Skip to content

Author

Shyr-Yi Lin

1 paper indexed here

We haven’t gathered this author’s papers yet. Follow them and we’ll fetch their work.

Not the right person? Other researchers publish under this name.

Open access Jul 2026

Combination of proton-pump inhibitor and anti-CD3 F(ab’)2 for islet neogenesis and immune modulation in type 1 diabetes

Abstract Introduction Type 1 diabetes (T1D) is an autoimmune disease characterized by T cell–mediated destruction of pancreatic β cells. Current insulin therapy does not address autoimmune pathology or restore endogenous β-cell function, highlighting the need for disease-modifying strategies. Methods We developed a combination therapy integrating a proton pump inhibitor (PPI; omeprazole) with a non–Fc-binding anti-CD3 F(ab’)2 antibody fragment (anti-CD3 F(ab’)2) to concurrently promote β-cell neogenesis and modulate autoimmune T-cell responses. T1D was induced in nonobese diabetic (NOD) mice using a cyclophosphamide-accelerated protocol (CY-NOD). Following hyperglycemia onset, mice received combination treatment and were evaluated by blood glucose monitoring, flow cytometric analysis of T-cell populations, and assessment of pancreatic β-cell function. Therapeutic efficacy was further examined in spontaneous-onset NOD mice. Results Combination therapy restored normoglycemia without exogenous insulin, reduced lymphocytic infiltration in pancreatic islets, and preserved endogenous insulin secretion. Treatment decreased pathogenic CD4+ and CD8+ T cells, increased regulatory T cells, and enhanced transforming growth factor-β expression. Comparable and durable glycemic control was observed in spontaneous-onset NOD mice. Conclusions Concurrent modulation of β-cell function and autoimmune immunity achieved sustained glycemic control in T1D models. The use of clinically approved agents supports the translational potential of this non–insulin-dependent therapeutic strategy.

Tung-Yun Wu, Che-Yi Chen, Michael Chen et al. · 0 citations