Identification of a protein expression signature distinguishing early from organising diffuse alveolar damage in COVID-19 patients

Author:

Ashwin Helen,Milross Luke,Wilson Julie,Majo Joaquim,Hang Lee Jimmy Tsz,Calder Grant,Hunter Bethany,James Sally,Lagos Dimitris,Signoret Nathalie,Filby Andrew,Bayraktar Omer Ali,Fisher Andrew J,Kaye Paul MORCID

Abstract

Diffuse alveolar damage (DAD) is the histological expression of acute respiratory distress syndrome and characterises lung pathology due to infection with SARS-CoV-2, and other respiratory pathogens of clinical significance. DAD reflects a time-dependent immunopathological process, progressing from an early/exudative stage through to an organising/fibrotic stage, yet within an individual these different stages of DAD may coexist. Understanding the progression of DAD is central to the development of new therapeutics to limit progressive lung damage. Here, we applied highly multiplexed spatial protein profiling to autopsy lung tissues derived from 27 patients who died from COVID-19 and identified a protein signature (ARG1, CD127, GZMB, IDO1, Ki67, phospho-PRAS40 (T246) and VISTA) that distinguishes early DAD from late DAD with good predictive accuracy. These proteins warrant further investigation as potential regulators of DAD progression.

Funder

National Institute for Health Research

UK Research and Innovation

Wellcome Trust

Sanger Institute Core Funding

Publisher

BMJ

Subject

General Medicine,Pathology and Forensic Medicine

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