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Updated: Jan 31, 2026

A Data-Driven Approach to Quantifying Immune States in Sepsis
Published on: February 7, 2025
Sepsis erodes CD8+ memory T cell-protective immunity against an EBV homolog in a 2B4-dependent manner
Jianfeng Xie1, Rebecca L Crepeau1, Ching-Wen Chen1
1Department of Surgery, Emory University School of Medicine, Atlanta, Georgia, USA.
Abstract:
Epstein-Barr virus (EBV) reactivation commonly occurs following sepsis, but the mechanisms underlying this are unknown. We utilized a murine EBV homolog (gHV) and the cecal ligation and puncture model of polymicrobial sepsis to study the impact of sepsis on gHV reactivation and CD8+ T cell immune surveillance following a septic insult. We observed a significant increase in the frequency of gHV-infected germinal center B cells on day 7 following sepsis. This increase in viral load was associated with a concomitant significant decrease in the frequencies of gHV-specific CD8+ T cells, as measured by class I MHC tetramers corresponding to the immunodominant viral epitopes. Phenotypic analysis revealed an increased frequency of gHV-specific CD8+ T cells expressing the 2B4 coinhibitory receptor in septic animals compared with sham controls. We sought to interrogate the role of 2B4 in modulating the gHV-specific CD8+ T cell response during sepsis. Results indicated that in the absence of 2B4, gHV-specific CD8+ T cell populations were maintained during sepsis, and gHV viral load was unchanged in 2B4-/- septic animals relative to 2B4-/- sham controls. WT CD8+ T cells upregulated PD-1 during sepsis, whereas 2B4-/- CD8+ T cells did not. Finally, adoptive transfer studies revealed a T cell-intrinsic effect of 2B4 coinhibition on virus-specific CD8+ T cells and gHV viral load during sepsis. These data demonstrate that sepsis-induced immune dysregulation erodes antigen-specific CD8+ responses against a latent viral infection and suggest that blockade of 2B4 may better maintain protective immunity against EBV in the context of sepsis.
Insights
Sepsis impairs CD8+ T cell responses against latent viruses like Epstein-Barr virus (EBV). Blocking the 2B4 receptor preserves these crucial immune cells and controls viral load during sepsis.
Area of Science:
- Immunology
- Virology
- Infectious Disease
Background:
- Epstein-Barr virus (EBV) reactivation is common after sepsis, but underlying mechanisms remain unclear.
- Sepsis causes immune dysregulation, potentially affecting T cell surveillance of latent viruses.
Purpose of the Study:
- To investigate how sepsis impacts EBV reactivation and CD8+ T cell immune surveillance.
- To determine the role of the 2B4 coinhibitory receptor in sepsis-induced immune dysfunction.
Main Methods:
- Utilized a murine EBV homolog (gHV) and polymicrobial sepsis model (cecal ligation and puncture).
- Assessed gHV viral load, CD8+ T cell frequencies, and expression of the 2B4 receptor.
- Employed 2B4 knockout mice and adoptive transfer studies.
Main Results:
- Sepsis increased gHV viral load and decreased gHV-specific CD8+ T cells.
- Septic mice showed increased 2B4 expression on CD8+ T cells, correlating with viral load.
- Absence of 2B4 maintained CD8+ T cell populations and controlled viral load during sepsis.
Conclusions:
- Sepsis-induced immune dysregulation impairs CD8+ T cell responses against latent viruses.
- The 2B4 coinhibitory pathway plays a critical role in this impairment.
- Blocking 2B4 may preserve protective immunity against EBV during sepsis.
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