Systems-level profiling of early peripheral host-response landscape variations across COVID-19 severity states in an Indian cohort

IF 5 3区 医学 Q1 GENETICS & HEREDITY
Ushashi Banerjee, Sneha Chunchanur, Ambica R, Kithiganahalli Narayanaswamy Balaji, Amit Singh, Dipshikha Chakravortty, Nagasuma Chandra
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Abstract

Host immune response to COVID-19 plays a significant role in regulating disease severity. Although big data analysis has provided significant insights into the host biology of COVID-19 across the world, very few such studies have been performed in the Indian population. This study utilizes a transcriptome-integrated network analysis approach to compare the immune responses between asymptomatic or mild and moderate-severe COVID-19 patients in an Indian cohort. An immune suppression phenotype is observed in the early stages of moderate-severe COVID-19 manifestation. A number of pathways are identified that play crucial roles in the host control of the disease such as the type I interferon response and classical complement pathway which show different activity levels across the severity spectrum. This study also identifies two transcription factors, IRF7 and ESR1, to be important in regulating the severity of COVID-19. Overall this study provides a deep understanding of the peripheral immune landscape in the COVID-19 severity spectrum in the Indian genetic background and opens up future research avenues to compare immune responses across global populations.

Abstract Image

Abstract Image

在印度队列中对不同 COVID-19 严重程度的早期外周宿主反应景观变化进行系统级分析
宿主对 COVID-19 的免疫反应在调节疾病严重程度方面发挥着重要作用。尽管大数据分析为了解世界各地 COVID-19 的宿主生物学特性提供了重要线索,但在印度人群中开展的此类研究却寥寥无几。本研究利用转录组整合网络分析方法,比较了印度队列中无症状或轻度和中度重度 COVID-19 患者的免疫反应。在中度重度 COVID-19 表现的早期阶段,可以观察到免疫抑制表型。研究发现了一些在宿主控制疾病过程中发挥关键作用的通路,如 I 型干扰素反应和经典补体通路,它们在不同的严重程度下表现出不同的活性水平。本研究还发现 IRF7 和 ESR1 这两个转录因子在调控 COVID-19 的严重程度方面具有重要作用。总之,这项研究让人们深入了解了印度遗传背景下 COVID-19 严重性谱系中的外周免疫景观,并为比较全球人群的免疫反应开辟了未来的研究途径。
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来源期刊
Genes and immunity
Genes and immunity 医学-免疫学
CiteScore
8.90
自引率
4.00%
发文量
28
审稿时长
6-12 weeks
期刊介绍: Genes & Immunity emphasizes studies investigating how genetic, genomic and functional variations affect immune cells and the immune system, and associated processes in the regulation of health and disease. It further highlights articles on the transcriptional and posttranslational control of gene products involved in signaling pathways regulating immune cells, and protective and destructive immune responses.
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