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Does endothelial dysfunction correlate better with waist-to-hip ratio than with body mass index or waist circumference among obese patients?

PURPOSE: Obesity is associated with cardiovascular disease, affecting large arteries and the microcirculation. Waist circumference and body mass index are routinely employed as measures for assessing obesity-related health risk, whereas waist-to-hip ratio is not. We aimed to investigate the association between brachial vascular reactivity and body mass index, waist circumference, and waist-to-hip ratio. METHODS: Eighty-five volunteers (21 men/66 women), aged between 20 and 55 years, underwent determination of waist circumference, body mass index, waist-to-hip ratio, and endothelial function by venous occlusion plethysmography. Forearm blood flow was measured in response to intrabrachial artery infusions of 3 different concentrations of endothelium-dependent (acetylcholine 7.5, 15, and 30 mg/min) and endothelium-independent (sodium nitroprusside 2, 4, and 8 mg/min) vasodilators. RESULTS: There was an inverse correlation of body mass index and waist circumference with forearm blood flow increments after acetylcholine and sodium nitroprusside infusions, while waist-to-hip ratio showed an inverse correlation with forearm blood flow increments only after acetylcholine. When subjects older than 40 years (n = 25) were excluded from the analysis, the inverse correlation of body mass index with forearm blood flow increments after acetylcholine infusion no longer existed, while waist circumference and waist-to-hip ratio showed the same results observed before. CONCLUSION: The waist-to-hip ratio is probably a better estimator of endothelial dysfunction and possibly of cardiovascular risk than body mass index. These findings underscore the importance of routinely collecting hip circumference as an obesity index and risk estimator.

Adult↗

Loss of endothelial glycocalyx during acute hyperglycemia coincides with endothelial dysfunction and coagulation activation in vivo.

Hyperglycemia is associated with increased susceptibility to atherothrombotic stimuli. The glycocalyx, a layer of proteoglycans covering the endothelium, is involved in the protective capacity of the vessel wall. We therefore evaluated whether hyperglycemia affects the glycocalyx, thereby increasing vascular vulnerability. The systemic glycocalyx volume was estimated by comparing the distribution volume of a glycocalyx permeable tracer (dextran 40) with that of a glycocalyx impermeable tracer (labeled erythrocytes) in 10 healthy male subjects. Measurements were performed in random order on five occasions: two control measurements, two measurements during normoinsulinemic hyperglycemia with or without N-acetylcysteine (NAC) infusion, and one during mannitol infusion. Glycocalyx measurements were reproducible (1.7 +/- 0.2 vs. 1.7 +/- 0.3 l). Hyperglycemia reduced glycocalyx volume (to 0.8 +/- 0.2 l; P < 0.05), and NAC was able to prevent the reduction (1.4 +/- 0.2 l). Mannitol infusion had no effect on glycocalyx volume (1.6 +/- 0.1 l). Hyperglycemia resulted in endothelial dysfunction, increased plasma hyaluronan levels (from 70 +/- 6 to 112 +/- 16 ng/ml; P < 0.05) and coagulation activation (prothrombin activation fragment 1 + 2: from 0.4 +/- 0.1 to 1.1 +/- 0.2 nmol/l; d-dimer: from 0.27 +/- 0.1 to 0.55 +/- 0.2 g/l; P < 0.05). Taken together, these data indicate a potential role for glycocalyx perturbation in mediating vascular dysfunction during hyperglycemia.

Acetylcysteine↗

Does hypnotizability modulate the stress-related endothelial dysfunction?

Previous studies suggest that hypnotizability represents a protective factor against the cardiac effects of cognitive stress and that hypnosis prevents vascular stress-induced modifications in highly hypnotizable individuals. The aim of the experiment was to investigate whether a similar effect at vascular level is present in awake subjects with a high (Highs) and a low (Lows) hypnotic susceptibility. Thus, brachial artery post-ischaemic flow-mediated vascular dilation (FMD) was evaluated non-invasively by ultrasound methodology during cognitive stress (mental computation) in Highs and Lows. Results showed that Highs, similarly to that previously observed in hypnotized Highs and in contrast with Lows, did not exhibit any stress-related endothelial dysfunction (FMD decrement). Thus, hypnotizability should be considered a protective factor against vascular disease.

Adult↗

Leukocyte-induced endothelial dysfunction in the rabbit basilar artery: modulation by platelet-activating factor.

We studied the effects of polymorphonuclear leukocytes (PMNLs) activated by N-formyl-methionyl-leucyl-phenylalanine on the endothelium-dependent relaxation of the rabbit basilar artery (BA). In the presence of activated PMNLs the maximal vessel relaxation to acetylcholine (ACh) and bradykinin (endothelium-dependent dilators) was decreased from 62 +/- 7 and 48 +/- 6% to 23 +/- 9 and 19 +/- 7, respectively, (p < 0.05). The endothelium-independent relaxation to nitroprusside was not affected by PMNLs. When PMNLs were activated in the organ chamber in the presence of a low concentration of platelet-activating factor (PAF, 10(-10) mol/l), the depression of ACh- and bradykinin-induced relaxation increased by 27 +/- 9 and 23 +/- 7%, respectively (p < 0.05), though at this concentration PAF alone did not cause PMNLs to induce endothelial dysfunction. In addition, in the presence of PAF, activated PMNLs inhibited endothelium-dependent relaxation at lower cell concentrations and shorter periods of contact with the endothelium. PMNL effects on the endothelium were correlated with the level of cell exocytosis as tested by accumulation of beta-glucuronidase activity. In the presence of PAF, accumulation of this activity increased from 46 +/- 6 to 79 +/- 8 U/ml (p < 0.05). Examination of BA segments by scanning electron microscopy revealed that, after the treatment with activated PMNLs, the endothelium was morphologically preserved, but in the presence of PAF PMNLs caused more apparent microlesions in the endothelial layer. We conclude that small quantities of PAF potentiate the activation of marginated PMNLs. These cells then become more aggressive towards the endothelium, producing significant depression of the endothelium-dependent relaxation.

Acetylcholine↗

Effect of atorvastatin therapy and conversion to tacrolimus on hypercholesterolemia and endothelial dysfunction after renal transplantation.

BACKGROUND: Hypercholesterolemia is a frequent complication in renal transplant patients treated with cyclosporine A (CsA). Whether it is preferable to treat hypercholesterolemia with statins or to switch patients from CsA to tacrolimus (TRL) has not been investigated. METHODS: Twelve CsA-treated kidney transplant recipients with hypercholesterolemia were successively crossed over from CsA alone to: CsA plus atorvastatin; TRL alone; and TRL plus atorvastatin. Total cholesterol (C), Low density lipoprotein (LDL)-C, high density lipoprotein (HDL)-C, LDL and HDL alpha-tocopherol content, lag-time of LDL oxidation, plasma levels of oxidized LDL and the percentage of small dense LDL were assayed at the end of each treatment period. Endothelial function was assessed by high resolution ultrasound measurement of flow-mediated brachial artery vasodilatation (FMD). RESULTS: Atorvastatin therapy was more efficient in reducing total cholesterol and LDL-C levels than conversion from CsA to TRL. Combining TRL with atorvastatin further reduced LDL-C levels as compared to TRL alone, but was no more efficient than the CsA-statin combination. Neither atorvastatin therapy nor conversion to TRL significantly changed the proportion of dense LDL, lipoprotein alpha-tocopherol contents or the lag time of LDL oxidation. Addition of atorvastatin to CsA increased FMD from 4.0+/-1.8% to 6.5+/-4.0% (P<0.05 vs. CsA). Conversion from CsA to TRL caused a slight improvement in FMD (5.1+/-2.1%, P<0.05 vs. CsA). Adding atorvastatin to TRL had no detectable effect on FMD (5.5+/-2.3%, P=NS vs. TRL). CONCLUSIONS: Atorvastatin was more efficient in reducing total and LDL cholesterol levels of CsA-treated renal transplant patients than conversion to TRL and significantly improved endothelial dysfunction.

Adult↗

Endothelial dysfunction and cardiovascular risk profile in long-term withdrawing alcoholics.

BACKGROUND: Rates of cardiovascular morbidity and mortality are greater in heavy alcoholics than in either teetotallers or light-to-moderate drinkers. OBJECTIVE: On the assumption that factors leading to atherosclerotic damage remain operative even after long-term alcohol withdrawal, we studied the possible mechanisms of raised cardiovascular risk in former heavy alcoholics. METHODS: Forty-two apparently disease-free, normotensive alcoholics detoxified for 37.1 +/- 31.9 (SD) months, median 24, participated in the study. They were compared with 39 lifetime alcohol-abstaining control subjects, carefully matched for age, sex, body mass index, smoking and dietary habits, physical activity, lipids and fasting glucose. Endothelial function (flow-mediated dilation of brachial artery, high-resolution ultrasound technique), blood pressure, and some parameters of endothelial activation, oxidative stress, vascular inflammation and insulin sensitivity were measured. RESULTS: The maximal percentage of flow-mediated dilatation was reduced in detoxified alcoholics (10.1 +/- 4.6 versus 14.9 +/- 7.4, P < 0.001) who also showed significantly higher blood pressure (systolic 127.5 +/- 12.9 versus 118.2 +/- 10.7 mmHg, P < 0.001; diastolic 79.4 +/- 7.1 versus 74.6 +/- 6.4 mmHg, P < 0.01; mean 95.4 +/- 8.2 versus 89.1 +/- 7.3 mmHg, P < 0.001), uric acid (5.0 +/- 1.1 versus 4.4 +/- 0.8 mg/dl, P < 0.05), high-sensitivity C-reactive protein (2.1 +/- 2.0 versus 1.0 +/- 0.9 mg/l, P < 0.01), endothelin-1 (0.38 +/- 0.11 versus 0.17 +/- 0.10 pg/ml, P < 0.001) and fasting insulin (10.4 +/- 4.5 versus 5.6 +/- 1.6 muU/ml, P < 0.001) with abnormal homeostasis model assessment index of insulin resistance (2.3 +/- 1.1 versus 1.2 +/- 0.4, P < 0.001). CONCLUSION: Previous heavy alcoholism, in spite of long-term withdrawal, is associated with endothelial dysfunction and a wide cluster of haemodynamic, vascular and metabolic abnormalities that indicate an unfavourable cardiovascular and metabolic risk profile even in apparently disease-free former alcoholics.

Adult↗

[Molecular markers of endothelial dysfunction in acute ischemic stroke].

INTRODUCTION: In spite of all similarities, ischemic stroke cases representing 80% of the acute cerebrovascular accidents, different steps of platelet activation, coagulation and fibrinolytic cascade are involved in the pathomechanism of the different stroke subtypes. The differentiation of the atherothrombotic, cardioembolic and lacunar forms of acute ischemic stroke is based on the comprehensive evaluation of clinical signs, neuroimaging technics, and diagnostic ultrasound, but also a significant effort was made to characterize the specificities of the underlying processes of the coagulation system by signal molecules, in order to clarify their possible role and to support the diagnostic and therapeutic decisions. PATIENTS AND METHODS: The von Willebrand factor was studied as the marker of endothelial injury in 34 acute ischemic stroke patients within 24 hours after the onset of their stroke, and repeatedly 2, 4, and 12 weeks thereafter. To determine the probable source of the von Willebrand factor, usually released not only by endothelial cells, but also by platelets, the authors simultaneously measured the levels of an additional endothelial marker, thrombomodulin, and a platelet activation marker, beta-thromboglobulin. RESULTS: The mean of von Willebrand factor levels measured in stroke patients on the first day was 123%, whereas the mean of the control group 72% (p < 0.05). There was no significant difference according to stroke subtype. Von Willebrand values determined two weeks later showed a further 60% increase in stroke patients, and after a gradual fall their level remained above the concentration of the control group. The beta-thromboglobulin level measured in stroke group was significantly higher, than in control individuals (171 IU/ml vs. 32 IU/ml, p < 0.001). This was characteristic for atherothrombotic and cardioembolic stroke, but not for lacunar infarctions. If measured repeatedly, beta-thromboglobulin levels decreased rapidly in the first two weeks, than somewhat slower. Soluble thrombomodulin was slightly elevated in stroke patients (4.24 ng/ml) compared to healthy subjects (3.81 ng/ml), without statistical significance, and without major differences between subgroups. CONCLUSIONS: While early determination of beta-thromboglobulin can contribute to the differential diagnoses of the subtypes of ischemic stroke, the long-lasting elevation of von Willebrand factor may reflect endothelial dysfunction caused by several factors in the microvasculature of the penumbra.

Acute Disease↗

[The role of hormonal homeostasis in pathogenesis of endothelial dysfunction during preeclampsia].

The aim of the study was the establishment of correlations between hormone homeostasis and metabolism of NO during preeclampsia. Blood of pregnant women with gestation age 30-32 weeks was investigated by EPR (electron paramagnetic resonance) and enzyme immunoassay methods. It was shown that during preeclampsia progesterone content decreased by 32% and estradiol content decreased by 37%, while testosterone content increased by 51% in comparison with those levels in women with physiological pregnancy. During preeclampsia concentration of free NO reduces by 32%, the content of high HbNO complexes is revealed. It is observed the decrease of oxygen partial pressure (pO(2)) during preeclampsia. Disorders of hormone homeostasis plays important role in the pathogenesis of endothelial dysfunction during preeclampsia. On the basis of obtained results we may conclude that decrease of vasodilatatory hormones (progesterone and estradiol) content and hypoxia-induced deposition of free NO in hemoglobin promotes increasing of vascular reactivity and development of hypertension.

Biomarkers↗

Atherosclerosis: from lesion formation to plaque activation and endothelial dysfunction.

Atherosclerosis is an important source of morbidity and mortality in the developed world. Despite the fact that the association between LDL cholesterol and atherosclerosis has been evident for at least three decades, our understanding of exactly how LDL precipitates atherosclerosis is still in its infancy. At least three working hypotheses of atherosclerosis are now nearing the stage where their critical evaluation is possible through a combination of basic science investigation and murine models of atherosclerosis. As we move forward in our understanding of this disease, efforts will be increasingly focused on the molecular mechanisms of disease activation that precipitate the clinical manifestations of atherosclerosis such as heart attack and stroke. Two candidates for such investigation involve the events surrounding plaque activation and endothelial dysfunction. Further investigation in these fields should provide the necessary insight to develop the next generation of interventions that will reduce the clinical manifestations of this devastating disease. The purpose of this work is to review the major theories of atherogenesis, examine the aspects of atherosclerosis that lead to disease activation and discuss aspects of disease activation that are amenable to treatment.

Animals↗

Endothelial dysfunction precedes atherosclerotic lesions and platelet activation in high fat diet-induced prothrombotic state.

INTRODUCTION: Earlier we have demonstrated a prothrombotic state in spontaneously atherogenic rodents kept on Western-style high fat diet. The aim of the present study was to investigate the cellular mechanism of such prothrombotic state. MATERIALS AND METHODS: Two kinds of diets, Western-style high fat diet containing 20% fat (w/w) and 0.05% cholesterol (w/w) and low fat diet containing 7% fat without cholesterol based on AIN93G, were added to diet-sensitive apolipoprotein E and low-density lipoprotein receptor double deficient male mice for 12 or 18 weeks from 6 weeks of age. Atherosclerosis was assessed by morphometry of the aortic wall or lipid-stained lesions. Endothelial function was measured by flow-mediated vasodilation (FMV) of the femoral artery. Platelet reactivity was measured ex vivo by a shear-induced platelet aggregation test. RESULTS AND CONCLUSIONS: 12 weeks feeding of mice with high fat diet significantly impaired FMV, as compared with mice fed with low fat diet (P<0.05). In contrast, there was no significant difference in the lipid-stained areas and in the reactivity of platelets between the two groups. 18 weeks feeding with high fat diet significantly impaired FMV (P<0.05) and enhanced both lipid-stained areas (P<0.05) and platelet reactivity (P<0.01). These findings show that in high fat diet-induced prothrombotic state, endothelial dysfunction precedes both the morphologically detectable lesions and the enhancement of platelet reactivity.

Animals↗

Diabetes induces endothelial dysfunction but does not increase neointimal formation in high-fat diet fed C57BL/6J mice.

Studies of diabetic vascular disease have traditionally used murine models of type 1 diabetes and genetic models of type 2 diabetes. Because the majority of patients with type 2 diabetes have diet induced obesity, we sought to study the effect of diabetes on arterial disease in a mouse model of diet induced obesity/diabetes. C57Bl/6 mice fed a high-fat diet for 9 weeks developed type 2 diabetes characterized by elevated body weight, hyperglycemia, and hyperinsulinemia. Arteries from diabetic mice exhibited a marked decrease in endothelium-dependent vasodilation, a modest decrease in endothelium independent vasodilation, and an increase in sensitivity to adrenergic vasoconstricting agents. Insulin stimulated protein kinase B (akt) and endothelial nitric oxide synthase (eNOS) phosphorylation were preserved in arteries from diabetic mice; however, eNOS protein dimers were markedly diminished. Arterial nitrotyrosine staining indicated that increased levels of peroxynitrite contributed to eNOS dimer disruption in the diabetic mice. The abnormal vasomotion was not an acute response to the high-fat diet, as short term high-fat diet feeding had no effect on endothelium dependent dilation. A trend toward smaller neointimal lesions was noted in high-fat diet fed mice after femoral artery wire denudation injury. In summary, disrupted eNOS dimer formation rather than impaired insulin mediated eNOS phosphorylation contributed to the endothelial dysfunction in diet induced obese/diabetic mice. The lack of an increase in neointimal formation indicates that additional diabetes associated parameters (such as hyperlipidemia and atherosclerotic vascular disease) may need to be present to increase neointimal formation in this model.

Animals↗

Angiotensin II regulates vascular and endothelial dysfunction: recent topics of Angiotensin II type-1 receptor signaling in the vasculature.

Accumulating evidence strongly implicates angiotensin II (AngII) intracellular signaling in mediating cardiovascular diseases such as hypertension, atherosclerosis and restenosis after vascular injury. In vascular smooth muscle cells (VSMCs), through its G-protein-coupled AngII Type 1 receptor (AT(1)), AngII activates various intracellular protein kinases, such as receptor or non-receptor tyrosine kinases, which includes epidermal growth factor receptor (EGFR), platelet-derived growth factor receptor (PDGFR), c-Src, PYK2, FAK, JAK2. In addition, AngII activates serine/threonine kinases such as mitogen-activated protein kinase (MAPK) family, p70 S6 kinase, Akt/protein kinase B and various protein kinase C isoforms. In VSMCs, AngII also induces the generation of intracellular reactive oxygen species (ROS), which play critical roles in activation and modulation of above signal transduction. Less is known about endothelial cell (EC) AngII signaling than VSMCs, however, recent studies suggest that endothelial AngII signaling negatively regulates the nitric oxide (NO) signaling pathway and thereby induces endothelial dysfunction. Moreover, in both VSMCs and ECs, AngII signaling cross-talk with insulin signaling might be involved in insulin resistance, an important risk factor in the development of cardiovascular diseases. In fact, clinical and pharmacological studies showed that AngII infusion induces insulin resistance and AngII converting enzyme inhibitors and AT(1) receptor blockers improve insulin sensitivity. In this review, we focus on the recent findings that suggest the existence of novel signaling mechanisms whereby AngII mediates processes, such as activation of receptor or non-receptor tyrosine kinases and ROS, as well as cross-talk between insulin and NO signal transduction in VSMCs and ECs.

Angiotensin II↗

Reduction of oxidative tissue injury and endothelial dysfunction by graduated reperfusion after cardioplegic arrest in isolated rat hearts.

The aim of this study was to investigate whether or not a graduated resumption of the perfusion pressure after cardioplegic ischaemic arrest will reduce the impact of oxygen free radicals on myocardium and the cardiovasculature. Langendorff-perfused rat hearts were subjected to cardioplegia and subsequent 40 min of global ischaemia at 25 degrees C. Reperfusion was carried out either abruptly (AR) or gradually (i.e., perfusion pressure stepwise increased from 40 to 75 mmHg within 30 min -GR). GR resulted in a significant improvement of percentage recovery of left ventricular systolic pressure as compared to AR. A marked increase of thiobarbituric acid reactive substances (TBARS) was detected in the effluent during AR, accompanied by an impaired release of the endothelial vasodilator NO and diminished coronary flow rates compared to the baseline values. GR resulted in a significant reduction of TBARS in the effluent and promoted a better recovery of coronary flow as well as endothelial release of NO during the later phase of reperfusion. It is concluded that graduated reperfusion is beneficial in reducing free radical mediated peroxidative tissue injury and endothelial dysfunction upon reoxygenation.

Animals↗

Peripheral blood abnormalities in Alzheimer disease: evidence for early endothelial dysfunction.

Clinical and epidemiologic studies demonstrate that vascular risk factors may be involved in Alzheimer disease (AD). To evaluate whether vascular abnormalities are an early feature of AD, several parameters of coagulation and fibrinolysis were assessed. Thirty patients with mild AD and 30 age-matched control subjects entered the study. All subjects performed a standardized clinical and laboratory protocol. Persons with vascular risk factors and systemic diseases were excluded. AD patients present significant increased levels of thrombomodulin (p < 0.0001) and sE-selectin (p < 0.03). In contrast, no difference was found between the two diagnostic groups in the levels of beta-thromboglobulin, prothrombin fragment 1+2, fibrinogen, and von Willebrand factor. No other association but diagnosis was found with thrombomodulin and sE-selectin. These findings suggest that endothelial dysfunction is an early event in AD patients.

Aged↗

Plasma concentration of C-reactive protein is increased in type I diabetic patients without clinical macroangiopathy and correlates with markers of endothelial dysfunction: evidence for chronic inflammation.

Moderately increased plasma concentrations of C-reactive protein are associated with an increased risk of cardiovascular disease. C-reactive protein, its relation to a low degree of inflammatory activation and its association with activation of the endothelium have not been systematically investigated in Type I (insulin-dependent) diabetes mellitus. C-reactive protein concentrations were measured in 40 non-smoking patients with Type I diabetes without symptoms of macrovascular disease and in healthy control subjects, and in a second group of Type I diabetic patients (n = 60) with normo- (n = 20), micro- (n = 20) or macroalbuminuria (n = 20). Differences in glycosylation of alpha1-acid glycoprotein were assayed by crossed affinity immunoelectrophoresis. Activation of the endothelium was measured with plasma concentrations of endothelial cell markers. The median plasma concentration of C-reactive protein was higher in Type I diabetic patients compared with healthy control subjects [1.20 (0.06-21.64) vs. 0.51 (0.04-9.44) mg/l; p<0.02]. The Type I diabetic subjects had a significantly increased relative amount of fucosylated alpha1-acid glycoprotein (79+/-12% vs. 69+/-14% in the healthy control subjects; p<0.005), indicating a chronic hepatic inflammatory response. In the Type I diabetic group, log(C-reactive protein) correlated significantly with von Willebrand factor (r = 0.439, p<0.005) and vascular cell adhesion molecule-1 (r = 0.384, p<0.02), but not with sE-selectin (r = 0.008, p = 0.96). In the second group of Type I diabetic patients, increased urinary albumin excretion was associated with a significant increase of von Willebrand factor (p<0.0005) and C-reactive protein (p = 0.003), which were strongly correlated (r = 0.53, p<0.0005). Plasma concentrations of C-reactive protein were higher in Type I diabetic patients without (clinical) macroangiopathy than in control subjects, probably due to a chronic hepatic inflammatory response. The correlation of C-reactive protein with markers of endothelial dysfunction suggests a relation between activation of the endothelium and chronic inflammation.

Adult↗

Endothelial dysfunction in coronary vessels and thoracic aorta of rats exposed to cigarette smoke.

1. The aim of this study was to evaluate the role of endothelium in mediating the response to acetylcholine in the thoracic aorta and coronary vessels of rats exposed to cigarette smoking. Total serum cholesterol was measured at the beginning and end of the experiment. 2. The relaxation response to acetylcholine was significantly impaired in the aortae of rats exposed to cigarette smoking (P < 0.05); and the coronary flow during the administration of acetylcholine (0.02 microgram/min.) was significantly reduced (P < 0.05). The total cholesterol plasma levels increased 31.13% in those exposed to smoke when compared to the controls (P < 0.05). 3. It is concluded that exposure to cigarette smoking increases total serum cholesterol levels, and also produces primary endothelial dysfunction in aorta rings and coronary vessels.

Acetylcholine↗

Endothelial dysfunction is induced by proinflammatory oxidant hypochlorous acid.

The myeloperoxidase (MPO)-derived oxidant hypochlorous acid (HOCl) plays a role in tissue injury under inflammatory conditions. The present study tests the hypothesis that HOCl decreases nitric oxide (NO) bioavailability in the vasculature of Sprague-Dawley rats. Aortic ring segments were pretreated with HOCl (1-50 microM) followed by extensive washing. Endothelium-dependent relaxation was then assessed by cumulative addition of acetylcholine (ACh) or the calcium ionophore A23187. HOCl treatment significantly impaired both ACh- and A23187-mediated relaxation. In contrast, endothelium-independent relaxation induced by sodium nitroprusside was unaffected. The inhibitory effect of HOCl on ACh-induced relaxation was reversed by exposure of ring segments to L-arginine but not D-arginine. In cellular studies, HOCl did not alter endothelial NO synthase (NOS III) protein or activity, but inhibited formation of the NO metabolites nitrate (NO3(-) and nitrite (NO2(-). The reduction in total NO metabolite production in bovine aortic endothelial cells was also reversed by addition of L-arginine. These data suggest that HOCl induces endothelial dysfunction via modification of L-arginine.

Acetylcholine↗

Coronary endothelial dysfunction in the hypertensive patient: from myocardial ischemia to heart failure.

The endothelium modulates vascular tone by the release of vasodilator and vasoconstrictor substances, among them nitric oxide (NO) and endothelin (ET). Abnormalities in NO generation have been demonstrated in various cardiac pathophysiological states, specifically atherosclerotic vascular disease, congestive heart failure, and essential and pulmonary hypertension. Moreover, increases in plasma ET has been reported as well in these disease states. When these observations are taken together, these states may be characterized by an attenuated release of NO, whereas the release of ET is augmented. An imbalance between NO and ET may contribute to the alteration in vascular tone characteristic of cardiovascular disease. The following review summarizes the present knowledge of the role of NO and ET in such disease processes with a major focus on coronary endothelial dysfunction.

Coronary Vessels↗