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Published on: May 2, 2025
Programmed cell death-1, PD-1, is dysregulated in T cells from children with new onset type 1 diabetes
Hector M Granados1, Andrew Draghi2, Naomi Tsurutani2
1Department of Pediatrics, Texas Tech Health Science Center, El Paso, Texas, United States of America.
Insights
Children with new-onset type 1 diabetes (T1D) show defective programmed death cell 1 (PD-1) expression on T cells, impacting glucose metabolism. Insulin therapy normalizes PD-1 and heightens T cell glycolysis.
Area of Science:
- Immunology
- Metabolic Disorders
- Pediatrics
Background:
- Programmed death cell 1 (PD-1) regulates T cell activation and glycolysis.
- Defective PD-1 expression in T cells may underlie abnormal glucose metabolism in type 1 diabetes (T1D).
Purpose of the Study:
- To investigate PD-1 expression and glucose metabolism in T cells from children with new-onset T1D.
- To assess changes in PD-1 expression and glycolytic capacity following insulin therapy.
Main Methods:
- Pilot study analyzing peripheral blood mononuclear cells (PBMCs) from children with T1D, siblings, unrelated controls, and Crohn disease patients.
- Flow cytometry measured PD-1 expression on T cells.
- Multiplex ELISA quantified cytokines; flux analyzer assessed glycolytic capacity.
Main Results:
- T cells from new-onset T1D patients exhibited decreased PD-1 expression compared to controls.
- Follow-up T cells in T1D patients showed normalized PD-1 expression but enhanced glycolytic capacity.
- No differences in PBMC cytokine production were observed between groups.
Conclusions:
- Impaired PD-1 upregulation on T cells in T1D may contribute to disease pathogenesis.
- Insulin therapy in T1D children is associated with normalized PD-1 expression and increased PBMC glycolytic capacity.
Background:
Programmed death cell 1 (PD-1) is an inhibitor of T cell activation and is also functionally linked to glycolysis. We hypothesized that PD-1 expression is defective in activated T cells from children with type 1 diabetes (T1D), resulting in abnormal T cell glucose metabolism.
Methods:
In this pilot study, we enrolled children with new onset T1D within 2 weeks of diagnosis (T1D), unaffected siblings of T1D (SIBS), unaffected, unrelated children (CTRL), children with new onset, and untreated Crohn disease (CD). We repeated the assays 4-6 months post-diagnosis in T1D (T1D follow up). We analyzed anti-CD3/-CD28-stimulated peripheral blood mononuclear cells (PBMC) subsets for PD-1 expression by flow cytometry at baseline and after 24 h in culture. We measured cytokines in the culture medium by multiplex ELISA and glycolytic capacity with a flux analyzer.
Results:
We enrolled 37 children. T cells derived from subjects with T1D had decreased PD-1 expression compared to the other study groups. However, in T1D follow-up T cells expressed PD-1 similarly to controls, but had no differences in PBMC cytokine production. Nonetheless, T1D follow up PBMCs had enhanced glycolytic capacity compared to T1D.
Conclusions:
Activated T cells from T1D fail to upregulate PD-1 upon T-cell receptor stimulation, which may contribute to the pathogenesis of T1D. T1D follow up PBMC expression of PD-1 normalizes, together with a significant increase in glycolysis compared to T1D. Thus, insulin therapy in T1D children is associated with normal PD1 expression and heightened glycolytic capacity in PBMC.
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