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June 4, 2026Nature Communications0 citationsOpen Access

Heterogeneity and dynamics of DENV-specific CD8 + T cells in dengue infection

SSSirawit SrikorWSWaradon SungnakCTChawinya Trakoolsoontorn

Key Points

  • This research aims to explore how the heterogeneity of DENV-specific CD8 T cells relates to the severity of dengue infection.
  • Performed plate-based single-cell RNA sequencing of circulating DENV-specific CD8 T cells
  • Used HLA tetramers to identify CD8 T cell subsets
  • Analyzed tetramer binding and gene expression related to disease severity
  • Asymptomatic dengue shows lower tetramer binding with moderate cytotoxic programs
  • Dengue hemorrhagic fever shows high tetramer binding with enhanced T cell receptor signaling and cytotoxicity genes
  • T cell receptor repertoires are similar among symptomatic cases but exhibit temporal dynamics

Abstract

Abstract Dengue virus (DENV) is a major global health threat, with secondary heterotypic infections potentially inducing detrimental memory immune responses. Antigen-specific CD8 + T cells contribute to both protection and pathogenicity, yet how their phenotypic heterogeneity relates to disease severity remains unclear. Here, we performed plate-based single-cell RNA sequencing of circulating DENV-specific CD8 + T cells identified by HLA tetramers loaded with DENV NS3-derived epitopes. Using tetramer binding to peptides corresponding to the currently and serologically inferred dominant previously infecting serotypes, we identify distinct CD8 + T cell subsets associated with disease severity. Asymptomatic dengue is enriched for lower tetramer binding cells with moderate cytotoxic programs, whereas dengue hemorrhagic fever is associated with high tetramer binding CX3CR1 + CD8 + T cells exhibiting enhanced expression of genes related to T cell receptor signaling and cytotoxicity. T cell receptor repertoires are similar among symptomatic cases but displayed temporal dynamics. Overall, DENV NS3-specific CD8 + T cells across disease severity and time are associated with distinct transcriptomic states and T cell receptor features.

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Cite This Study

Srikor et al. (2026) studied this question.

synapsesocial.com/papers/6a2117fdd499ed480b170d6dhttps://doi.org/10.1038/s41467-026-73491-5
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