Effective CD8 T cell responses are vital for the control of chronic viral infections. Many factors of the host immune response contribute to the maintenance of effector CD8 T cell responses versus CD8 T cell exhaustion during chronic infection. Specific MHC alleles and the degree of MHC heterogeneity are associated with enhanced CD8 T cell function and viral control during human chronic infection. However, it is currently unclear to what extent host genetics influences the establishment of chronic viral infection. In order to examine the impact of MHC heterogeneity versus non-MHC host genetics on the development of chronic viral infection, an F1 cross of B10.D2 x B6 (D2B6F1) and BALB.B x BALB/c (BCF1) mice were infected with the clone-13 (Cl-13) strain of lymphocytic choriomeningitis virus (LCMV). Following chronic Cl-13 infection both H-2bxd D2B6F1 and BCF1 mice demonstrated increased viral control compared to homozygous mice. Strikingly, H-2bxd D2B6F1 mice on a C57BL genetic background exhibited mortality following Cl-13 infection. CD8 T cell depletion prevented mortality in Cl-13-infected D2B6F1 mice indicating that mortality was CD8 T-cell-dependent. D2B6F1 mice maintained more CD8 T cell effector cytokine production and exhibited reduced expression of the T cell exhaustion marker PD-1. In addition, D2B6F1 mice also induced a larger Th1 response than BCF1 mice and Cl-13-induced mortality in D2B6F1 mice was also dependent on CD4 T-cell-mediated IFN-γ production. Thus, following a chronic viral infection, increased functionality of the CD8 T cell response allowed for more rapid viral clearance at the cost of enhanced immunopathology dependent on both MHC diversity and the genetic background of the host.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5531689PMC
http://dx.doi.org/10.1371/journal.ppat.1006498DOI Listing

Publication Analysis

Top Keywords

cd8 cell
32
chronic viral
20
d2b6f1 mice
20
viral infection
16
host genetics
12
bcf1 mice
12
cd8
9
cell
9
mice
9
cell function
8

Similar Publications

Tissue-resident memory CD8 T cell diversity is spatiotemporally imprinted.

Nature

January 2025

School of Biological Sciences, Department of Molecular Biology, University of California, San Diego, La Jolla, CA, USA.

Tissue-resident memory CD8 T (T) cells provide protection from infection at barrier sites. In the small intestine, T cells are found in at least two distinct subpopulations: one with higher expression of effector molecules and another with greater memory potential. However, the origins of this diversity remain unknown.

View Article and Find Full Text PDF

Saponin-based adjuvants (SBAs) distinguish themselves as vaccine adjuvants by instigating a potent activation of CD8+ T cells. Previously, we discovered SBA's ability to induce cross-presentation in dendritic cells (DCs) leading to CD8+ T cell activation. Moreover, the MHCIICD11b bone marrow-derived DC (BMDC) subset was identified to be the most responsive DC subset to SBA treatment.

View Article and Find Full Text PDF

Photodynamic therapy (PDT), a local cancer treatment using photosensitizers, has been reported to enhance antitumor immune responses by inducing immunogenic cell death. Although several studies have demonstrated the synergistic antitumor effects of PDT and immune checkpoint blockage (ICB), the detailed underlying mechanisms remain poorly understood. In this study, we investigated the immunological effects of PDT with talaporfin (Tal-PDT), a clinically approved photosensitizer, using bilateral tumor-bearing mouse models.

View Article and Find Full Text PDF

Rejection monitoring in facial vascularized composite allotransplantation (fVCA) traditionally focuses on skin biopsies. However, mucosal rejection frequently presents with more pronounced signs of immune activity. To explore mechanistic differences between skin and mucosal rejection, rejection and non-rejection biopsies from allograft skin and oral mucosa of nine fVCA recipients were retrospectively analyzed using histology, multiplex immunostaining, and gene expression profiling, with peripheral blood mononuclear cells (PBMCs) quantified via mass cytometry (CyTOF).

View Article and Find Full Text PDF

Non-viral, high throughput genetic engineering of primary immune cells using nanostraw-mediated transfection.

Biomaterials

January 2025

Institute of Health Innovation & Technology, National University of Singapore, Singapore, 117599, Singapore; Department of Biomedical Engineering, National University of Singapore, Singapore, 117576, Singapore; NUS Tissue Engineering Program, National University of Singapore, Singapore, 117510, Singapore. Electronic address:

Transfection of proteins, mRNA, and chimeric antigen receptor (CAR) transgenes into immune cells remains a critical bottleneck in cell manufacturing. Current methods, such as viruses and bulk electroporation, are hampered by low transfection efficiency, unintended transgene integration, and significant cell perturbation. The Nanostraw Electro-actuated Transfection (NExT) technology offers a solution by using high aspect-ratio nanostraws and localized electric fields to precisely deliver biomolecules into cells with minimal disruption.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!