Research Article
Thiamine and benfotiamine prevent increased apoptosis in endothelial cells and pericytes cultured in high glucose
Article first published online: 22 MAR 2004
DOI: 10.1002/dmrr.470
Copyright © 2004 John Wiley & Sons, Ltd.
Additional Information
How to Cite
Beltramo, E., Berrone, E., Buttiglieri, S. and Porta, M. (2004), Thiamine and benfotiamine prevent increased apoptosis in endothelial cells and pericytes cultured in high glucose. Diabetes/Metabolism Research and Reviews, 20: 330–336. doi: 10.1002/dmrr.470
Publication History
- Issue published online: 7 JUL 2004
- Article first published online: 22 MAR 2004
- Manuscript Accepted: 27 JAN 2004
- Manuscript Revised: 23 JAN 2004
- Manuscript Received: 26 NOV 2003
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Keywords:
- diabetic retinopathy;
- endothelium;
- pericytes;
- glucose;
- thiamine;
- benfotiamine
Abstract
Background
High glucose induces pathological alterations in small and large vessels, possibly through increased formation of AGE, activation of aldose reductase and protein kinase C, and increased flux through the hexosamine pathway. We showed previously that thiamine and benfotiamine correct delayed replication and increase lactate production in endothelial cells subjected to high glucose. We now aim at verifying the effects of thiamine and benfotiamine on cell cycle, apoptosis, and expression of adhesion molecules in endothelial cells and pericytes, under high ambient glucose.
Methods
Human umbilical vein endothelial cells and bovine retinal pericytes were cultured in normal (5.6 mmol/L) or high (28 mmol/L) glucose, with or without thiamine or benfotiamine, 50 or 100 µmol/L. Apoptosis was determined by two separate ELISA methods, measuring DNA fragmentation and caspase-3 activity, respectively. Cell cycle and integrin subunits α3, α5, and β1 concentration were measured by flow cytometry.
Results
Apoptosis was increased in high glucose after 3 days of culture, both in endothelium and pericytes. Thiamine and benfotiamine reversed such effects. Neither cell cycle traversal nor integrin concentrations were modified in these experimental conditions.
Conclusions
Thiamine and benfotiamine correct increased apoptosis due to high glucose in cultured vascular cells. Further elucidations of the mechanisms through which they work could help set the basis for clinical use of this vitamin in the prevention and/or treatment of diabetic microangiopathy. Copyright © 2004 John Wiley & Sons, Ltd.

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