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C-peptide: new findings and therapeutic possibilities
John Wahren1, Charlotte Larsson2
1Department of Molecular Medicine and Surgery, Karolinska Institutet, Stockholm, Sweden; Cebix AB, Stockholm, Sweden.
Abstract:
Much new information on C-peptide physiology has appeared during the past 20 years. It has been shown that C-peptide binds specifically to cell membranes, elicits intracellular signaling via G-protein and Ca2+ -dependent pathways, resulting in activation and increased expression of endothelial nitric oxide synthase, Na+, K+ -ATPase and several transcription factors of importance for anti-inflammatory, anti-oxidant and cell protective mechanisms. Studies in animal models of diabetes and early clinical trials in patients with type 1 diabetes demonstrate that C-peptide in replacement doses elicits beneficial effects on early stages of diabetes-induced functional and structural abnormalities of the peripheral nerves, the kidneys and the retina. Much remains to be learned about C-peptide's mechanism of action and long-term clinical trials in type 1 diabetes subjects will be required to determine C-peptide's clinical utility. Nevertheless, even a cautious evaluation of the available evidence presents the picture of a bioactive endogenous peptide with therapeutic potential.
Insights
C-peptide, a bioactive peptide, activates cell protective mechanisms and shows therapeutic potential. Studies indicate C-peptide replacement benefits early stages of type 1 diabetes complications in nerves, kidneys, and retina.
Area of Science:
- Endocrinology
- Molecular Biology
- Diabetology
Background:
- C-peptide is an endogenous peptide with emerging physiological roles.
- Previous research has focused on insulin production and diabetes management.
Purpose of the Study:
- To review new information on C-peptide physiology.
- To explore C-peptide's therapeutic potential in type 1 diabetes.
Main Methods:
- Review of recent scientific literature on C-peptide.
- Analysis of studies in animal models of diabetes.
- Evaluation of early clinical trials in type 1 diabetes patients.
Main Results:
- C-peptide binds cell membranes and activates intracellular signaling pathways.
- Activation of endothelial nitric oxide synthase, Na+, K+-ATPase, and protective transcription factors.
- Beneficial effects observed in peripheral nerves, kidneys, and retina in early diabetes stages.
Conclusions:
- C-peptide exhibits anti-inflammatory, anti-oxidant, and cell-protective properties.
- C-peptide replacement therapy shows promise for early type 1 diabetes complications.
- Further long-term clinical trials are needed to confirm C-peptide's utility.
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