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Immune dysregulation and stem-like CD8T cell enrichment in type 1 diabetes pancreatic lymph nodes

Source: PubMed Central Open Access, NCBI / U.S. National Library of Medicine

The Journal of Clinical InvestigationLast synced 9/16/2026Status: syncedPMID: 42741944 pmidDOI: 10.1172/JCI196445

Effector CD8T cells are key drivers of type 1 diabetes (T1D) pathogenesis, yet questions remain regarding the molecular defects leading to altered cytotoxicity, peripheral tissue phenotype, and receptor specificity. We analyzed human pancreatic lymph nodes (pLNs) using mass cytometry and single-cell RNA-seq (scRNA-seq) with combined T cell receptor (TCR) profiling. Cytometric analysis revealed enrichment of T stem cell memory–like (TSCM-like) cells (CD8CD45RACD27CD28CCR7CXCR3) in T1D pLNs. scRNA-seq indicated an elevated inflammatory cytokine gene signature (,) along with regulators of terminal differentiation (,), coupled with downregulation of exhaustion-associated genes (,,) in CD8T cells in T1D pLNs. Immune response enrichment analysis (IREA) indicated IL-15 signaling as a significant driver of these phenotypes. Integrated TCR and transcriptomics analysis revealed a cluster of diverse naive-like CD8T cell clones in T1D pLNs. Comparison of pLNs and pancreatic tissue slice isolates indicated sharing of effector CD8T cells, with enhanced terminal effector signatures within the pancreas relative to paired pLNs. Multiplex imaging revealed differential localization of T cell factor 1 (TCF1)- and thymocyte selection-associated high mobility group box protein (TOX)-expressing T cells in the pancreas, with islet-proximal TCF1TOXcells displaying a mixture of activation and exhaustion-associated phenotypes. Thus, we provide multimodal cellular profiles enriched in T1D tissues for co

Abstract

Effector CD8T cells are key drivers of type 1 diabetes (T1D) pathogenesis, yet questions remain regarding the molecular defects leading to altered cytotoxicity, peripheral tissue phenotype, and receptor specificity. We analyzed human pancreatic lymph nodes (pLNs) using mass cytometry and single-cell RNA-seq (scRNA-seq) with combined T cell receptor (TCR) profiling. Cytometric analysis revealed enrichment of T stem cell memory–like (TSCM-like) cells (CD8CD45RACD27CD28CCR7CXCR3) in T1D pLNs. scRNA-seq indicated an elevated inflammatory cytokine gene signature (,) along with regulators of terminal differentiation (,), coupled with downregulation of exhaustion-associated genes (,,) in CD8T cells in T1D pLNs. Immune response enrichment analysis (IREA) indicated IL-15 signaling as a significant driver of these phenotypes. Integrated TCR and transcriptomics analysis revealed a cluster of diverse naive-like CD8T cell clones in T1D pLNs. Comparison of pLNs and pancreatic tissue slice isolates indicated sharing of effector CD8T cells, with enhanced terminal effector signatures within the pancreas relative to paired pLNs. Multiplex imaging revealed differential localization of T cell factor 1 (TCF1)- and thymocyte selection-associated high mobility group box protein (TOX)-expressing T cells in the pancreas, with islet-proximal TCF1TOXcells displaying a mixture of activation and exhaustion-associated phenotypes. Thus, we provide multimodal cellular profiles enriched in T1D tissues for consideration in therapeutic targeting. CD8T cells are important contributors to autoimmunity in T1D, but little is known about their phenotype in disease relevant tissue. We found increased CXCR3naive-like CD8T cells in T1D pancreatic lymph node (pLN) . Using single cell sequencing and spatial profiling of human organ donor tissues, we show that CD8T cells express reduced genes related to terminal phenotypes in T1D pLN and that they acquire enhanced effector phenotype in the pancreas. toc

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