Key result
Femoral artery infusion of the endothelin antagonist BQ123 augmented insulin-stimulated leg glucose uptake in obese subjects (54.7 vs 107.4 mg/min) but not in lean subjects (P=0.04 across groups).
Why the study?
Does endothelin antagonism with BQ123 improve insulin-stimulated vasodilation and glucose uptake in obese humans?
Does endothelin antagonism with BQ123 improve insulin-stimulated vasodilation and glucose uptake in obese humans?
Absolute Event Rate: 107.4% vs 54.7%
p-value: p=0.04
Endothelin antagonism with BQ123 improves insulin-stimulated leg blood flow and glucose uptake in obese humans, suggesting endogenous endothelin contributes to skeletal muscle insulin resistance.
Should not yet change practice; hypothesis-generating for endothelin as a mediator of insulin resistance in obesity.
The normal action of insulin to vasodilate and redistribute blood flow in support of skeletal muscle metabolism is impaired in insulin-resistant states. Increased endogenous endothelin contributes to endothelial dysfunction in obesity and diabetes. Here, we test the hypothesis that increased endogenous endothelin action also contributes to skeletal muscle insulin resistance via impairments in insulin-stimulated vasodilation. We studied nine lean and seven obese humans, measuring the metabolic and hemodynamic effects of insulin (300 mU . m(-2) . min(-1)) alone and during femoral artery infusion of BQ123 (an antagonist of type A endothelin receptors, 1 micromol/min). Endothelin antagonism augmented skeletal muscle responses to insulin in obese subjects through changes in both leg blood flow (LBF) and glucose extraction. Insulin-stimulated LBF was significantly increased in obese subjects only. These changes, combined with differential effects on glucose extraction, resulted in augmented insulin-stimulated leg glucose uptake in obese subjects (54.7 +/- 5.7 vs. 107.4 +/- 18.9 mg/min with BQ123), with no change in lean subjects (103.7 +/- 11.4 vs. 88.9 +/- 16.3, P = 0.04 comparing BQ123 across groups). BQ123 allowed augmented leg glucose extraction in obese subjects even in the face of NOS antagonism. These findings suggest that increased endogenous endothelin action contributes to insulin resistance in skeletal muscle of obese humans, likely through both vascular and tissue effects.
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Lteif et al. (2007) studied Obesity and insulin resistance (n=16). BQ123 (endothelin type A receptor antagonist) vs. Insulin alone was evaluated on Insulin-stimulated leg glucose uptake (p=0.04). Femoral artery infusion of the endothelin antagonist BQ123 augmented insulin-stimulated leg glucose uptake in obese subjects (54.7 vs 107.4 mg/min) but not in lean subjects (P=0.04 across groups).
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