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Drotar, D. M.

Publications and source records attributed to Drotar, D. M..

2 recordsLinked to original sources

Inhibition of cell-mediated immunity in type 1 diabetes by beta cell-targeted PD-1 agonists in pancreas tissue slices

Tissue-targeted immunotherapies for type 1 diabetes (T1D) hold potential to protect pancreatic beta cells while minimizing systemic immunosuppression. We used a bispecific agonist called Immune Modulating Monoclonal-TCR Against Autoimmune Disease (ImmTAAI), consisting of a T cell receptor (TCR) targeting domain fused with a PD-1 agonist to specifically bind beta cells and suppress autoreactive T cells. We used live pancreas slices to demonstrate targeting of ImmTAAI molecules to pre-proinsulin peptide-HLA-A2 complexes on human beta cells. ImmTAAI protected beta cells from T cell killing by increasing T cell motility and inhibiting cytokine secretion. ImmTAAI treatment also increased the motility of islet-infiltrating T cells in slices from a donor with recent-onset T1D and preserved insulin secretion in slices co-cultured with T cell avatars transduced with diabetogenic TCRs. These data demonstrate that ImmTAAI molecules have the potential to limit T cell activity locally, making this an attractive platform to elicit targeted immunoregulation in T1D. One Sentence SummaryWe demonstrate inhibition of cellular immunity in human type 1 diabetes using a beta cell-targeting, affinity-enhanced TCR fused to a PD-1 agonist.

bioengineering↗

Imaging mass cytometry reveals early β-cell dysfunction and changes in immune signatures during type 1 diabetes progression in human pancreata

The natural history and pathogenesis of type 1 diabetes, particularly during the autoantibody- positive stages preceding clinical onset, are not well understood, in part, due to limited availability of human pancreatic samples. Here, we studied 88 organ donors, including 28 single autoantibody-positive and 10 multiple autoantibody-positive donors, by imaging mass cytometry. Approximately 10,000 islets and 16 million single-cells were spatially analyzed using 79 antibodies revealing both {beta}-cell states and the islet-immune interface. We identified IAPP loss from {beta}-cells as an indicator of pre-clinical disease. Alterations in Interferon signatures and downregulation across lineage and functional markers, including markers of endoplasmic reticulum stress, were characteristic of recent-onset disease. Further, in single autoantibody- positive donors, we identified pro-inflammatory myeloid cells and PD1+ memory CD4+ T cells, and in multiple autoantibody-positive samples, found islet-specific and exhausted-like ebector CD8+ T cells. Multiple immune cell subtypes were associated with young age, disease severity and insulitis. This dataset is a major step toward creation of a multi-modal type 1 diabetes disease atlas that will be useful for identifying potential drug targets and association of disease features with clinical co-variates and trial outcomes.

immunology↗