TY - JOUR
T1 - A robust platform for integrative spatial multi-omics analysis to map immune responses to SARS-CoV-2 infection in lung tissues
AU - Tan, Xiao
AU - Grice, Laura F.
AU - Tran, Minh
AU - Mulay, Onkar
AU - Monkman, James
AU - Blick, Tony
AU - Vo, Tuan
AU - Almeida, Ana Clara
AU - da Silva Motta, Jarbas
AU - de Moura, Karen Fernandes
AU - Machado-Souza, Cleber
AU - Souza-Fonseca-Guimaraes, Paulo
AU - Baena, Cristina Pellegrino
AU - de Noronha, Lucia
AU - Guimaraes, Fernanda Simoes Fortes
AU - Luu, Hung N.
AU - Drennon, Tingsheng
AU - Williams, Stephen
AU - Stern, Jacob
AU - Uytingco, Cedric
AU - Pan, Liuliu
AU - Nam, Andy
AU - Cooper, Caroline
AU - Short, Kirsty
AU - Belz, Gabrielle T.
AU - Souza-Fonseca-Guimaraes, Fernando
AU - Kulasinghe, Arutha
AU - Nguyen, Quan
N1 - Publisher Copyright:
© 2023 The Authors. Immunology published by John Wiley & Sons Ltd.
PY - 2023/11
Y1 - 2023/11
N2 - The SARS-CoV-2 (COVID-19) virus has caused a devastating global pandemic of respiratory illness. To understand viral pathogenesis, methods are available for studying dissociated cells in blood, nasal samples, bronchoalveolar lavage fluid and similar, but a robust platform for deep tissue characterization of molecular and cellular responses to virus infection in the lungs is still lacking. We developed an innovative spatial multi-omics platform to investigate COVID-19-infected lung tissues. Five tissue-profiling technologies were combined by a novel computational mapping methodology to comprehensively characterize and compare the transcriptome and targeted proteome of virus infected and uninfected tissues. By integrating spatial transcriptomics data (Visium, GeoMx and RNAScope) and proteomics data (CODEX and PhenoImager HT) at different cellular resolutions across lung tissues, we found strong evidence for macrophage infiltration and defined the broader microenvironment surrounding these cells. By comparing infected and uninfected samples, we found an increase in cytokine signalling and interferon responses at different sites in the lung and showed spatial heterogeneity in the expression level of these pathways. These data demonstrate that integrative spatial multi-omics platforms can be broadly applied to gain a deeper understanding of viral effects on cellular environments at the site of infection and to increase our understanding of the impact of SARS-CoV-2 on the lungs.
AB - The SARS-CoV-2 (COVID-19) virus has caused a devastating global pandemic of respiratory illness. To understand viral pathogenesis, methods are available for studying dissociated cells in blood, nasal samples, bronchoalveolar lavage fluid and similar, but a robust platform for deep tissue characterization of molecular and cellular responses to virus infection in the lungs is still lacking. We developed an innovative spatial multi-omics platform to investigate COVID-19-infected lung tissues. Five tissue-profiling technologies were combined by a novel computational mapping methodology to comprehensively characterize and compare the transcriptome and targeted proteome of virus infected and uninfected tissues. By integrating spatial transcriptomics data (Visium, GeoMx and RNAScope) and proteomics data (CODEX and PhenoImager HT) at different cellular resolutions across lung tissues, we found strong evidence for macrophage infiltration and defined the broader microenvironment surrounding these cells. By comparing infected and uninfected samples, we found an increase in cytokine signalling and interferon responses at different sites in the lung and showed spatial heterogeneity in the expression level of these pathways. These data demonstrate that integrative spatial multi-omics platforms can be broadly applied to gain a deeper understanding of viral effects on cellular environments at the site of infection and to increase our understanding of the impact of SARS-CoV-2 on the lungs.
KW - COVID-19 infection
KW - spatial integration
KW - spatial proteomics
KW - spatial transcriptomics
UR - https://www.scopus.com/pages/publications/85168703852
UR - https://www.scopus.com/inward/citedby.url?scp=85168703852&partnerID=8YFLogxK
U2 - 10.1111/imm.13679
DO - 10.1111/imm.13679
M3 - Article
C2 - 37605469
AN - SCOPUS:85168703852
SN - 0019-2805
VL - 170
SP - 401
EP - 418
JO - Immunology
JF - Immunology
IS - 3
ER -