OBJECTIVEAdvanced glycation end products (AGEs) and their specific receptor, the receptor for AGEs (RAGE), play an important role in atherosclerosis. Recently, a soluble form of RAGE (sRAGE) has been identified in human serum. However, the role of sRAGE in cardiovascular disease is still controversial. There is no information on the association between simultaneous measurements of AGEs and sRAGE and vascular function. In this study, we evaluated the associations between serum levels of AGEs and sRAGE, ratio of AGEs to sRAGE, and vascular function. RESEARCH DESIGN AND METHODSWe measured serum levels of AGEs and sRAGE and assessed vascular function by measurement of flow-mediated vasodilation (FMD) and nitroglycerine-induced vasodilation in 110 subjects who underwent health examinations. Multivariate regression analyses were performed to identify factors associated with vascular function. RESULTSUnivariate regression analysis revealed that FMD correlated with age, BMI, systolic blood pressure, diastolic blood pressure, heart rate, triglycerides, HDL cholesterol, glucose, smoking pack-years, nitroglycerine-induced vasodilation, serum levels of AGEs and sRAGE, and ratio of AGEs to sRAGE. Multivariate analysis revealed that the ratio of AGEs to sRAGE remained an independent predictor of FMD, while serum level of AGEs alone or sRAGE alone was not associated with FMD. CONCLUSIONSThese findings suggest that sRAGE may have a counterregulatory mechanism that is activated to counteract the vasotoxic effect of the AGE-RAGE axis. The ratio of AGEs to sRAGE may be a new chemical biomarker of endothelial function.
BackgroundThe usefulness of vascular function tests for management of patients with a history of coronary artery disease is not fully known.Methods and ResultsWe measured flow‐mediated vasodilation (FMD) and brachial–ankle pulse wave velocity (baPWV) in 462 patients with coronary artery disease for assessment of the predictive value of FMD and baPWV for future cardiovascular events in a prospective multicenter observational study. The first primary outcome was coronary events, and the second primary outcome was a composite of coronary events, stroke, heart failure, and sudden death. During a median follow‐up period of 49.2 months, the first primary outcome occurred in 56 patients and the second primary outcome occurred in 66 patients. FMD above the cutoff value of 7.1%, derived from receiver‐operator curve analyses for the first and second primary outcomes, was significantly associated with lower risk of the first (hazard ratio, 0.27; 95% confidence interval, 0.06–0.74; P=0.008) and second (hazard ratio, 0.32; 95% confidence interval, 0.09–0.79; P=0.01) primary outcomes. baPWV above the cutoff value of 1731 cm/s was significantly associated with higher risk of the first (hazard ratio, 1.86; 95% confidence interval, 1.01–3.44; P=0.04) and second (hazard ratio, 2.19; 95% confidence interval, 1.23–3.90; P=0.008) primary outcomes. Among 4 groups stratified according to the combination of cutoff values of FMD and baPWV, stepwise increases in the calculated risk ratio for the first and second primary outcomes were observed.ConclusionsIn patients with coronary artery disease, both FMD and baPWV were significant predictors of cardiovascular events. The combination of FMD and baPWV provided further cardiovascular risk stratification.Clinical Trial Registration URL: http://www.umin.ac.jp. Unique identifier: UMIN000012950.
These findings suggest that both endothelial dysfunction and abnormal vascular structure may contribute to the pathogenesis and maintenance of HFpEF. Endothelial function and vascular structure may be potential therapeutic targets for HFpEF.
E ndothelial dysfunction is the initial step of atherosclerosis and plays an important role in the development of this condition.1,2 Measurement of flow-mediated vasodilation (FMD) of the brachial artery is a useful method for assessing endothelial function in humans.3-10 Appropriate interventions, including pharmacological therapy, supplementation therapy, and lifestyle modifications, are effective for improving endothelial function assessed by FMD in patients with cardiovascular diseases. [11][12][13][14][15][16] In addition, several lines of evidence have shown that FMD is an independent predictor of future cardiovascular events. [17][18][19][20][21][22] Nitroglycerine-induced vasodilation, an index of endothelium-independent vasodilation, assessed by sublingual administration of nitroglycerine has been used as a control test for FMD measurement to differentiate endothelium-dependent vasodilation from endothelium-independent vasodilation because both endogenous nitric oxide and administered nitroglycerine act on vascular smooth muscle cells. 4,[23][24][25][26] Recently, we demonstrated that nitroglycerine-induced vasodilation of the brachial artery decreased in relation to cumulative cardiovascular risk factors and was significantly correlated with cardiovascular risk factors as well as FMD in general population, including healthy subjects and patients with cardiovascular disease. 27 In addition, Schächinger et al 18 showed that impaired nitroglycerine-induced vasodilation of coronary Abstract-Measurement of nitroglycerine-induced vasodilation has been performed to differentiate endothelium-dependent vasodilation from endothelium-independent vasodilation as a control test for flow-mediated vasodilation (FMD). Recently, nitroglycerine-induced vasodilation per se has been reported to be a useful marker of the grade of atherosclerosis. The present study aimed to evaluate the prognostic value of FMD combined with nitroglycerine-induced vasodilation for future cardiovascular events. We measured FMD and nitroglycerine-induced vasodilation in 402 subjects, including patients with cardiovascular diseases. During a median follow-up period of 32.3 months, 38 first major cardiovascular events (death from cardiovascular causes, acute myocardial infarction, stroke, and coronary revascularization) occurred. Receiver-operator characteristic curve analysis revealed that FMD alone and nitroglycerine-induced vasodilation alone can predict cardiovascular events with areas under the curve of 0.671 (cutoff 3.3%) and 0.692 (cutoff 11.6%), respectively. FMD combined with nitroglycerine-induced vasodilation predicts cardiovascular events with an area under the curve of 0.701. After adjustment for age, sex, and cardiovascular risk factors, above cutoff FMD (≥3.3%) and below cutoff nitroglycerine-induced vasodilation (<11.6%; hazard ratio, 5.55; 95% confidence interval, 1.61-25.46; P=0.006) and below cutoff FMD (<3.3%) and below cutoff nitroglycerine-induced vasodilation (<11.6%; hazard ratio, 7.20; 95% confidence interval, 2.37-31.36...
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