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Insulin resistance and vessel endothelial function.

IRS is a complex disease consisting of a clustering of metabolic disorders, of which hyperglycaemia, hyper-insulinaemia and dyslipidaemia are the most important. Endothelial dysfunction plays an important role in the pathogenesis of atherosclerosis. The effects of hyperinsulinaemia seem to depend on lipidaemia and glycaemia. Hyperglycaemia and hyperlipidaemia have detrimental effects on endothelial function in the fasting as well as the postprandial states. In both situations, the generation of ROS and vasoactive molecules plays a major role in interfering with the atheroprotective endothelium-dependent NO system. Treatment of IRS in regard to endothelial function should be focused initially on lifestyle improvement, such as stopping smoking and eating a balanced diet containing antioxidant vitamins, folic-acid, L-arginine and long-chain omega-3 unsaturated FA. Strict glucose control has shown to improve endothelial function and decrease microvascular complications. However, macrovascular complications, in line with endothelial functional improvement, have so far been reduced only when treatment was focused on other characteristics of the IRS syndrome, in particular dyslipidaemia. Other relevant treatments include ACE inhibitors and thiazolidinediones, and probably tetrahydrobiopterin and folic acid supplementation. Future studies should address the effects of therapeutic neovascularization on endothelial dysfunction.

Endothelium, Vascular↗

Antiatherosclerotic effects of dietary supplementations of garlic and turmeric: Restoration of endothelial function in rats.

Protections of endothelial integrity by elimination of certain risk have proven to be effective in maintaining hemostasis and in slowing the progress of the cardiovascular disease. Indigenous drugs are the natural source of protection against these disorders, which can be used more effectively by the knowledge of their active ingredients as well as by their mechanism of action. Most prominent among these drugs are garlic, [Alium sativum L., Family: Liliaceae, Bulbs] and turmeric [Curcuma longa L., Family: Zingiberaceae, Rhizomes]; commonly used Indian traditional spices. In the present study, we examined the atheroscleroprotective potential of diet supplementation of garlic and turmeric by measuring serum lipid profile, changes in cardiovascular parameters i.e. arterial blood pressure, electrocardiogram and heart rate. We further tried to elucidate the mechanism of restoration of endothelial function and the role of endothelium-derived factors mainly, nitric oxide (NO) and cycloxygenase derived contracting factors. A notable restoration of arterial blood pressure was seen in animals on garlic and turmeric supplemented diet. Animals on supplemented diet showed a significantly enhanced vasorelaxant response to adenosine, acetylcholine, isoproterenol and contractile effect of 5-hyderoxytryptamine was significantly attenuated. Inhibition of these responses by L-NMMA was smaller in tissues from herbal treated animals. Incubation of tissues with L-arginine (10(-5) M) resulted in a significant reversal of L-NMMA induced inhibition of endothelium-mediated relaxation, which appeared to be pronounced in rings from animals supplemented with herbs as compared to hypercholesterolemic animals. Addition of indomethacin (10(-5) M) augmented the relaxation in all the groups of animals. The present study demonstrated that garlic and turmeric are potent vasorelaxants as well as reduce the atherogenic properties of cholesterol. Whether combination of these vasodilators in cardiovascular disorders with increased peripheral vascular resistance remains to be determined.

Animals↗

Coronary endothelial function is preserved with chronic endothelin receptor antagonism in experimental hypercholesterolemia in vitro.

Hypercholesterolemia is associated with increased circulating and tissue endothelin-1 immunoreactivity, decreased nitric oxide (NO) activity, and altered endothelial function. We tested the hypothesis that chronic endothelin receptor antagonism preserves endothelial function and increases NO in experimental porcine hypercholesterolemia. Pigs were randomized to 3 groups: Group 1, a 2% high-cholesterol (HC) diet alone (n=7); group 2, RO-48-5695, a combined endothelin receptor antagonist, and an HC diet (n=8); and group 3, ABT-627, a selective endothelin-A receptor antagonist, and an HC diet (n=8). Coronary epicardial and arteriolar endothelial function was determined by a dose-response relaxation to bradykinin (10(-11) to 10(-6) mol/L), in all groups and in pigs maintained on a normal diet. Plasma total oxidized products of NO (NO(x)) were determined by chemiluminescence at baseline and after 12 weeks. Bradykinin-stimulated coronary epicardial and arteriolar relaxation in group 1 was attenuated compared with normal-diet controls. This relaxation was normalized with endothelin receptor antagonism. Plasma NO(x) decreased after 12 weeks in group 1 (-74.8+/-5.5%). This decrease was attenuated in the endothelin receptor antagonist groups (group 2, -28.2+/-15.0%; group 3, -38.9+/-20.6%). Chronic endothelin receptor antagonism preserves coronary endothelial function and increases NO in hypercholesterolemia. This study supports a role of endothelin-1 in the regulation of NO activity and suggests a possible therapeutic role for endothelin receptor antagonists in hypercholesterolemia.

Animals↗

Cholesterol lowering with pravastatin improves resistance artery endothelial function: report of six subjects with normal coronary arteriograms.

STUDY OBJECTIVES: Improvement in coronary artery endothelial function has been demonstrated after cholesterol lowering in hypercholesterolemic patients with significant atherosclerosis. However, to our knowledge, no previous study has shown improvement in resistance artery function in subjects with normal coronary arteries after cholesterol lowering. The purpose of our study was to investigate the effect of cholesterol lowering with pravastatin on coronary resistance artery endothelial function in the setting of angiographically normal coronary arteries. METHODS: Invasive testing of coronary endothelial and vasomotor function was performed at baseline and after 6 months of pravastatin treatment in six patients with normal coronary arteriograms. RESULTS: After 6 months of pravastatin treatment, low-density lipoprotein cholesterol level dropped from 157+/-11 to 117+/-8 mg/dL (p = 0.02) and percent increase in coronary blood flow after acetylcholine improved from 97+/-13% to 160+/-16% (p = 0.01). There was a trend (p = 0.17) toward enhanced epicardial dilation in response to acetylcholine after pravastatin treatment when compared with the baseline study. CONCLUSIONS: Our study demonstrates significant improvement in coronary resistance artery endothelial function after 6 months of cholesterol lowering with pravastatin in six subjects presenting with chest pain who were found to have normal coronary arteriograms. A trend toward improved epicardial vasomotion was also observed.

Adult↗

Assessment of endothelial function during oral contraception in women with insulin-dependent diabetes mellitus.

The effects of contraceptive steroids on the expression of endothelial homeostasis were examined by direct and indirect measures in women with insulin-dependent diabetes mellitus (IDDM) in a prospective nonrandomized controlled study. Study subjects were 13 women with uncomplicated IDDM treated with a monophasic combination of 30 micrograms ethinyl estradiol and 75 micrograms gestodene for 12 consecutive cycles and 13 women of comparable diabetic status as control. During the study period, none of the participants developed increased renal albumin excretion, which was used as a direct measure of endothelial function. In the indirect assessment of endothelial function, we found a proportionate increase in plasma levels of thrombin-antithrombin III (TAT) complexes and D-dimer during treatment. Hormonal intake was followed by decreased antigen concentrations of tissue plasminogen activator (t-PA) and plasminogen activator inhibitor (type 1 [PAI-1]), whereas the activities of t-PA and PAI-1 were unchanged. Plasma levels of plasminogen and histidine-rich glycoprotein (HRG) increased and decreased, respectively, whereas an increase in von Willebrand factor was observed in the treatment group. No significant changes in direct or indirect measures were observed in the control group during the observation period of 12 months. In conclusion, no adverse effect on endothelial function was demonstrated by direct measures, but our findings suggest that a procoagulant state, compensated by enhanced activity of the fibrinolytic system, is induced by hormonal treatment. Clinical and metabolic monitoring is recommended if the use of oral contraceptives in women with IDDM is extended.

Adult↗

Glyc-oxidized LDL impair endothelial function more potently than oxidized LDL: role of enhanced oxidative stress.

Hypercholesterolemia is associated with impairment of endothelial function due to increased levels of LDL. In diabetic patients, however, attenuation of endothelial function occurs even under normocholesterolemic conditions. Here we assessed whether glycation of LDL potentiates their influence on endothelial function, with particular emphasis on the oxidizability of LDL and the role of O2-. Human LDL was glycated by dialyzation for 7 days against buffer containing 200 mmol/l glucose, or sham-treated without glucose, and oxidized by incubation with Cu2+. Glycation significantly enhanced the oxidizability of LDL, as detected by diene formation and by electrophoretic mobility (27.5 mm for oxidized LDL vs. 34 mm for oxidized glycated LDL at 20 h of oxidation). Isolated rings of rabbit aorta were superfused with physiological salt solution, and isometric tension was recorded. Incubation of the aortic rings with sham-treated or with glycated LDL, not oxidized, had no influence on acetylcholine-induced, endothelium-dependent relaxation. Exposure of the aortic rings to oxidized non-glycated LDL caused a significant inhibition (30% at 1 microM acetylcholine) of the endothelium-dependent relaxation only in the presence of diethyl-dithiocarbamate (DDC), an inhibitor of the endogenous superoxide dismutase (SOD). Incubation of aortic rings with oxidized glycated LDL attenuated endothelium-dependent relaxation even in the absence of DDC (by 31% at 1 microM acetylcholine). The presence of DDC potentiated the inhibition of relaxation (65% inhibition at 1 microM acetylcholine), and co-incubation with exogenous SOD and catalase prevented the inhibition of relaxation, indicating a mediator role of O2-. Endothelium-independent relaxation induced by forskolin was unaffected by any of the lipoproteins. Using a chemiluminescence assay, significantly increased O2- production of aortic rings pretreated with oxidized glycated LDL (4101 +/- 360 counts/s) in comparison to control rings (753 +/- 81 counts/s) or arteries pretreated with oxidized non-glycated LDL (2358 +/- 169 counts/s) could be detected, suggesting that enhanced NO-inactivation by O2- could be the underlying mechanism for the stronger impairment of endothelium-dependent dilations by oxidized glycated LDL. Glycation increases the oxidizability of LDL and potentiates its endothelium-damaging influence. The likely mechanism for attenuation of endothelium-dependent dilations is increased formation of O2-, resulting in inactivation of nitric oxide. This mechanism may play an important role in diabetic patients and may contribute to disturbed organ perfusion.

Animals↗

Plant stanols do not restore endothelial function in pre-pubertal children with familial hypercholesterolemia despite reduction of low-density lipoprotein cholesterol levels.

OBJECTIVE: To examine the effect of plant stanols on lipids and endothelial function in pre-pubertal children with familial hypercholesterolemia (FH). STUDY DESIGN: Children with FH (n=42), aged 7-12 years, were enrolled in a double-blind crossover trial, in which they consumed 500 mL of a low-fat yogurt enriched with 2.0 g of plant stanols and 500 mL of a low-fat placebo yogurt for 4 weeks, separated by a 6-week washout period. Lipid profiles and endothelial function were assessed after both consumption periods. Endothelial function was measured as flow-mediated dilation (FMD) of the brachial artery. RESULTS: This daily intake of 2.0 g of stanols significantly decreased the levels of total cholesterol (TC) by 7.5% and low-density lipoprotein cholesterol (LDL-C) by 9.2% as compared with placebo. High-density lipoprotein cholesterol and triglyceride levels remained unaltered. The reduction of LDL-C levels did not improve FMD, which was 10.5%+/-5.1% after plant stanol consumption and 10.6%+/-5.0% after placebo consumption, respectively (P=.852). CONCLUSION: This study demonstrates that plant stanols reduce LDL-C levels in children with FH without improving endothelial function.

Anticholesteremic Agents↗

The effect of PGI2 analogue on vascular endothelial function and platelet aggregation in patients with NIDDM.

The effect of the short-term administration of beraprost sodium, an analogue of prostaglandin I2 (PGI2), on the function of vascular endothelial cells and platelet in non-insulin-dependent diabetes mellitus (NIDDM) patients was investigated. Seven nonobese NIDDM patients with microalbuminuria were recruited for this study. They received a dose of 20 micrograms of beraprost sodium three times daily for 1 month. Before and after this treatment, various factors concerning functions of vascular endothelial cells and platelet were measured. Treatment with PGI2 analogue caused a decrease in basal levels of plasma lipoprotein (a) from 16.8 +/- 5.3 to 13.2 +/- 4.4 mg/dL (p < 0.05), immunoreactive-(i)endothelin from 2.4 +/- 0.3 to 1.6 +/- 0.2 pg/mL, and i-thrombomudulin from 9.3 +/- 3.7 to 7.9 +/- 3.0 FU/L, respectively, and caused a significant increase in basal plasma i-tissue type plasminogen activator (tPA) from 5.3 +/- 0.7 to 8.3 +/- 1.5 ng/mL (p < 0.01). This treatment also increased maximum response of i-tPA induced by desmopressin infusion. Platelet aggregation due to ADP was inhibited in five of six patients after this treatment. In conclusion, treatment with PGI2 analogue caused a decrease in the presumed promoting factors of angiopathy such as lipoprotein (a) and endothelin and an increase in the protecting endothelial factor of angiopathy, tissue type plasminogen activator in patients with NIDDM. And immunoreactive thrombomodulin levels which reflect the vascular endothelial cell injury tended to decrease with the treatment. Therefore, it is suggested that this treatment preserves the vascular endothelial function in diabetes.

Adult↗

Preliminary results of the effect of treatment of hyperhomocysteinemia and its relationship with inflammation, coagulation status, and endothelial function after renal transplantation.

The aim of this study was to assess the relationship between total plasma homocysteine (tHC) and several markers of endothelial function, coagulation, and pro-inflammatory status in renal transplant recipients. Our own previous study demonstrated the efficacy of folic acid (FA) and vitamin B(12) (B(12)) treatment to reduce tHC. Using 70 stable recipients, 56 of whom showed hyperhomocisteinemia (HHC) (tHC > or = 14 micromol/L) and a control group (n = 14, tHC < 14 micromol/L), we treated 29 patients in the HHC group (10 mg FA and 500 mg B(12) daily) and determined their endothelial function, inflammatory activity, and coagulation status. We assessed plasma levels of von Willebrand Factor and fibrinogen as the prothrombotic profile and C-reactive protein and plasma albumin as inflammation markers. We performed Doppler sonography of the brachial artery to assess endothelial function. The mean value of plasma tHC of 19.05 +/- 3.70 micromol/L before treatment decreased to 13.45 +/- 3.25 micromol/L after 3 months of treatment (P < .001). The vWF was significantly correlated with tHC (P < .05) and was higher in the HHC patients (P < .05). The fibrinogen mean level was also significantly higher in HHC patients (P < .05). The C-reactive protein level was significantly higher and the albumin level was lower among patients with HHC. The endothelium-dependent dilation (EDD) correlated with baseline tHC (P < .05). In preliminary data we observed that homocysteine-lowering therapy may provide cardiovascular protection by enhancing endothelial function, limiting oxidative stress, and reducing procoagulation status.

Adult↗

[Protective effect of Na(+)-H+ exchanger inhibitor cariporide on the injury of vascular endothelial function induced by hypercholesterolemia].

OBJECTIVE: To explore possible effects of cariporide, a new Na(+)-H+ exchanger (NHE-1) inhibitor, against injuries of vascular endothelial function induced by hypercholestrolemia. METHODS: Twenty-two healthy New Zealand rabbits were randomly divided into 3 groups: Six were fed with normal diet as the control; eight were fed with high cholesterol plus high fat diet (HCHF) as the injured control group; and the other eight were fed with HCHF plus cariporide orally (0.1 mg/kg.d-1) as the treated group. The animals were weighed and their blood was drawn from the central ear artery to analyze plasma cholesterol at the pre-experiment and in the 10th week of postexperiment. The animals were killed in the 10th week and the aortic artery was isolated to analyze vascular endothelial function. RESULTS: 1. The HCHF diet significantly attenuated endothelium-dependent relaxation (EDR) of rabbit aortic rings to acetylcholine (ACh), but cariporide significantly protected against HCHF diet-injured EDR of rabbit aortic rings. The dose-response curves elicited by ACh from HCHF diet rabbits were more significantly shifted to the right than those from HCHF diet plus HOE 642-treated rabbits. 2. The HCHF diet and cariporide did not significantly influence the endothelium-independent relaxation of the rabbit artery elicited by sodium nitroprusside (SNP). 3. There was no significant difference in the levels of total cholesterol and LDL-C between the HCHF diet and the HCHF diet plus cariporide rabbits. CONCLUSION: The Na(+)-H+ exchanger (NHE-1) inhibitor can protect against injuries of vascular endothelial function induced by hypercholesterolemia. The activized Na(+)-H+ exchangers of cellular membranes may be involved in injuries of vascular endothelial function induced by hypercholesterolemia.

Animals↗

Impaired endothelial function following a meal rich in used cooking fat.

OBJECTIVES: The purpose of this study was to test the hypothesis that intake of used cooking fat is associated with impaired endothelial function. BACKGROUND: Diets containing high levels of lipid oxidation products may accelerate atherogenesis, but the effect on endothelial function is unknown. METHODS: Flow-mediated endothelium-dependent dilation and glyceryl trinitrate-induced endothelium-independent dilation of the brachial artery were investigated in 10 men. Subjects had arterial studies before and 4 h after three test meals: 1) a meal (fat 64.4 g) rich in cooking fat that had been used for deep frying in a fast food restaurant; 2) the same meal (fat 64.4 g) rich in unused cooking fat, and 3) a corresponding low fat meal (fat 18.4 g) without added fat. RESULTS: Endothelium-dependent dilation decreased between fasting and postprandial studies after the used fat meal (5.9 +/- 2.3% vs. 0.8 +/- 2.2%, p = 0.0003), but there was no significant change after the unused fat meal (5.3 +/- 2.1% vs. 6.0 +/- 2.5%) or low fat meal (5.3 +/- 2.3% vs. 5.4 +/- 3.3%). There was no significant difference in endothelium-independent dilation after any of the meals. Plasma free fatty acid concentration did not change significantly during any of the meals. The level of postprandial hypertriglyceridemia was not associated with change in endothelial function. CONCLUSIONS: Ingestion of a meal rich in fat previously used for deep frying in a commercial fast food restaurant resulted in impaired arterial endothelial function. These findings suggest that intake of degradation products of heated fat contribute to endothelial dysfunction.

Adult↗

[Effect of L-arginine on platelet aggregation, endothelial function adn exercise tolerance in patients with stable angina pectoris].

AIM: Examination of the action of donor NO (L-arginine) on platelet aggregation, endothelial function and exercise tolerance in patients with stable angina of effort (SAE). MATERIAL AND METHODS: 42 patients with SAE (functional class I-II) and 10 healthy volunteers (control group) were assigned to two groups. 22 patients of group 1 were randomized to cross-over. They received cardiket (60 mg/day for 10 days or cardiket (60 mg/day) in combination with L-arginine (15 g/day for 10 days). 20 SAE patients of group 2 and control group received L-arginine (15 g/day for 10 days). In each group blood lipids were examined, and bicycle exercise test (BET) was performed. In addition, platelet aggregation and endothelial function were studied in group 2 and control group before and after the course of L-arginine. RESULTS: Compared to control group, endothelial function significantly improved in group 2 (from 5.0 +/- 2.9 to 7.8 +/- 4.1% vs 7.1 +/- 1.9 to 6.6 +/- 4.8%) (M +/- SD). BET duration increased in all the patients. After ADP addition in concentrations 1.5, 2.0, and 5.0 micromol/l platelet aggregation declined in 17 patients except 3 in whom the aggregation remained unchanged. CONCLUSION: Positive effect of L-arginine on endothelial function, exercise tolerance and platelet aggregation was observed in patients with stable angina of effort (functional class I-II). Therefore, arginine can be recommended as an adjuvant in the treatment of patients with ischemic heart disease.

Angina Pectoris↗

The effects of oral methionine and homocysteine on endothelial function.

BACKGROUND: Raised homocysteine is a risk factor for vascular disease. Homocysteine is formed from methionine, and dietary manipulation of homocysteine in primates and humans with oral methionine is associated with endothelial dysfunction. A cause-effect relation has not been clearly established. AIM: To study the effect of oral methionine and then oral homocysteine on endothelial function. METHODS: 22 healthy adults were recruited for two randomised crossover studies, each containing 11 subjects. Endothelial function was determined by measuring forearm blood flow in response to intra-arterial infusion of acetylcholine (endothelium dependent) and sodium nitroprusside (endothelium independent). Subjects received methionine or placebo (study 1), or homocysteine or placebo (study 2). Methionine and homocysteine were determined at baseline and t = 4 hours. Endothelial function was determined at four hours. The responses to the vasoactive substances are expressed as the area under the curve of change in forearm blood flow from baseline. RESULTS: Study 1: plasma methionine and homocysteine concentrations increased significantly versus placebo. The increases were associated with a reduction of endothelium dependent responses (mean (95% confidence interval), arbitrary units), from 48.8 (95% CI 36.4 to 61.2) to 29.9 (95% CI 18.0 to 41.1), p < 0.04; endothelium independent responses were unchanged. Study 2: homocysteine concentration increased significantly while methionine remained unchanged. Endothelium dependent responses were reduced from 34.6 (95% CI 20.6 to 48.6) to 22.8 (95% CI 12.0 to 33.6), p < 0.03. CONCLUSIONS: Homocysteine and not methionine is responsible for the changes in endothelial function. This supports the hypothesis that homocysteine promotes atherosclerosis by inducing endothelial dysfunction.

Administration, Oral↗

Constituents of red wine other than alcohol improve endothelial function in patients with coronary artery disease.

BACKGROUND: Several studies suggest that red wine is beneficial in coronary artery disease (CAD). Although the long-term effect of moderate red wine consumption on endothelial function is currently under investigation, there is little knowledge about its effect on postprandial endothelial function and haemostatic factors. The aim of the present study was to investigate the postprandial effects of alcohol content and the antioxidants of red wine on endothelial function and fibrinogen levels in CAD patients. METHODS: Fifteen males with angiographically documented CAD were recruited for the study. All volunteers ingested 250 ml of either red wine or de-alcoholized red wine on two different days. Blood samples (for analysis of fibrinogen and blood lipids) were collected and flow-mediated dilatation (FMD) was determined before and 30, 60 and 90 min following consumption of each beverage RESULTS: FMD was higher following the consumption of de-alcoholized red wine [type of wine effect, P=0.05 repeated measures analysis of variance (ANOVA)]. Furthermore, the pattern of the response was different between the two beverages, as FMD increased following the ingestion of de-alcoholized red wine, but it decreased after consumption of regular red wine (type of wine by time interaction effect, P=0.006 repeated measures ANOVA). Fibrinogen concentrations were unaltered CONCLUSIONS: Acute ingestion of red wine without alcohol led to higher FMD than ingestion of regular red wine in CAD patients. The acute effect of red wine on endothelial function may be different than its long-term effect and it could be attributed to its constituents other than alcohol.

Antioxidants↗

Coronary risk factors, endothelial function, and atherosclerosis: a review.

The traditional risk factors for coronary heart disease, which include hypercholesterolemia, hypertension, cigarette smoking, diabetes mellitus, and high-fat diet, have all been associated with impairments in endothelial function. Impaired endothelium function may promote the development of atherosclerosis through its effects on vasoregulation, platelet and monocyte adhesion, vascular smooth muscle cell growth, and coagulation. Increased oxidative stress may be another mechanism by which endothelial dysfunction contributes to atherosclerosis, although controversy exists on this issue. Risk factor modification, particularly lowering elevated concentrations of low-density lipoprotein cholesterol, improves endothelial function. At least seven clinical studies have demonstrated improved endothelial function with cholesterol reductions in patients with markedly elevated or even borderline elevations in cholesterol concentrations, whether or not coronary heart disease is present. Other interventions that improve endothelial function include blood pressure reduction, smoking cessation, and administration of estrogen to postmenopausal women.

Animals↗

Enhanced external counterpulsation improves endothelial function in patients with symptomatic coronary artery disease.

OBJECTIVES: The goal of this study was to examine the effect of enhanced external counterpulsation (EECP) on endothelial function. BACKGROUND: Enhanced external counterpulsation improves symptoms and exercise tolerance in patients with symptomatic coronary artery disease (CAD). However, the exact mechanisms by which this technique exerts its clinical benefit are unclear. METHODS: Reactive hyperemia-peripheral arterial tonometry (RH-PAT), a noninvasive method to assess peripheral endothelial function by measuring reactive hyperemic response in the finger, was performed in 23 patients with refractory angina undergoing a 35-h course of EECP. In each patient RH-PAT measurements were performed before and after the first, at midcourse, and the last EECP session. In addition, RH-PAT response was assessed one month after completion of EECP therapy; RH-PAT index, a measure of reactive hyperemia, was calculated as the ratio of the digital pulse volume during reactive hyperemia divided by that at rest. RESULTS: Enhanced external counterpulsation led to symptomatic improvement (>/=1 Canadian Cardiovascular Society class) in 17 (74%) patients; EECP was associated with a significant immediate increase in average RH-PAT index after each treatment (p < 0.05). In addition, average RH-PAT index at one-month follow-up was significantly higher than that before EECP therapy (p < 0.05). When patients were divided by their clinical response, RH-PAT index at one-month follow-up increased only in those patients who experienced clinical benefit. CONCLUSIONS: Enhanced external counterpulsation enhances peripheral endothelial function with beneficial effects persisting at one-month follow-up in patients with a positive clinical response. This suggests that improvement in endothelial function may contribute to the clinical benefit of EECP in patients with symptomatic CAD.

Aged↗

Is endothelial function of the radial artery altered in human essential hypertension?

There is controversy over whether endothelial function is impaired in human essential hypertension. All studies to date have used measurements of forearm blood flow by plethysmography to assess endothelium-dependent vasodilation and endothelial function. In contrast to these studies, which have focused on resistance vessels, we have determined what effects the endothelium has on underlying smooth muscle cells in conduit arteries by measuring arterial compliance of the radial arteries (change in diameter of radial artery over pressure for each arterial pulse). In 13 normotensive healthy subjects and 11 young patients with essential hypertension, arterial compliance of the radial artery was assessed directly with a new high-precision ultrasonic device (NIUS 02) after infusion of acetylcholine (endothelium-dependent response) or sodium nitroprusside (endothelium-independent response). Arterial compliance of the radial artery was similar at baseline and with increasing doses of acetylcholine and sodium nitroprusside in normotensive and in hypertensive subjects. The increase in arterial compliance from baseline at each individual concentration of acetylcholine and sodium nitroprusside was the same in both normotensive and hypertensive subjects. However, after a single oral dose of a combination of the angiotensin converting enzyme inhibitor spirapril and the calcium entry blocker isradipine, the increase in arterial compliance in response to the maximum dose of intraarterial acetylcholine was enhanced in normotensives (0.38 +/- 1.23 to 0.76 +/- 1.01 mm2/mm Hg x 10(-3), P < .05), but not in hypertensives (+0.41 +/- 1.26 to 0.36 +/- 1.31 mm2/mm Hg x 10(-3), not significant), and differed significantly between normotensive and hypertensive subjects (P < .05). Thus, pharmacologic stimulation disclosed a blunted response of endothelium-dependent action in the arterial compliance of the conduit arteries in hypertensive subjects. This suggests an impaired endothelial function reserve in persons with essential hypertension.

Acetylcholine↗

Optimizing donor heart outcome after prolonged storage with endothelial function analysis and continuous perfusion.

BACKGROUND: By minimizing tissue ischemia, continuous perfusion (CP) during organ transport may increase the safety of "marginal donors." My colleagues and I investigated whether an analysis of donor heart viability predicts recovery of grafts challenged with a 24-hour preservation interval. METHODS: Dog hearts underwent cold static storage (CS) for 8 hours (n = 8) or 24 hours (n = 2) or CP for 24 hours with cold asanguinous, oxygenated solution (n = 8). Myocardial systolic and diastolic function and oxygen and lactate consumption were assessed at base line, during CP, and after Langendorff blood reperfusion. Base line endothelial function was evaluated by the percentage transcoronary change ([coronary sinus - aorta]/aorta) in myeloperoxidase and by platelet function and coronary flow reserve after 20 seconds of coronary artery occlusion. During CP, the endothelium was assessed by transcoronary protein release and coronary resistance. Edema was assessed by weight gain and histology. RESULTS: Base line systolic and metabolic functions showed no relation to post-Langendorff function. Compared with CS, CP resulted in a greater recovery in systolic function (87% +/- 35% vs 65% +/- 15% of baseline; p = 0.05) and a shorter interval required for lactate consumption to exceed production (7.0 +/- 6.8 minutes vs 15.0 +/- 8.9 minutes; p = 0.06). Endothelial function was heterogeneous: coronary flow reserve, 2.7 +/- 0.7; percentage change in myeloperoxidase, -8.4% +/- 6.8%; and change in platelet function, 4.3% +/- 3.5%, as determined by thromboelastography angle at base line. Protein release during CP for 24 hours was 8.3 +/- 7.1 g. Two factors predicted more than 75% systolic pressure generation recovery: use of CP and normal endothelial function (p = 0.05; Fisher's exact test). However, CP led to edema according to histology, weight gain (72 +/- 29 g), and impaired diastolic function versus CS (end-diastolic pressure-volume relationship, 1.4 +/- 0.4 mm Hg/mL vs 0.8 +/- 0.3 mm Hg/mL; p = 0.08). CONCLUSIONS: Better systolic function despite 16 hours' more preservation than cold storage corroborates the idea that CP supports aerobic metabolism at physiologically important levels. Viability analysis focused on endothelial function and identified organs that were able to tolerate this 24-hour preservation interval.

Aerobiosis↗