为扩张型心肌病,后者可能需要进行心脏移植。心肌炎各阶段的免疫网络尚不清楚。本研究旨在探讨从心肌炎向心肌病转变过程中的免疫网络,并确定促成对心肌炎炎症反应的基因。

方法

用肌球蛋白重链-α肽处理小鼠以建立实验性自身免疫性心肌炎(EAM)模型。我们对从小鼠心脏提取的细胞在不同EAM阶段进行了单细胞RNA测序分析,这些阶段包括正常对照、急性炎症、亚急性炎症和肌病阶段。从接受心脏移植手术切除的患者心脏中收集人类心脏组织。

结果

我们在34665个细胞中鉴定出26种细胞亚型。巨噬细胞在所有疾病阶段构成主要免疫细胞群体(>60%),并鉴定出一个与炎症相关的巨噬细胞簇,其中炎症调节基因的表达上调。诱导EAM后中性粒细胞群体增加,然后中性粒细胞释放[具体物质未提及]参与EAM过程。在亚急性炎症阶段观察到T细胞的比例最高。炎症调节基因表达上调的辅助性T17细胞在急性炎症阶段构成主要检测到的T细胞群体,而调节性T细胞在亚急性炎症阶段是主要检测到的T细胞群体,释放[具体物质未提及]的γδT细胞在肌病阶段是主要观察到的T细胞群体。此外,[具体物质未提及]的表达水平与炎症程度相关。此外,PX-478可减轻不同EAM阶段的炎症反应。最后,[具体物质未提及]在急性自身免疫性心肌炎患者中的表达水平高于扩张型心肌病患者和健康对照受试者。

结论

我们在此展示了不同EAM阶段心脏免疫细胞的全面单细胞图谱。此外,我们通过调节免疫细胞活性,特别是巨噬细胞簇2和辅助性T17细胞的活性,阐明了[具体物质未提及]对炎症反应的作用。此外,一种[具体物质未提及]抑制剂减轻了EAM模型的炎症细胞浸润,可能成为临床上潜在的治疗靶点。

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