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Spatial transcriptomic characterization of COVID-19 pneumonitis identifies immune pathways related to tissue injury
Amy R Cross; Carlos de Andrea; Maria Villalba-Esparza; Manuel Landecho Acha; Lucia Cerundolo; Praveen Weeratunga; Rachel Etherington; Laura Denney; Graham Ogg; Ling-Pei Ho; Ian Roberts; Joanna Hester; Paul Klenerman; Ignacio Melero; Stephen Sansom; Fadi Issa.
Affiliation
  • Amy R Cross; University of Oxford
  • Carlos de Andrea; Universidad de Navarra
  • Maria Villalba-Esparza; Department of Pathology, Clinica de la Universidad de Navarra, Pamplona, Spain
  • Manuel Landecho Acha; Clinica Universidad de Navarra
  • Lucia Cerundolo; University of Oxford
  • Praveen Weeratunga; Medical Research Council Human Immunology Unit, Radcliffe Department of Medicine, Medical Research Council Weatherall Institute of Molecular Medicine, Universit
  • Rachel Etherington; University of Oxford
  • Laura Denney; University of Oxford
  • Graham Ogg; Medical Research Council Human Immunology Unit, Radcliffe Department of Medicine, Medical Research Council Weatherall Institute of Molecular Medicine, Universit
  • Ling-Pei Ho; University of Oxford
  • Ian Roberts; Oxford University Hospitals NHS Foundation Trust
  • Joanna Hester; University of Oxford
  • Paul Klenerman; University of Oxford
  • Ignacio Melero; Universidad de Navarra
  • Stephen Sansom; University of Oxford
  • Fadi Issa; University of Oxford
Preprint in En | PREPRINT-BIORXIV | ID: ppbiorxiv-449178
ABSTRACT
Severe lung damage in COVID-19 involves complex interactions between diverse populations of immune and stromal cells. In this study, we used a spatial transcriptomics approach to delineate the cells, pathways and genes present across the spectrum of histopathological damage in COVID-19 lung tissue. We applied correlation network-based approaches to deconvolve gene expression data from areas of interest within well preserved post-mortem lung samples from three patients. Despite substantial inter-patient heterogeneity we discovered evidence for a common immune cell signaling circuit in areas of severe tissue that involves crosstalk between cytotoxic lymphocytes and pro-inflammatory macrophages. Expression of IFNG by cytotoxic lymphocytes was associated with induction of chemokines including CXCL9, CXCL10 and CXCL11 which are known to promote the recruitment of CXCR3+ immune cells. The tumour necrosis factor (TNF) superfamily members BAFF (TNFSF13B) and TRAIL (TNFSF10) were found to be consistently upregulated in the areas with severe tissue damage. We used published spatial and single cell SARS-CoV-2 datasets to confirm our findings in the lung tissue from additional cohorts of COVID-19 patients. The resulting model of severe COVID-19 immune-mediated tissue pathology may inform future therapeutic strategies. One Sentence SummarySpatial analysis identifies IFN{gamma} response signatures as focal to severe alveolar damage in COVID-19 pneumonitis.
License
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Full text: 1 Collection: 09-preprints Database: PREPRINT-BIORXIV Type of study: Cohort_studies / Observational_studies / Prognostic_studies Language: En Year: 2021 Document type: Preprint
Full text: 1 Collection: 09-preprints Database: PREPRINT-BIORXIV Type of study: Cohort_studies / Observational_studies / Prognostic_studies Language: En Year: 2021 Document type: Preprint