Prevention of vascular and neural dysfunction in diabetic rats by C-peptide.

Ido, Y; Vindigni, A; Chang, K; Stramm, L; Chance, R; Heath, W F; DiMarchi, R D; Di Cera, E et al. · Science · 1997

basic_science · Level V

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Abstract

C-peptide, a cleavage product from the processing of proinsulin to insulin, has been considered to possess little if any biological activity other than its participation in insulin synthesis. Injection of human C-peptide prevented or attenuated vascular and neural (electrophysiological) dysfunction and impaired Na+- and K+-dependent adenosine triphosphate activity in tissues of diabetic rats. Nonpolar amino acids in the midportion of the peptide were required for these biological effects. Synthetic reverse sequence (retro) and all-D-amino acid (enantio) C-peptides were equipotent to native C-peptide, which indicates that the effects of C-peptide on diabetic vascular and neural dysfunction were mediated by nonchiral interactions instead of stereospecific receptors or binding sites.

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