Hyperglycemic glucose concentrations up-regulate the expression of type VI collagen in vitro. Relevance to alterations of peripheral nerves in diabetes mellitus.

P Muona, S Jaakkola, RZ Zhang, TC Pan… - The American journal …, 1993 - ncbi.nlm.nih.gov
P Muona, S Jaakkola, RZ Zhang, TC Pan, L Pelliniemi, L Risteli, ML Chu, J Uitto, J Peltonen
The American journal of pathology, 1993ncbi.nlm.nih.gov
Electron microscopy of peripheral nerves obtained from two diabetic patients revealed large
deposits of microfibrils and the presence of Luse bodies in the vicinity of perineurial cells.
Microfibrils were found to accumulate also in the sciatic nerves of diabetic BB rats; these
microfibrillar deposits were shown to contain type VI collagen by immunoelectron
microscopy. Connective tissue cells cultured from rat sciatic nerves were exposed to high
glucose concentrations. High glucose concentrations up-regulated the mRNA steady-state …
Abstract
Electron microscopy of peripheral nerves obtained from two diabetic patients revealed large deposits of microfibrils and the presence of Luse bodies in the vicinity of perineurial cells. Microfibrils were found to accumulate also in the sciatic nerves of diabetic BB rats; these microfibrillar deposits were shown to contain type VI collagen by immunoelectron microscopy. Connective tissue cells cultured from rat sciatic nerves were exposed to high glucose concentrations. High glucose concentrations up-regulated the mRNA steady-state levels of alpha 1 (VI), alpha 2 (VI), and alpha 3 (VI) chains of type VI collagen and caused accumulation of type VI collagen-containing fibrils in the cultures. Immunostaining and in situ hybridizations demonstrated that perineurial cells, Schwann cells, and fibroblasts expressed type VI collagen at the mRNA and protein levels. The results suggest that the turnover and supramolecular assembly of type VI collagen are perturbed in diabetic nerves and that glucose per se increases the expression of type VI collagen in vitro.
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