Overview
Human C-Peptide is a byproduct of insulin synthesis, released in equimolar amounts with insulin from pancreatic β-cells. It consists of 31 amino acids and reflects endogenous insulin production. Unlike insulin, C-peptide exhibits a longer half-life in circulation, making it a reliable marker for assessing β-cell function in diabetes. Recent studies suggest C-peptide may have independent biological effects, including vascular and renal protective properties. This has sparked interest in its therapeutic potential, particularly for complications of type 1 diabetes where C-peptide deficiency occurs.
Physical and Chemical Properties
As a mid-sized peptide, Human C-Peptide is water-soluble and stable when lyophilized. Its molecular weight of 3020.3 Da and absence of disulfide bonds distinguish it from insulin. The peptide maintains stability in pH 2-8 solutions but may degrade under repeated freeze-thaw cycles or prolonged exposure to room temperature. Analytical characterization typically involves HPLC for purity assessment and mass spectrometry for identity confirmation. Bioactivity is verified through receptor-binding assays or cell-based functional tests, crucial for research applications.
Main Applications
In clinical diagnostics, C-peptide measurement differentiates endogenous insulin production from exogenous insulin administration, critical for diabetes classification and treatment monitoring. Research applications include β-cell function studies, diabetes pathophysiology investigations, and therapeutic development for microvascular complications. The pharmaceutical industry utilizes synthetic C-peptide as reference standards in assay development and quality control. Emerging therapeutic applications explore its potential in preventing diabetic neuropathy and nephropathy, though these remain investigational uses.
Safety and Storage
As a naturally occurring peptide, C-peptide poses minimal toxicity risks. Standard laboratory precautions include wearing gloves and avoiding inhalation of powder. Cross-contamination should be prevented during weighing due to its high potency in biological assays. Long-term storage requires -20°C in sealed containers with desiccant. Reconstituted solutions are typically stable for 1-2 weeks at 4°C or longer when aliquoted and frozen. Avoid repeated freeze-thaw cycles to prevent peptide degradation and loss of bioactivity.
B2B Procurement Guide
When sourcing Human C-Peptide, prioritize suppliers with demonstrated peptide synthesis expertise and comprehensive analytical documentation. Key specifications include HPLC purity (>95%), correct mass spectrometry profile, and endotoxin levels (<1 EU/mg) for cell culture applications. For clinical-grade material, verify compliance with relevant pharmacopeial standards. Bulk purchasing (gram quantities) may reduce unit costs by 30-50% compared to research-scale quantities. Consider supplier capabilities for custom modifications (e.g., isotope labeling, biotinylation) if required for specialized applications.
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