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Separation of Immune Cell Subpopulations in Peripheral Blood Samples from Children with Infectious Mononucleosis
Published on: September 7, 2022
Heightened Epstein-Barr virus immunity and potential cross-reactivities in multiple sclerosis
Olivia G Thomas1, Tracey A Haigh2, Deborah Croom-Carter1
1Institute of Cancer and Genomic Sciences, College of Medical and Dental Sciences, University of Birmingham, Edgbaston, United Kingdom.
Background:
Epstein-Barr virus (EBV) is a likely prerequisite for multiple sclerosis (MS) but the underlying mechanisms are unknown. We investigated antibody and T cell responses to EBV in persons with MS (pwMS), healthy EBV-seropositive controls (HC) and post-infectious mononucleosis (POST-IM) individuals up to 6 months after disease resolution. The ability of EBV-specific T cell responses to target antigens from the central nervous system (CNS) was also investigated.
Methods:
Untreated persons with relapsing-remitting MS, POST-IM individuals and HC were, as far as possible, matched for gender, age and HLA-DRB1*15:01. EBV load was determined by qPCR, and IgG responses to key EBV antigens were determined by ELISA, immunofluorescence and Western blot, and tetanus toxoid antibody responses by multiplex bead array. EBV-specific T cell responses were determined ex vivo by intracellular cytokine staining (ICS) and cross-reactivity of in vitro-expanded responses probed against 9 novel Modified Vaccinia Ankara (MVA) viruses expressing candidate CNS autoantigens.
Results:
EBV load in peripheral blood mononuclear cells (PBMC) was unchanged in pwMS compared to HC. Serologically, while tetanus toxoid responses were unchanged between groups, IgG responses to EBNA1 and virus capsid antigen (VCA) were significantly elevated (EBNA1 p = 0.0079, VCA p = 0.0298) but, importantly, IgG responses to EBNA2 and the EBNA3 family antigens were also more frequently detected in pwMS (EBNA2 p = 0.042 and EBNA3 p = 0.005). In ex vivo assays, T cell responses to autologous EBV-transformed B cells and to EBNA1 were largely unchanged numerically, but significantly increased IL-2 production was observed in response to certain stimuli in pwMS. EBV-specific polyclonal T cell lines from both MS and HC showed high levels of autoantigen recognition by ICS, and several neuronal proteins emerged as common targets including MOG, MBP, PLP and MOBP.
Discussion:
Elevated serum EBV-specific antibody responses in the MS group were found to extend beyond EBNA1, suggesting a larger dysregulation of EBV-specific antibody responses than previously recognised. Differences in T cell responses to EBV were more difficult to discern, however stimulating EBV-expanded polyclonal T cell lines with 9 candidate CNS autoantigens revealed a high level of autoreactivity and indicate a far-reaching ability of the virus-induced T cell compartment to damage the CNS.
Insights
Epstein-Barr virus (EBV) antibody responses are elevated in multiple sclerosis (MS) patients, extending beyond EBNA1. EBV-specific T cells show autoreactivity, suggesting a potential mechanism for CNS damage in MS.
Area of Science:
- Neuroimmunology
- Virology
- Immunology
Background:
- Epstein-Barr virus (EBV) is linked to multiple sclerosis (MS), but mechanisms remain unclear.
- Investigated EBV antibody and T cell responses in MS patients, controls, and post-mononucleosis individuals.
- Examined EBV-specific T cell cross-reactivity with central nervous system (CNS) antigens.
Purpose of the Study:
- To investigate the role of Epstein-Barr virus (EBV) in multiple sclerosis (MS) pathogenesis.
- To compare EBV-specific antibody and T cell responses between individuals with MS and healthy controls.
- To assess the potential for EBV-induced T cells to target CNS autoantigens.
Main Methods:
- Matched cohorts of MS patients, post-infectious mononucleosis (POST-IM) individuals, and healthy controls (HC).
- Quantified EBV load (qPCR), IgG antibody responses to EBV antigens (ELISA, immunofluorescence, Western blot), and T cell responses (intracellular cytokine staining).
- Assessed T cell cross-reactivity against CNS autoantigens using modified vaccinia Ankara (MVA) viruses.
Main Results:
- No difference in EBV load between MS patients and HC.
- Elevated IgG responses to EBNA1, VCA, EBNA2, and EBNA3 antigens in MS patients.
- Increased IL-2 production in response to EBV stimuli in MS patients; high autoreactivity of EBV-specific T cells against CNS antigens (MOG, MBP, PLP, MOBP) in both MS and HC groups.
Conclusions:
- MS patients exhibit broader dysregulation of EBV-specific antibody responses than previously recognized.
- While T cell differences were subtle, EBV-expanded T cells demonstrated significant autoreactivity against CNS targets.
- These findings suggest a potential mechanism for CNS damage in MS mediated by virus-induced T cell cross-reactivity.
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