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Isolation and Quantification of Epstein-Barr Virus from the P3HR1 Cell Line
Published on: September 28, 2022
Epstein-Barr virus-immortalized B lymphocytes exacerbate experimental autoimmune encephalomyelitis in xenograft mice
Pascal Polepole1, Alison Bartenslager2, Yutong Liu3
1Nebraska Center for Virology, University of Nebraska, Lincoln, Nebraska.
Abstract:
Multiple sclerosis (MS) is the most common autoimmune disorder affecting the central nervous system. Epstein-Barr virus (EBV) is a causative agent for infectious mononucleosis (IM) that is associated with MS pathogenesis. However, the exact mechanism by which EBV, specifically in IM, increases the risk for MS remains unknown. EBV immortalizes primary B lymphocytes in vitro and causes excessive B lymphocyte proliferation in IM in vivo. In asymptomatic carriers, EBV-infected B lymphocytes still proliferate to certain degrees, the process of which is tightly controlled by the host immune systems. Experimental autoimmune encephalomyelitis (EAE) mimics key features of MS in humans and is a well-established rodent model for human MS. We have found that xenografts of EBV-immortalized B lymphocytes, which partially resemble the hyperproliferation of EBV-infected cells in IM, exacerbate autoimmune responses in myelin oligodendrocyte glycoprotein-induced EAE in C57BL/6 mice. After remission, an additional challenge with EBV-immortalized cells induces a relapse in EAE. Moreover, xenografts with EBV-immortalized cells tighten the integrity of the blood-brain barrier (BBB) in the thalamus and hypothalamus areas of the mouse brains. Genomic sequences of prokaryotic 16S ribosomal RNA presented in the feces reveal that EBV-immortalized cells significantly change the diversities of microbial populations. Our data collectively suggest that EBV-mediated proliferation of B lymphocytes may be a risk factor for the exacerbation of MS, which are associated with gut microbiome changes and BBB modulations. Furthermore, multiple xenografts of EBV-immortalized cells into C57BL/6 mice could serve as a useful model for human relapsing-remitting MS with predictable severity and timing.
Insights
Epstein-Barr virus (EBV) infection, causing infectious mononucleosis (IM), may increase multiple sclerosis (MS) risk by promoting B lymphocyte proliferation. This exacerbates autoimmune responses and alters gut microbiome and blood-brain barrier integrity in a mouse model.
Area of Science:
- Neuroimmunology
- Virology
- Microbiome Research
Background:
- Multiple sclerosis (MS) is a prevalent autoimmune CNS disorder.
- Epstein-Barr virus (EBV), causing infectious mononucleosis (IM), is linked to MS pathogenesis.
- The precise mechanism of EBV-induced MS risk, particularly during IM, is unclear.
Purpose of the Study:
- To investigate the role of EBV-driven B lymphocyte proliferation in MS pathogenesis.
- To explore the impact of EBV-immortalized B lymphocytes on experimental autoimmune encephalomyelitis (EAE).
- To assess associated changes in the gut microbiome and blood-brain barrier (BBB).
Main Methods:
- Utilized xenografts of EBV-immortalized B lymphocytes in a mouse model of MS (EAE).
- Induced EAE using myelin oligodendrocyte glycoprotein in C57BL/6 mice.
- Analyzed changes in autoimmune responses, BBB integrity, and fecal microbial diversity.
Main Results:
- EBV-immortalized B lymphocytes exacerbated EAE and induced relapses after remission.
- These cells tightened the blood-brain barrier in specific brain regions.
- Significant alterations in gut microbial diversity were observed, linked to EBV-immortalized cells.
Conclusions:
- EBV-mediated B lymphocyte proliferation is a potential risk factor for MS exacerbation.
- Gut microbiome shifts and BBB modulation are associated with EBV's role in MS.
- The EBV-immortalized cell xenograft model offers a predictive platform for relapsing-remitting MS research.
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