Authors
Bingbing Qu, Bingjun Zeng, Yurui Yuan, Xiuling He, Lina Ren, Hang Zhu, Xuanke Guan
Published in
Acta diabetologica. Jul 29, 2026. Epub Jul 29, 2026.
Abstract
Type 1 diabetes (T1D) is an autoimmune disease that destroys insulin-producing β-cells. Extracellular vesicles (EVs), including exosomes, are now recognized as important mediators of intercellular communication in immune regulation and metabolic homeostasis. Yet how immune cell-derived circulating EVs contribute to metabolic dysfunction across the disease spectrum-from preclinical to clinical T1D-has not been systematically examined.
We integrated four publicly available GEO datasets: GSE97123 (plasma-derived exosome miRNA profiling in long-duration T1D patients, n = 24), GSE92439 (T lymphocyte-derived exosome effects on pancreatic islets, n = 6), GSE316823 (ductal cell EV-mediated β-cell alterations, n = 8), and GSE160391 (cytokine-stressed islet and EV miRNA profiles, n = 48). Differential expression analysis was performed using Welch's t-test with Benjamini-Hochberg correction. Pathway enrichment, EV marker characterization, and cross-dataset integration were carried out to identify convergent mechanisms.
In GSE97123, 292 differentially expressed miRNAs (p < 0.05) were identified in circulating exosomes from T1D patients compared with controls, with upregulation of pro-inflammatory mediators including miR-155-5p and miR-146a-5p. In GSE92439, T lymphocyte-derived exosomes altered 8,189 genes in pancreatic islets, with changes in insulin secretion, apoptosis, and immune recognition pathways. In GSE316823, cytokine-stimulated ductal cell EVs induced 599 differentially expressed genes in β-cells, with notable upregulation of HLA class I molecules (HLA-A, HLA-B, HLA-C) and inflammatory chemokines (CXCL9, CXCL10, CXCL11, IDO1, GBP4). In GSE160391, cytokine stress caused distinct miRNA packaging into EVs versus islet fractions, with miR-155-5p and miR-146a-5p as the only two miRNAs consistently upregulated in both compartments across sexes. Cross-dataset integration showed convergent dysregulation of antigen presentation, insulin signaling, and apoptotic pathways.
Immune cell-derived EVs appear to transfer pro-inflammatory and metabolic-disruptive cargo to β-cells, supporting a pathogenic axis in T1D that has received limited attention. These findings suggest that EV-mediated communication could be a therapeutic target and that circulating EV miRNAs may serve as biomarkers for T1D progression.
PMID:
42525132
Bibliographic data and abstract were imported from PubMed on 29 Jul 2026.
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