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新冠病毒肺炎合并心肌损伤患者中白细胞介素6高表达及免疫细胞减少。

High expression of IL6 and decrease in immune cells in COVID-19 patients combined with myocardial injury.

作者信息

Chen Tingting, Chen Haixin, Chen Ping, Zhu Linchao, Mao Wei, Yao Yimin

机构信息

Medical Laboratory, The First Affiliated Hospital of Zhejiang Chinese Medical University (Zhejiang Provincial Hospital of Chinese Medicine), Hangzhou, China.

The First Clinical Medical College, Zhejiang Chinese Medical University, Hangzhou, China.

出版信息

Front Immunol. 2023 Jul 26;14:1190644. doi: 10.3389/fimmu.2023.1190644. eCollection 2023.

Abstract

PURPOSE

Myocardial injury, as a serious complication of coronavirus disease-2019 (COVID-19), increases the occurrence of adverse outcomes. Identification of key regulatory molecules of myocardial injury may help formulate corresponding treatment strategies and improve the prognosis of COVID-19 patients.

METHODS

Gene Set Enrichment Analysis (GSEA) was conducted to identify co-regulatory pathways. Differentially expressed genes (DEGs) in GSE150392 and GSE169241 were screened and an intersection analysis with key genes of the co-regulatory pathway was conducted. A protein-protein interaction (PPI) network was constructed to screen for key regulatory genes. Preliminarily screened genes were verified using other datasets to identify genes with consistent expression. Based on the hierarchical cluster, we divided the patients from GSE177477 into high- and low-risk groups and compared the proportion of immune cells. A total of 267 COVID-19 patients from the Zhejiang Provincial Hospital of Chinese Medicine from December 26, 2022, to January 11, 2023, were enrolled to verify the bioinformatics results. Univariate and multivariate analyses were performed to analyze the risk factors for myocardial injury. According to high-sensitivity troponin (hsTnI) levels, patients with COVID-19 were divided into high- and low-sensitivity groups, and interleukin 6 (IL6) expression and lymphocyte subsets were compared. Patients were also divided into high and low groups according to the IL6 expression, and hsTnI levels were compared.

RESULTS

Interleukin signaling pathway and GPCR ligand binding were shown to be co-regulatory pathways in myocardial injury associated with COVID-19. According to the hierarchical cluster analysis of seven genes (IL6, NFKBIA, CSF1, CXCL1, IL1R1, SOCS3, and CASP1), patients with myocardial injury could be distinguished from those without myocardial injury. Age, IL6 levels, and hospital stay may be factors influencing myocardial injury caused by COVID-19. Compared with COVID-19 patients without myocardial injury, the levels of IL6 in patients with myocardial injury increased, while the number of CD4 T cells, CD8 T cells, B cells, and NK cells decreased (<0.05). The hsTnI levels in COVID-19 patients with high IL6 levels were higher than those in patients with low IL6 (<0.05).

CONCLUSIONS

The COVID-19 patients with myocardial injury had elevated IL6 expression and decreased lymphocyte counts. IL6 may participate in myocardial injury through the interleukin signaling pathway.

摘要

目的

心肌损伤作为2019冠状病毒病(COVID-19)的严重并发症,会增加不良结局的发生。识别心肌损伤的关键调控分子可能有助于制定相应的治疗策略并改善COVID-19患者的预后。

方法

进行基因集富集分析(GSEA)以识别共同调控通路。筛选GSE150392和GSE169241中的差异表达基因(DEG),并与共同调控通路的关键基因进行交集分析。构建蛋白质-蛋白质相互作用(PPI)网络以筛选关键调控基因。使用其他数据集对初步筛选的基因进行验证,以识别表达一致的基因。基于层次聚类,我们将GSE177477中的患者分为高风险和低风险组,并比较免疫细胞的比例。纳入2022年12月26日至2023年1月11日来自浙江省中医院的267例COVID-19患者以验证生物信息学结果。进行单因素和多因素分析以分析心肌损伤的危险因素。根据高敏肌钙蛋白(hsTnI)水平,将COVID-19患者分为高敏组和低敏组,并比较白细胞介素6(IL6)表达和淋巴细胞亚群。患者也根据IL6表达分为高组和低组,并比较hsTnI水平。

结果

白细胞介素信号通路和GPCR配体结合被证明是与COVID-19相关的心肌损伤中的共同调控通路。根据七个基因(IL6、NFKBIA、CSF1、CXCL1、IL1R1、SOCS3和CASP1)的层次聚类分析,可以区分有心肌损伤的患者和无心肌损伤的患者。年龄、IL6水平和住院时间可能是影响COVID-19所致心肌损伤的因素。与无心肌损伤的COVID-19患者相比,有心肌损伤的患者IL6水平升高,而CD4 T细胞、CD8 T细胞、B细胞和NK细胞数量减少(<0.05)。IL6水平高的COVID-19患者的hsTnI水平高于IL6水平低的患者(<0.05)。

结论

有心肌损伤的COVID-19患者IL6表达升高,淋巴细胞计数减少。IL6可能通过白细胞介素信号通路参与心肌损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fc1/10410153/4b47811c495b/fimmu-14-1190644-g001.jpg

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