Phenotypic and transcriptional changes in peripheral blood mononuclear cells during alphavirus encephalitis in mice
Benjamin H Nguyen1, Maggie L Bartlett1, Elizabeth M Troisi1
1W. Harry Feinstone Department of Molecular Microbiology and Immunology, Johns Hopkins Bloomberg School of Public Health, Baltimore, Maryland, USA.
Abstract:
Sindbis virus (SINV) infection of mice provides a model system for studying the pathogenesis of alphaviruses that infect the central nervous system (CNS) to cause encephalomyelitis. While studies of human viral infections typically focus on accessible cells from the blood, this compartment is rarely evaluated in mice. To bridge this gap, single-cell RNA sequencing (scRNAseq) was combined with flow cytometry to characterize the transcriptional and phenotypic changes of peripheral blood mononuclear cells (PBMCs) from SINV-infected mice. Twenty-one clusters were identified by scRNAseq at 7 days after infection, with a unique cluster and overall increase in naive B cells for infected mice. Uninfected mice had fewer immature T cells and CCR9+ CD4 T cells and a unique immature T cell cluster. Gene expression was most altered in the Ki67+ CD8 T cell cluster, with chemotaxis and proliferation-related genes upregulated. Global analysis indicated metabolic changes in myeloid cells and increased expression of Ccl5 by NK cells. Phenotypes of PBMCs and cells infiltrating the CNS were analyzed by flow cytometry over 14 days after infection. In PBMCs, CD8 and Th1 CD4 T cells increased in representation, while B cells showed a transient decrease at day 5 in total, Ly6a+, and naive cells, and an increase in activated B cells. In the brain, CD8 T cells increased for the first 7 days, while Th1 CD4 T cells and naive and Ly6a+ B cells continued to accumulate for 14 days. Therefore, dynamic immune cell changes can be identified in the blood as well as the CNS during viral encephalomyelitis.
Importance:
The outcome of viral encephalomyelitis is dependent on the host immune response, with clearance and resolution of infection mediated by the adaptive immune response. These processes are frequently studied in mouse models of infection, where infected tissues are examined to understand the mechanisms of clearance and recovery. However, studies of human infection typically focus on the analysis of cells from the blood, a compartment rarely examined in mice, rather than inaccessible tissue. To close this gap, we used single-cell RNA sequencing and flow cytometry to profile the transcriptomic and phenotypic changes of peripheral blood mononuclear cells (PBMCs) before and after central nervous system (CNS) infection in mice. Changes to T and B cell gene expression and cell composition occurred in PBMC and during entry into the CNS, with CCL5 being a differentially expressed chemokine. Therefore, dynamic changes occur in the blood as well as the CNS during the response of mice to virus infection, which will inform the analysis of human studies.
Insights
Sindbis virus infection alters immune cells in mouse blood and brain. This study reveals dynamic changes in T and B cells, offering insights into viral encephalomyelitis pathogenesis and human infection parallels.
Area of Science:
- Immunology
- Virology
- Neuroscience
Background:
- Sindbis virus (SINV) infection in mice models alphavirus-induced central nervous system (CNS) encephalomyelitis.
- Human viral infection studies often analyze blood cells, a compartment less frequently evaluated in mouse models.
- Bridging this gap is crucial for understanding viral pathogenesis and host responses.
Purpose of the Study:
- To characterize transcriptomic and phenotypic changes in peripheral blood mononuclear cells (PBMCs) of SINV-infected mice.
- To compare immune cell dynamics in the blood and CNS during viral encephalomyelitis.
- To inform the analysis of human viral infection studies by examining accessible peripheral blood.
Main Methods:
- Single-cell RNA sequencing (scRNAseq) to analyze gene expression in PBMCs.
- Flow cytometry to assess cell phenotypes and composition in blood and CNS.
- Longitudinal analysis of immune cell populations over 14 days post-infection.
Main Results:
- scRNAseq identified 21 clusters in PBMCs, noting an increase in naive B cells and altered gene expression in CD8 T cells (chemotaxis, proliferation).
- Flow cytometry revealed increased CD8 and Th1 CD4 T cells in PBMCs, with transient B cell changes and an increase in activated B cells.
- Both blood and CNS showed accumulating CD8 T cells, Th1 CD4 T cells, and naive/Ly6a+ B cells, with CCL5 identified as a differentially expressed chemokine.
Conclusions:
- Dynamic immune cell alterations occur in both peripheral blood and the CNS during SINV-induced encephalomyelitis.
- Peripheral blood analysis provides valuable insights into host responses during viral CNS infections.
- Findings enhance the relevance of mouse models for studying human viral encephalomyelitis.
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