Evidence for C-Peptide as a Validated Surrogate to Predict Clinical Benefits in Trials of Disease-Modifying Therapies for Type 1 Diabetes

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Abstract

Type 1 diabetes is a chronic autoimmune disease in which destruction of pancreatic b-cells causes life-threatening metabolic dysregulation. Numerous approaches are envisioned for new therapies, but limitations of current clinical outcome measures are significant disincentives to development efforts. C-peptide, a direct byproduct of proinsulin processing, is a quantitative biomarker of b-cell function that is not cleared by the liver and can be measured in the peripheral blood. Studies of quantitative measures of b-cell function have established a predictive relationship between stimulated C-peptide as a measure of b-cell function and clinical benefits. C-peptide levels at diagnosis are often high enough to afford glycemic control benefits associated with protection from end-organ complications of diabetes, and even lower levels offer protection from severe hypoglycemia in type 1 diabetes, as observed in large prospective cohort studies and interventional trials of islet transplantation. These observations support consideration of C-peptide not just as a biomarker of b-cell function but also as a specific, sensitive, feasible, and clinically meaningful outcome defining b-cell preservation or restoration for clinical trials of disease-modifying therapies. Regulatory acceptance of C-peptide as a validated surrogate for demonstration of efficacy would greatly facilitate development of disease-modifying therapies for type 1 diabetes.

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Latres, E., Greenbaum, C. J., Oyaski, M. L., Dayan, C. M., Colhoun, H. M., Lachin, J. M., … Marinac, M. (2024). Evidence for C-Peptide as a Validated Surrogate to Predict Clinical Benefits in Trials of Disease-Modifying Therapies for Type 1 Diabetes. Diabetes, 73(6), 823–833. https://doi.org/10.2337/dbi23-0012

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