Key result
Six months of pioglitazone treatment improved endothelium-dependent vasodilation from 5.0% to 6.3% (P=0.023) in nondiabetic hypertensive patients with insulin resistance.
Why the study?
Does pioglitazone improve endothelial function in nondiabetic patients with essential hypertension and insulin resistance?
Does pioglitazone improve endothelial function in nondiabetic patients with essential hypertension and insulin resistance?
Absolute Event Rate: 6.3% vs 5%
p-value: p=0.023
Pioglitazone improves endothelial function in nondiabetic hypertensive patients with insulin resistance, and this improvement correlates with enhanced insulin sensitivity rather than changes in glycemia.
May support pioglitazone for endothelial function in insulin-resistant hypertension; hypothesis-generating and leaves open need for RCTs.
BACKGROUND: It has been suggested that insulin resistance is involved in the impaired vascular endothelial function not only in diabetic patients but also in hypertensive patients. The present study assessed the hypothesis that primary treatment of insulin resistance may reverse endothelial dysfunction in hypertensive subjects. METHODS: Fifteen nondiabetic patients with essential hypertension were enrolled in this study. An oral glucose tolerance test (OGTT) and insulin sensitivity test were performed. Insulin sensitivity was determined with the steady-state plasma glucose (SSPG) method. Only subjects with insulin resistance (SSPG > or =8.3 mmol/L) were included. Endothelium-dependent vasodilation during reactive hyperemia (flow-mediated dilation) was evaluated using ultrasonography. Six months after treatment with the insulin-sensitizing agent pioglitazone (30 mg/day), these examinations were repeated in all subjects. RESULTS: Pioglitazone did not decrease fasting plasma glucose and hemoglobin A1c (HbA1c) in the nondiabetic subjects, although the area under the curve for glucose and insulin on OGTT significantly decreased. A marked decrease in SSPG was observed after pioglitazone treatment (10.7 +/- 1.4 to 7.9 +/- 2.1 mmol/L, P < .001). Endothelium-dependent vasodilation evaluated by flow-mediated dilation was also improved by pioglitazone (5.0% +/- 2.2% to 6.3% +/- 2.4%, P = .023). Furthermore, the increase in flow-mediated dilation was closely correlated with the decrease in SSPG (r = 0.72, P = .002) but not with the decrease in area under the curve for glucose or insulin on OGTT. Endothelium-independent dilation induced by glyceryl trinitrate was not altered by pioglitazone. CONCLUSIONS: The present findings demonstrate that pioglitazone improves endothelial function in nondiabetic hypertensive individuals with insulin resistance, and that the improvement is associated with the amelioration of insulin resistance itself rather than that of hyperglycemia or hyperinsulinemia.
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Horio et al. (2005) studied Essential hypertension with insulin resistance (n=15). Pioglitazone vs. Baseline was evaluated on Endothelium-dependent vasodilation evaluated by flow-mediated dilation (p=0.023). Six months of pioglitazone treatment improved endothelium-dependent vasodilation from 5.0% to 6.3% (P=0.023) in nondiabetic hypertensive patients with insulin resistance.
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