Host-Microbe Multi-omic Profiling Identifies a Unique Program of COVID-19 Inflammatory Dysregulation in Solid Organ

Charles Langelier1, Harry Pickering2, Joanna Schaenman2

  • 1University of California, San Francisco.

Research Square
|January 10, 2024
PubMed

Insights

Solid organ transplant recipients with COVID-19 show a distinct, heightened innate immune response, unlike controls. This immune state may explain their similar mortality rates despite increased susceptibility and longer infectious periods.

Area of Science:

  • Immunology
  • Virology
  • Transplant Science

Background:

  • Solid organ transplant (SOT) recipients face significant risks from COVID-19 due to poorly understood immune responses to SARS-CoV-2.
  • Understanding the immunologic and microbial features of COVID-19 in SOT recipients is crucial for managing this vulnerable population.

Approach:

  • A prospective multicenter cohort study involved 1164 hospitalized patients, with 86 SOT recipients age- and sex-matched to 172 non-SOT controls.
  • Multi-omic immunoprofiling, including PBMC and nasal transcriptional profiling, serum chemokine analysis, nasal microbiome assessment, antibody testing, and mass cytometry, was employed.

Key Points:

  • SOT recipients exhibited upregulated innate immune pathways (interferon, Toll-like receptor, complement) and elevated proinflammatory chemokines (CX3CL1, KITLG), with persistent CXCL11 elevation.
  • Nasal SARS-CoV-2 viral loads were higher with impaired clearance in SOT recipients, alongside lower anti-SARS-CoV-2 spike IgG levels upon hospitalization.
  • Blood immune cell analysis revealed decreased plasmablasts and transitional B cells, and increased senescent T cells in SOT recipients.

Conclusions:

  • SOT recipients display a distinct, augmented innate immune response in blood and airways during COVID-19, which is relatively stable across disease severity.
  • Altered viral dynamics, including higher viral loads and impaired clearance, were observed in SOT recipients.
  • These unique immune features and viral dynamics in SOT recipients suggest potential for novel prognostic biomarkers and therapeutic strategies.