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Effect of glyburide on glycogen metabolism in cultured rat hepatocytes
1Department of Medicine, Cedars-Sinai Medical Center-UCLA 90048.
Abstract:
Sulfonylurea agents decrease hepatic glucose production and fasting glucose levels in type II diabetic patients without changing fasting insulin concentrations. This raises the possibility that these drugs may act directly on hepatic carbohydrate metabolism. Cultured rat hepatocytes were used to test this hypothesis. To ascertain whether this in vitro system was suitable to demonstrate an effect of sulfonylurea agents (eg, the well-documented insulin-potentiating action), we initially measured the effect of glyburide (2 micrograms/mL) on insulin-stimulated net glucose-14C incorporation into glycogen. Glyburide increased sensitivity to insulin (ie, shifted the dose-response curve to the left) without affecting either responsiveness or insulin binding. Thus, the ED50 was significantly lowered (8.4 v 15.2 ng/mL), whereas the percent increase (181% v 170%) over the basal level, specific tracer insulin binding (5.3% v 5.1% per mg protein), and the Scatchard plots were similar. Since an effect of sulfonylurea agents could be demonstrated in this system, and the glycogen pathways supply 75% of hepatic glucose production after an overnight fast, we next measured the direct effect of glyburide (2 micrograms/mL) on glycogen storage and breakdown. Glycogenolysis was assessed by measuring the breakdown of prelabeled glycogen (from galactose-14C) and glycogen synthesis by the incorporation of glucose-C14 into glycogen. Glyburide significantly inhibited glycogenolysis and stimulated glycogen synthesis. Furthermore, glyburide significantly stimulated glycogen synthase while glycogen phosphorylase was unaffected. In conclusion, glyburide directly inhibited glycogenolysis, stimulated glycogen synthesis and glycogen synthase, and potentiated the action of insulin on glycogen synthesis at a postbinding site in cultured rat hepatocytes.(ABSTRACT TRUNCATED AT 250 WORDS)
Insights
Sulfonylurea agents like glyburide directly impact liver carbohydrate metabolism. This study shows glyburide inhibits glucose breakdown and boosts glycogen synthesis in rat liver cells, independent of insulin levels.
Area of Science:
- Hepatology
- Endocrinology
- Pharmacology
Background:
- Sulfonylurea agents lower blood glucose in type II diabetes by reducing hepatic glucose production.
- The precise mechanism of action on hepatic carbohydrate metabolism remains unclear.
- This study investigates direct effects of sulfonylureas on liver cells.
Purpose of the Study:
- To test the hypothesis that sulfonylurea agents act directly on hepatic carbohydrate metabolism.
- To evaluate the effect of glyburide on insulin sensitivity in cultured rat hepatocytes.
- To determine glyburide's direct impact on glycogen synthesis and breakdown.
Main Methods:
- Utilized cultured rat hepatocytes to assess glyburide's effects.
- Measured insulin-stimulated glucose incorporation into glycogen.
- Assessed glycogenolysis and synthesis using radiolabeled substrates.
- Analyzed effects on glycogen synthase and phosphorylase activity.
Main Results:
- Glyburide enhanced insulin sensitivity for glycogen synthesis without altering insulin binding.
- Glyburide significantly inhibited glycogenolysis (glucose breakdown).
- Glyburide significantly stimulated glycogen synthesis and glycogen synthase activity.
Conclusions:
- Glyburide directly affects hepatic carbohydrate metabolism in cultured rat hepatocytes.
- The drug inhibits glycogenolysis and stimulates glycogen synthesis.
- Glyburide potentiates insulin's action on glycogen synthesis at a post-binding site.