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Growth factor antagonists for the treatment of diabetic vascular complications
R G Tilton1, R A Dixon, T A Brock
1Department of Cell Biology, Texas Biotechnology Corporation, 7000 Fannin, Houston, TX 77030, USA.
Abstract:
Diabetic vascular disease is characterised by altered vascular reactivity and blood flow, hyperpermeability, hyperproliferative responses, and increased extracellular matrix deposition in tissues that are sites of complications. These vascular functional and structural changes have been linked to excessive glucose metabolism in target organs via at least three pathophysiological mechanisms, including increased sorbitol (polyol) pathway activity, increased nonenzymatic glycation of vascular wall proteins, and increased protein kinase C (PKC) activity. These potential mechanisms of glucose toxicity remain the subject of intense scientific investigation, and therapies targeting each of them are being evaluated in clinical trials. It is becoming increasingly clear that excessive production of growth factors provides a common denominator linking these diverse mechanisms of glucose toxicity to the functional and structural vascular alterations associated with diabetes. Increased expression of vascular endothelial growth factor (VEGF) has been linked to increased metabolism of glucose via the sorbitol pathway, to nonenzymatic glycation, and to increased PKC activity, and appears to modulate the hyperpermeability and hyperproliferative responses of diabetes. Consequently, because of the unmet medical need and market size, numerous pharmaceutical and biotechnology companies have initiated research programmes evaluating growth factor antagonists as a potential therapeutic approach for treating complications associated with diabetic vascular disease. However, before growth factor antagonists can enter clinical testing, a number of important issues must be clarified, including the physiological effect of chronic growth factor inhibition, which appears to be necessary for ameliorating chronic vascular deterioration of diabetes, and administration routes, especially for protein-based therapies.
Insights
Diabetic vascular disease involves changes in blood vessels due to high glucose. Targeting growth factors like VEGF may treat complications, but more research is needed on long-term effects and delivery.
Area of Science:
- Vascular Biology
- Diabetology
- Biochemistry
Background:
- Diabetic vascular disease presents with altered vascular reactivity, hyperpermeability, and extracellular matrix deposition.
- These changes are linked to excessive glucose metabolism via polyol pathway, nonenzymatic glycation, and protein kinase C (PKC) activity.
Purpose of the Study:
- To explore the role of excessive growth factor production as a common mechanism in diabetic vascular complications.
- To investigate growth factor antagonists as a therapeutic strategy for diabetic vascular disease.
Main Methods:
- Review of pathophysiological mechanisms of glucose toxicity in diabetic vasculature.
- Analysis of the link between growth factors, particularly vascular endothelial growth factor (VEGF), and diabetic vascular alterations.
- Consideration of therapeutic strategies involving growth factor antagonists.
Main Results:
- Excessive growth factor production, including VEGF, appears to be a common pathway linking glucose toxicity mechanisms to vascular dysfunction in diabetes.
- VEGF expression correlates with increased glucose metabolism and modulates key diabetic vascular responses.
- Growth factor antagonists are being explored as potential treatments for diabetic vascular complications.
Conclusions:
- Growth factors, especially VEGF, play a critical role in the pathogenesis of diabetic vascular disease.
- Targeting growth factors offers a promising therapeutic avenue, but requires further investigation into chronic inhibition effects and administration.
- Clarifying the long-term physiological impact of growth factor inhibition is essential before clinical application.
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