Molecular signatures of inflammatory profile and B-cell function in SFTS patients
Updated March 17, 2022Severe fever with thrombocytopenia syndrome banyangvirus (SFTSV) induces immunopathogenic disease with high fatality rate. Despite serious health concern, the mechanisms underlying clinical manifestations are largely unknown. Here, we applied targeted proteomics and single-cell transcriptomics analyses to examine the differential immune landscape of SFTS patient blood. Serum immunoprofiling distinguished Low-risk and High-risk clusters of SFTS patients with differential inflammatory cytokine levels, which matched with disease severity. Single-cell transcriptomics analysis of SFTS patient blood at different infection state showed pronounced expansion of B cells with the alteration of B-cell subset populations, specifically in fatal patients. Furthermore, plasma cells were the primary reservoir of SFTSV replication with the downregulation of IFN pathway. This study identifies not only the molecular signatures of serum inflammatory profile and B cell lineage population, but also plasma cells as the viral reservoir in SFTSV-induced fatal patients, suggesting the alteration of B cell function linked to SFTS lethal infection. Overall design: PBMC from Control, Infection, Recovery and Fatal SFTS patients were collected in hospitals throughout South Korea. PBMC from each individual were processed separately through the ChromiumTM Single Cell Platform with the 10X Genomics ChromiumTM Single Cell 3’ Library and Gel Bead Kit v2 and the Chromium Single Cell A Chip Kit using the standard manufacturer’s protocol.
Molecular Signatures of Inflammatory Profile and B-Cell Function in Patients with Severe Fever with Thrombocytopenia Syndrome.
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Atlas
Analysis Portals
NoneProject Label
MolecularSignaturesInSftsPatientsSpecies
Homo sapiens
Sample Type
specimens
Anatomical Entity
blood
Organ Part
Unspecified
Selected Cell Types
peripheral blood mononuclear cell
Disease Status (Specimen)
Disease Status (Donor)
Development Stage
human adult stage
Library Construction Method
10x 3' v2
Nucleic Acid Source
single cell
Paired End
falseAnalysis Protocol
analysis_protocol_1, analysis_protocol_2File Format
Cell Count Estimate
25.8kDonor Count
8