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Diffuse alveolar damage patterns reflect the immunological and molecular heterogeneity in fatal COVID-19

Authors :
Jonas S. Erjefält
Natália de Souza Xavier Costa
Jimmie Jönsson
Olga Cozzolino
Katia Cristina Dantas
Carl-Magnus Clausson
Premkumar Siddhuraj
Caroline Lindö
Manar Alyamani
Suzete Cleusa Ferreira Spina Lombardi
Alfredo Mendroni Júnior
Leila Antonangelo
Caroline Silvério Faria
Amaro Nunes Duarte-Neto
Renata Aparecida de Almeida Monteiro
João Renato Rebello Pinho
Michele Soares Gomes-Gouvêa
Roberta Verciano Pereira
Jhonatas Sirino Monteiro
João Carlos Setubal
Ellen Pierre de Oliveira
Jair Theodoro Filho
Caroline Sanden
Jamie M. Orengo
Matthew A. Sleeman
Luiz Fernando Ferraz da Silva
Paulo Hilário Nascimento Saldiva
Marisa Dolhnikoff
Thais Mauad
Source :
EBioMedicine, Vol 83, Iss , Pp 104229- (2022)
Publication Year :
2022
Publisher :
Elsevier, 2022.

Abstract

Summary: Background: Severe COVID-19 lung disease exhibits a high degree of spatial and temporal heterogeneity, with different histological features coexisting within a single individual. It is important to capture the disease complexity to support patient management and treatment strategies. We provide spatially decoded analyses on the immunopathology of diffuse alveolar damage (DAD) patterns and factors that modulate immune and structural changes in fatal COVID-19. Methods: We spatially quantified the immune and structural cells in exudative, intermediate, and advanced DAD through multiplex immunohistochemistry in autopsy lung tissue of 18 COVID-19 patients. Cytokine profiling, viral, bacteria, and fungi detection, and transcriptome analyses were performed. Findings: Spatial DAD progression was associated with expansion of immune cells, macrophages, CD8+ T cells, fibroblasts, and (lymph)angiogenesis. Viral load correlated positively with exudative DAD and negatively with disease/hospital length. In all cases, enteric bacteria were isolated, and Candida parapsilosis in eight cases. Cytokines correlated mainly with macrophages and CD8+T cells. Pro-coagulation and acute repair were enriched pathways in exudative DAD whereas intermediate/advanced DAD had a molecular profile of elevated humoral and innate immune responses and extracellular matrix production. Interpretation: Unraveling the spatial and molecular immunopathology of COVID-19 cases exposes the responses to SARS-CoV-2-induced exudative DAD and subsequent immune-modulatory and remodeling changes in proliferative/advanced DAD that occur side-by-side together with secondary infections in the lungs. These complex features have important implications for disease management and the development of novel treatments. Funding: CNPq, Bill and Melinda Gates Foundation, HC-Convida, FAPESP, Regeneron Pharmaceuticals, and the Swedish Heart & Lung Foundation.

Details

Language :
English
ISSN :
23523964
Volume :
83
Issue :
104229-
Database :
Directory of Open Access Journals
Journal :
EBioMedicine
Publication Type :
Academic Journal
Accession number :
edsdoj.19c5eb08a3f74639b055f0a03c0a2cf5
Document Type :
article
Full Text :
https://doi.org/10.1016/j.ebiom.2022.104229