Two distinct immunopathological profiles in autopsy lungs of COVID-19
Два различных иммунопатологических профиля в аутопсийных легких пациентов с COVID-19
2020-10-08
SCID: 54.1/j74kyjv4
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COVID-19SARS-CoV-2activated CD8+ T cellsimmunopathological profilesinterferon-stimulated genes
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Abstract (AI)
Abstract Coronavirus Disease 19 (COVID-19) is a respiratory disease caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), which has grown to a worldwide pandemic with substantial mortality. Immune mediated damage has been proposed as a pathogenic factor, but immune responses in lungs of COVID-19 patients remain poorly characterized. Here we show transcriptomic, histologic and cellular profiles of post mortem COVID-19 ( n = 34 tissues from 16 patients) and normal lung tissues ( n = 9 tissues from 6 patients). Two distinct immunopathological reaction patterns of lethal COVID-19 are identified. One pattern shows high local expression of interferon stimulated genes (ISG high ) and cytokines, high viral loads and limited pulmonary damage, the other pattern shows severely damaged lungs, low ISGs (ISG low ), low viral loads and abundant infiltrating activated CD8 + T cells and macrophages. ISG high patients die significantly earlier after hospitalization than ISG low patients. Our study may point to distinct stages of progression of COVID-19 lung disease and highlights the need for peripheral blood biomarkers that inform about patient lung status and guide treatment.
Key Findings
1
Autopsy lung analyses identified two distinct immunopathological profiles among 16 fatal COVID-19 patients, based on transcriptomic, histologic, and cellular features.
2
Patients with the ISG-high profile died significantly earlier after hospitalization than patients with the ISG-low profile.
3
The ISG-high profile exhibited strong interferon-stimulated gene and cytokine expression, high viral loads, and relatively limited pulmonary damage.
4
The ISG-low profile was characterized by severe lung injury, low ISG expression, low viral loads, and abundant activated CD8+ T-cell and macrophage infiltration.
5
The distinct profiles may represent different stages of COVID-19 lung disease and support developing peripheral blood biomarkers to assess lung status and guide treatment.
Research Object
Post-mortem lungs from patients with lethal COVID-19
Research Subject
Two distinct immunopathological reaction patterns, characterized by local interferon-stimulated gene and cytokine expression, viral load, pulmonary damage, and immune-cell infiltration
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2020-10-08
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