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Spatially resolved single-cell atlas unveils a distinct cellular signature of fatal lung COVID-19 in a Malawian population

  • James Nyirenda,
  • Olympia M. Hardy,
  • João Da Silva Filho,
  • Vanessa Herder,
  • Charalampos Attipa,
  • Charles Ndovi,
  • Memory Siwombo,
  • Takondwa Rex Namalima,
  • Leticia Suwedi,
  • Georgios Ilia,
  • Watipenge Nyasulu,
  • Thokozile Ngulube,
  • Deborah Nyirenda,
  • Leonard Mvaya,
  • Joseph Phiri,
  • Dennis Chasweka,
  • Chisomo Eneya,
  • Chikondi Makwinja,
  • Chisomo Phiri,
  • Frank Ziwoya,
  • Abel Tembo,
  • Kingsley Makwangwala,
  • Stanley Khoswe,
  • Peter Banda,
  • Ben Morton,
  • Orla Hilton,
  • Sarah Lawrence,
  • Monique Freire dos Reis,
  • Gisely Cardoso Melo,
  • Marcus Vinicius Guimaraes de Lacerda,
  • Fabio Trindade Maranhão Costa,
  • Wuelton Marcelo Monteiro,
  • Luiz Carlos de Lima Ferreira,
  • Carla Johnson,
  • Dagmara McGuinness,
  • Kondwani Jambo,
  • Michael Haley,
  • Benjamin Kumwenda,
  • Massimo Palmarini,
  • Donna M. Denno,
  • Wieger Voskuijl,
  • Steve Bvuobvuo Kamiza,
  • Kayla G. Barnes,
  • Kevin Couper,
  • Matthias Marti,
  • Thomas D. Otto,
  • Christopher A. Moxon

摘要

Postmortem single-cell studies have transformed understanding of lower respiratory tract diseases (LRTDs), including coronavirus disease 2019 (COVID-19), but there are minimal data from African settings where HIV, malaria and other environmental exposures may affect disease pathobiology and treatment targets. In this study, we used histology and high-dimensional imaging to characterize fatal lung disease in Malawian adults with (n = 9) and without (n = 7) COVID-19, and we generated single-cell transcriptomics data from lung, blood and nasal cells. Data integration with other cohorts showed a conserved COVID-19 histopathological signature, driven by contrasting immune and inflammatory mechanisms: in US, European and Asian cohorts, by type I/III interferon (IFN) responses, particularly in blood-derived monocytes, and in the Malawian cohort, by response to IFN-γ in lung-resident macrophages. HIV status had minimal impact on histology or immunopathology. Our study provides a data resource and highlights the importance of studying the cellular mechanisms of disease in underrepresented populations, indicating shared and distinct targets for treatment.