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Off-pump CABG reduces complement activation but does not significantly affect peripheral endothelial function: a prospective randomized study.

OBJECTIVE: Cardiac surgery initiates a systemic inflammatory response, which may affect endothelial function. The aim of this study was to investigate if off-pump CABG (OPCAB) reduces the postoperative inflammatory response and affects endothelial function less than conventional on-pump CABG. DESIGN: Fifty-two patients submitted for elective CABG were included in a prospective, randomized study. Twenty-six patients were operated with, and 26 without cardiopulmonary bypass (CPB). Plasma levels of complement (C3a), cytokines (IL-8, TNF-alpha), endothelin-1 and neopterin were measured before and during surgery and 2 and 24 h after surgery. Endothelial function was assessed by forearm plethysmography and acetylcholine infusion in 30 patients 2-4 h after surgery. RESULTS: C3a and neopterin concentrations were significantly higher during and early after surgery in the CPB group while TNF-alpha and IL-8 tended to be higher in the CPB group but the difference did not reach statistical significance. Endothelial function did not differ significantly between the two groups. CONCLUSION: OPCAB reduces complement activation compared with on-pump CABG but does not significantly affect TNF-alpha and IL-8 release or endothelial function.

Acetylcholine↗

Fluvastatin reduces atherogenic lipids without any effect on native endothelial function early after kidney transplantation.

BACKGROUND: Cardiovascular risk is greatly increased in renal transplant recipients. 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase inhibitor (statin) therapy may reduce cardiovascular risk by improving both dyslipidemia and endothelial function. We therefore performed this study to assess the effect of fluvastatin on endothelial function in renal transplant recipients. METHODS: This randomized, placebo-controlled, double-blind designed study investigated the effect of fluvastatin on endothelial function. Thirty-seven recipients received fluvastatin 40 mg/d and 35 received placebo during the first 12 wk following transplantation. All patients initially received cyclosporin A, prednisolone and azathioprine. At the end of treatment, endothelial function was assessed in the forearm skin microvasculature by laser Doppler flowmetry following acetylcholine stimulation. Samples were taken for measurements of serum lipids and vasoactive markers. RESULTS: There were no differences in endothelial function between fluvastatin recipients and controls, AUCACh was 656 +/- 479 and 627 +/- 518 AU min, respectively (fluv vs. control, p > 0.65). In the placebo limb, total cholesterol and LDL cholesterol increased 22 +/- 12% and 22 +/- 18%, respectively in the first 12 wk following transplantation. The respective values were 18 +/- 13% (p = 0.010) and 34 +/- 19% (p = 0.0013) lower at 12 wk in the fluvastatin treated patients. Plasma ET-1, BigET-1 and urinary excretion of cGMP were not significantly different between treatment groups (p > 0.55). CONCLUSION: Although fluvastatin 40 mg/d significantly lowers cholesterol it does not affect endothelial function the first 3 months after renal transplantation. The lack of effect on endothelial function is consistent with a lack of effect on vasoactive substances.

Cholesterol↗

Heart failure etiology affects peripheral vascular endothelial function after cardiac transplantation.

OBJECTIVES: The goal of this study was to examine the effect of heart failure etiology on peripheral vascular endothelial function in cardiac transplant recipients. BACKGROUND: Peripheral vascular endothelial dysfunction occurs in patients with heart failure of either ischemic or nonischemic etiology. The effect of heart failure etiology on peripheral endothelial function after cardiac transplantation is unknown. METHODS: Using brachial artery ultrasound, endothelium-dependent, flow-mediated dilation (FMD) was assessed in patients with heart failure with either nonischemic cardiomyopathy (n = 10) or ischemic cardiomyopathy (n = 7), cardiac transplant recipients with prior nonischemic cardiomyopathy (n = 10) or prior ischemic cardiomyopathy (n = 10) and normal controls (n = 10). RESULTS: Patients with heart failure with either ischemic cardiomyopathy or nonischemic cardiomyopathy had impaired FMD (3.6 +/- 1.0% and 5.1 +/- 1.2%, respectively, p = NS) compared with normal subjects (13.9 +/- 1.3%, p < 0.01 compared with either heart failure group). In transplant recipients with antecedent nonischemic cardiomyopathy, FMD was markedly higher than that of heart failure patients with nonischemic cardiomyopathy (13.0 +/- 2.4%, p < 0.001) and similar to that of normal subjects (p = NS). However, FMD remained impaired in transplant recipients with prior ischemic cardiomyopathy (5.5 +/- 1.5%, p = 0.001 compared with normal, p = 0.002 vs. transplant recipients with previous nonischemic cardiomyopathy). CONCLUSIONS: Peripheral vascular endothelial function is normal in cardiac transplant recipients with antecedent nonischemic cardiomyopathy, but remains impaired in those with prior ischemic cardiomyopathy. In contrast, endothelial function is uniformly abnormal for patients with heart failure, regardless of etiology. These findings indicate that cardiac transplantation corrects peripheral endothelial function for patients without ischemic heart disease, but not in those with prior atherosclerotic coronary disease.

Adult↗

Losartan, an angiotensin type 1 receptor antagonist, improves endothelial function in non-insulin-dependent diabetes.

OBJECTIVES: The present study examined the effect on forearm endothelial function of an angiotensin II type 1 receptor antagonist, losartan, in subjects with non-insulin-dependent diabetes mellitus (NIDDM). BACKGROUND: Angiotensin-converting enzyme (ACE) inhibition with enalapril improves acetylcholine (ACh)-dependent endothelial function in patients with NIDDM. This could be mediated through angiotensin II and the type 1 receptor or could be due to inhibition of kininase II and a bradykinin preserving effect. It is therefore relevant to determine whether a type 1 receptor antagonist improves endothelial function. METHODS: The influence of losartan (50 mg daily for four weeks) on endothelium-dependent and independent vasodilator function was determined in 9 NIDDM subjects using a double-blinded placebo-controlled crossover protocol. Forearm blood flow was measured using strain-gauge plethysmography. RESULTS: Losartan significantly decreased infused arm vascular resistance in response to three incremental doses of intrabrachial acetylcholine (p < 0.05, ANOVA). The forearm blood flow ratio (flow in infused to noninfused arm) was also increased (p < 0.01). Responses to sodium nitroprusside and monomethyl arginine were not significantly changed. CONCLUSIONS: Losartan administration at 50 mg per day improved endothelium-dependent dilation of resistance vessels in patients with NIDDM. That is, blockade of the angiotensin II type 1 receptors improves endothelial function in NIDDM. At least some of the similarly beneficial effect of ACE inhibition is probably mediated also through the angiotensin II-type 1 receptor pathway. The use of a type 1 receptor antagonist seems a reasonable alternative to an ACE inhibitor to maintain endothelial function in NIDDM subjects.

Angiotensin Receptor Antagonists↗

Effect of the alpha-adrenergic blocker, doxazosin, on endothelial function and insulin action.

Essential hypertension is associated with impairment of both endothelial function and insulin action, and this has provided rationale for the use of antihypertensive agents that are at least neutral, if not beneficial, in these areas. This study examines the effect of the alpha-adrenergic blocker, doxazosin, on endothelial function and insulin action. Sixteen patients with essential hypertension were recruited with 13 (3 men/10 women; median age, 55 years; range, 38 to 65 years) completing the study. A double-blind, placebo-controlled crossover study design was used. After a 6-week placebo run-in, there were two 12-week treatment periods of either placebo or doxazosin, separated by a 6-week wash out period. Subjects were studied at the end of each treatment period with endothelial function assessed by forearm plethysmography and insulin action by the hyperinsulinemic clamp technique. Blood pressure was significantly lowered by doxazosin (doxazosin 144 +/-3/86 +/- 2 mm Hg; placebo 159 +/- 3/96 +/- 1 mm Hg, P <.005 for both systolic and diastolic pressure; mean +/- SEM). Baseline forearm blood flow (FBF) was unchanged (doxazosin 4.9 +/- 0.9; placebo 4.0 +/- 0.7 mL x 100 mL(-1) x min(-1), P >.05), however, FBF responses (area under dose response curve, percentage change in infused:control arm ratio) to acetylcholine (endothelium-dependent vasodilation) were improved by doxazosin (doxazosin 58.6 +/- 11.7 standard units [SU]; placebo 22.1 +/- 7.0 SU, P =.03) with responses to sodium nitroprusside (endothelium-independent vasodilation) unchanged (doxazosin 40.3 +/- 5.5 SU; placebo 46.3 +/- 8.1 SU, P >.05). Exogenous glucose infusion rates to maintain euglycemia during hyperinsulinemia were not significantly different (doxazosin 30.4 +/- 0.9; placebo 32.3 +/- 1.0 micromol x kg(-1) min(-1), P >.05). Suppression of postabsorptive endogenous glucose production by insulin was also unchanged by treatment (doxazosin 65.6% +/- 7.5% suppression; placebo 68.3% +/- 11.2% suppression, P >.05). Doxazosin has a neutral effect on both peripheral and hepatic insulin action, but improves endothelium-dependent vasodilation. These results indicate that doxazosin can be used safely in patients with insulin resistance, while its positive effect on endothelial function may lessen the subsequent incidence of atherosclerosis.

Acetylcholine↗

Resistance vessel endothelial function in healthy humans during transient postprandial hypertriglyceridemia.

A single high-fat meal transiently impairs conduit vessel endothelial function. We tested the hypothesis that transient moderate hypertriglyceridemia by consumption of a high-fat meal impairs forearm resistance vessel endothelial function. Fifteen healthy persons consumed isocaloric high- and low-fat meals (900 calories, 50 and 4 g of fat, respectively) on 2 separate days. Endothelial function in forearm resistance vessels was assessed using blood flow responses to local intra-arterial infusion of nitroprusside, acetylcholine, bradykinin, and verapamil from 1 to 3 hours after the meal. Serum triglycerides increased from 112 +/- 15 mg/dl preprandially to 165 +/- 20 mg/dl 4 hours after the high-fat meal, which was a significantly larger increase than levels after the low-fat meal (p = 0.01). Total cholesterol, high-density lipoprotein, low-density lipoprotein, and very low density lipoprotein (VLDL) cholesterol concentrations did not change. There was no difference between high- and low-fat meals in vasodilation to the endothelium-dependent agents acetylcholine (low fat, 337 +/- 47%; high fat, 356 +/- 88%; p = 0.81) and bradykinin (low fat, 312 +/- 39%; high fat, 403 +/- 111%; p = 0.28), or to the endothelium-independent vasodilators nitroprusside (low fat, 313 +/- 27%; high fat, 355 +/- 42%; p = 0.31) and verapamil (low fat, 292 +/- 48%; high fat, 299 +/- 36%; p = 0.18). Thus, transient hypertriglyceridemia due to a high-fat meal does not impair resistance vessel endothelial function. These data contrast with previous studies in conduit vessels that showed substantial endothelial dysfunction. Therefore, although high-fat intake may contribute to large artery atherosclerosis, it probably does not predispose to hypertension or ischemia through resistance vessel dysfunction. The results suggest that the mechanism by which triglyceride-rich lipoproteins impair endothelial function in conduit vessels is not operative in resistance vessels.

Acetylcholine↗

Impaired endothelial function in young women with premature ovarian failure: normalization with hormone therapy.

Normal menopause is associated with vascular endothelial dysfunction, an early stage of atherosclerosis. The effect of premature ovarian failure (or premature menopause) on endothelial function in young women is unknown. Endothelial function was assessed in 18 women with premature ovarian failure before and after 6 months of hormone therapy and was compared with the endothelial function of 20 age- and body mass index-matched premenopausal women. Brachial artery diameter was measured both during hyperemia (an index of endothelium-dependent vasodilation) and in response to glyceryl trinitrate (an index of endothelium-independent vaso-dilation). Flow-mediated dilation was significantly lower in women with premature ovarian failure at baseline (increase in brachial artery diameter during hyperemia by 3.06 +/- 4.33%) than in control women (increase by 8.84 +/- 2.15%; P < 0.0005). Glyceryl trinitrate-induced vasodilation did not differ between the groups. After hormone therapy for 6 months, flow-mediated dilation was improved in women with premature ovarian failure, increasing by more than 2-fold (7.41 +/- 3.86%; P < 0.005 compared with pretreatment) and reaching normal values (P not significant compared with control women). Glyceryl trinitrate-induced vasodilation did not change after treatment in women with premature ovarian failure. Young women with premature ovarian failure have significant vascular endothelial dysfunction. Early onset of endothelial dysfunction associated with sex steroid deficiency may contribute to the increased risk of cardiovascular disease and mortality in young women with premature ovarian failure. Hormone therapy restores endothelial function within 6 months of treatment.

Adult↗

Effects of improved glycaemic control on endothelial function in patients with type 2 diabetes.

BACKGROUND: Patients with type 2 diabetes have abnormal endothelial function but it is not certain whether improvements in glycaemic control will improve endothelial function. AIMS: To examine the effects of short-term improved glycaemic control on endothelial function in patients with inadequately regulated type 2 diabetes mellitus. METHODS: Forty-three patients with type 2 diabetes and glycosylated haemoglobin (HbA1c) > 8.9% were randomized to either improved glycaemic control (IC) n = 21 or usual glycaemic control (UC) n = 22 for 20 weeks. Using high-resolution B-mode ultrasound, brachial artery flow-mediated dilatation (FMD) and glyceryl trinitrate-mediated dilatation (GTN-D) were measured at baseline and 20 weeks later. RESULTS: After 20 weeks, HbA1c was significantly lower in IC versus UC (IC 8.02 +/- 0.25% versus UC 10.23 +/- 0.23%, P < 0.0001) but changes in FMD and GTN-D were not different between the groups (FMD at baseline and week 20 IC 5.1 +/- 0.56% versus 4.9 +/- 0.56% and UC 4.2 +/- 0.51% versus 3.1 +/- 0.51%; P = 0.23: GTN-D IC 12.8 +/- 1.34% versus 10.4 +/- 1.32% and UC 13.7 +/- 1.2% versus 12.7 +/- 1.23%; P = 0.39). In the IC group weight increased by 3.2 +/- 0.8 kg after 20 weeks compared to 0.02 +/- 0.70 kg in UC (P = 0.003). Blood pressure and serum lipid concentrations did not change in either group. CONCLUSIONS: Short-term reduction of HbA1c levels did not appear to affect endothelial function in patients with type 2 diabetes and previously poorly regulated glycaemic control.

Blood Glucose↗

Evaluation of endothelial function in postkeratoplasty eyes.

BACKGROUND AND OBJECTIVE: To evaluate corneal endothelium function in postkeratoplasty eyes. PATIENTS AND METHODS: Endothelial function was assessed in 23 clear corneal grafts. After a measurable corneal edema was induced by soft contact lens wear, serial pachometric readings were taken for 3 hours to arrive at the percentage recovery per hour (PRPH) index. RESULTS: The assessed PRPH values of the clear corneal grafts ranged from 24.6% to 73.0%, with a mean value of 51.8% +/- 12.2%. Of the six corneal grafts that demonstrated an initial PRPH value of less than 47.5%, four became edematous within 6 months of follow-up. CONCLUSIONS: Assessed PRPH, as an in vivo-measured index of endothelial function, is a valuable method for monitoring endothelial function in postkeratoplasty eyes. The low PRPH index identifies eyes at risk of spontaneous nonimmunologic failures.

Corneal Edema↗

Endothelial function as intermediary endpoint in hypertension: comments.

The attractiveness of endothelial function as an intermediary or surrogate endpoint in hypertension and antihypertensive therapy, respectively, is obviously based on the widely accepted response-to-injury theory. According to the theory, endothelial functions are disturbed early on in the development of atherosclerosis and, by inference, an improvement of endothelial function should be, at least in theory, an important step towards prevention or retardation of the atherosclerotic process. However, when scrutinizing studies performed to this end in hypertension a number of unresolved issues remain.

Antihypertensive Agents↗

Effect of chronic oral supplementation with vitamins on the endothelial function in chronic smokers.

Cigarette smoking has been associated with endothelial dysfunction including impaired endothelium-dependent flow-mediated dilation (FMD). In cigarette smokers, increased oxygen-derived free radicals have been suspected of being one of the major causes of endothelial dysfunction, owing possibly to the inactivation of nitric oxide by free radicals. Vitamins C and E are widely used antioxidant vitamins, which have also been reported to effectively improve the endothelial function in several conditions. To test the effect of moderate-term oral antioxidant vitamin supplementation on the endothelial function in smokers, the authors evaluated the combined effect of vitamins C and E, administered in normal dosages, on FMD in young male smokers. A prospective interventional study was performed. In 15 healthy male subjects (mean age, 24.4 +/-2.5 years old). They studied FMD in the brachial artery by using high-resolution ultrasound. The vascular effects of moderate-term oral supplementation with vitamin C (1.0 g/day) and vitamin E (500 mg/day) were determined during reactive hyperemia, which causes endothelium-dependent FMD. They performed a vascular function study 3 times including before vitamin supplement, after 25 days of vitamin supplement, and 4 weeks after the cessation of the vitamin supplement. The flow-mediated dilator response measurements were repeated twice a day before vitamin supplements, and the repeatability obtained from these measurements was found acceptable (variability of FMD <2%). The oral antioxidant vitamin supplement significantly restored FMD (3.8 +/-2.2% vs 5.9 +/-2.5%; p<0.05), however, this effect disappeared 4 weeks after the vitamin supplementations ended. The combined usual dosage of vitamins C and E supplements was found to improve the endothelial function in chronic smokers.

Administration, Oral↗

Recovery of endothelial function after vitrification of cornea at -110 degrees C.

PURPOSE: To determine whether endothelial function is retained after ice-free cryopreservation of cornea by vitrification at -110 degrees C. METHODS: Rabbit corneas, mounted on support rings, were exposed to a solution containing 6.8 M propane-1,2-diol (PROH) and cooled at approximately 7 degrees C/min to -110 degrees C, which was below the glass transition temperature (T(g)) of the solution. After rewarming at approximately 12 degrees C/min and removal of the PROH, endothelial function was assessed by monitoring corneal thickness during perfusion at 34 degrees C. RESULTS: Addition and removal of 6.8 M PROH without cooling to -110 degrees C did not markedly impair endothelial function, although corneas were thicker than control samples. There was no visible crystallization of ice during cooling to -110 degrees C; but a few small, discrete sites of crystallization remote from the endothelium, were observed during warming. After removal of the PROH, corneas approximately doubled in thickness during the first 3 hours of perfusion, but they then started to thin, which suggested active control of stromal hydration by the endothelium. This was confirmed in a further set of experiments by removal of bicarbonate ions from the perfusate at this point, which resulted in further swelling at +58 +/- 2 microm/hour (SD; n = 4). Restoring bicarbonate to the perfusate halted this swelling, and the corneas then thinned at -13 +/- 2 microm/hour (n = 4). Morphologically, staining with trypan blue and alizarin red S showed an apparently intact endothelial monolayer. CONCLUSIONS: Rabbit corneal endothelium tolerated exposure to 6.8 M PROH, and endothelial function was evident after vitrification at -110 degrees C. Preliminary morphologic results with vitrified human cornea also showed retention of endothelium.

Aged↗

Effect of angiotensin-converting enzyme inhibition on endothelial function and insulin sensitivity in hypertensive patients.

INTRODUCTION: Evidence suggests an association between insulin resistance, hypertension and impaired endothelial function. Studies have shown that insulin resistance precedes the development of hypertension. By improving insulin sensitivity, it may be possible to improve hypertension and the subsequent damage to vessel walls. Some data indicates beneficial effects of angiotensin-converting enzyme (ACE) inhibitors on insulin sensitivity and endothelial function. We aimed to investigate these effects of ACE inhibition in the same group of patients with essential hypertension. MATERIALS AND METHODS: Nine non-smoking, untreated hypertensive patients (38.3+9 years, 4/5 male/female) and 12 age-matched healthy subjects (35.2+6.7 years, 5/7 male/female) were included in the study. Hypertensive patients were given enalapril maleate (5 40 mg/day) for six months. The following parameters were studied at baseline and at the end of treatment period. Whole body insulin sensitivity was measured by a formula derived from an oral glucose tolerance test and named as the insulin sensitivity index (ISI). Insulin was measured by chemiluminescence and glucose by a glucose oxidase method. Endothelial function was evaluated as flow-mediated dilatation (FMD) of the brachial artery by ultrasonography and expressed as a percentage change relative to baseline diameter. Endothelial- independent vasodilatation was measured after sublingual nitroglycerine. RESULTS: FMD was impaired in the hypertensive group compared with healthy subjects (7.3+3.1% vs. 15.3+4.8%, p<0.0005), and ISI values were 1.18+0.6 vs. 4.4+0.9 (p<0.0001) respectively. Both insulin sensitivity and FMD improved after the treatment period compared with baseline values, FMD increased from 7.3+3.1% to 16.0+2.9% (p<0.0005) and ISI from 1.18+0.6 to 4.2+1.0 (p<0.0001). FMD and ISI showed a significant positive correlation (r=0.67, p<0.001) in the hypertensive group. CONCLUSIONS: Patients with essential hypertension have impaired endothelial function and decreased whole body insulin sensitivity compared with healthy subjects. Treatment for six months with enalapril maleate seems to improve both FMD and ISI. This study confirms the beneficial effects of ACE inhibition on both endothelial function and insulin sensitivity tested in the same group of essential hypertensive patients. The mechanism of these favourable effects of ACE inhibition needs to be clarified.

Adult↗

Endothelial function in hypertension: role of gender.

Endothelium plays an important role in the modulation of vascular tone and structure mainly through the production of nitric oxide (NO), which causes local vasodilation and counteracts processes leading to atherothrombosis. A dysfunctioning endothelium, characterized by reduced NO availability owing to impairment of the L-arginine-NO pathway and, above all, to production of oxygen free radicals, can impair local vasomotion and promote the development of atherosclerosis and of atherothrombotic vascular events. Aging is associated with endothelial dysfunction both in normotensive subjects and in hypertensive patients, and hypertension seems to induce earlier onset of those mechanisms (i.e. impairment of the L-arginine-NO pathway and oxidative stress) that cause age-related endothelial dysfunction. Premenopausal normotensive women are protected against the deleterious effect of aging on endothelial function, and age-related impairment of endothelial function is attenuated in premenopausal hypertensive women. This protective effect on endothelial function seems to be mediated by endogenous estrogen, which preserves NO availability by activating the L-arginine-NO pathway in normotensive women and, again, by activating this pathway but above all by inhibiting oxidative stress in hypertensive women. Thus, the protective effect of endogenous estrogen on endothelial function could be a plausible mechanism contributing to the lower cardiovascular risk of premenopausal women. Finally, whether endogenous androgen can impair endothelial function is still an unsolved issue since data concerning the effect of testosterone on endothelial function are scanty and contradictory.

Animals↗

Cardiovascular risk factor profiles and endothelial function in coronary artery disease patients treated with statins.

Although endothelial dysfunction is associated with cardiovascular risk factors and is improved by cholesterol-lowering therapy, the relationship between endothelial function and cardiovascular risk factor profiles has not been fully investigated in coronary artery disease patients who have been treated with statins. We investigated endothelial function in male hypercholesterolemic patients (n=53) who underwent statin therapy over 6 months in a cross-sectional study. Patients were classified into three groups based on the results of coronary angiography: a normal coronary artery group (n=15), an angina pectoris group (n=20) and a myocardial infarction group (n=18). Endothelial function was assessed by measuring flow-mediated dilatation after reactive hyperemia in the brachial artery, and serum lipid, lipoprotein (a), glucose and insulin levels were measured. Significant associations were observed between the status of coronary disease and systolic blood pressure, lipoprotein (a), glucose and insulin levels (p <0.05, respectively), and the levels of these risk factors in the myocardial infarction group were higher than those in the other groups. Flow-mediated dilatation was also associated with the status of coronary disease (p <0.05), and the myocardial infarction group showed the lowest levels of flow-mediated dilatation (p <0.05). Flow-mediated dilatation was negatively correlated with systolic and diastolic blood pressures, serum levels of lipoprotein (a), glucose and insulin, and the status of coronary disease. Stepwise multiple regression analysis also revealed that lipoprotein (a), diastolic blood pressure and the status of myocardial infarction were significantly correlated with impaired vasodilatation. Serum lipids, age and smoking habit were independent of flow-mediated dilatation. In conclusion, even after cholesterol-lowering treatment, male patients with myocardial infarction still had endothelial dysfunction, and higher levels of lipoprotein (a) may be associated with endothelial dysfunction in such patients.

Aged↗

Exercise training improves vascular endothelial function in patients with type 1 diabetes.

OBJECTIVE-Impaired endothelial function of resistance and conduit arteries can be detected in patients with type 1 diabetes. We studied whether a persistent improvement of endothelial function can be achieved by regular physical training. RESEARCH DESIGN AND METHODS-The study included 26 patients with type 1 diabetes of 20 +/- 10 years' duration and no overt angiopathy; 18 patients (42 +/- 10 years old) participated in a bicycle exercise training program, and 8 patients with type 1 diabetes (33 +/- 11 years old) served as control subjects. Vascular function of conduit arteries was assessed by flow-mediated and endothelium-independent dilation of the brachial artery and of resistance vessels by the response of ocular fundus pulsation amplitudes to intravenous N(G)-monomethyl-L-arginine (L-NMMA) at baseline, after 2 and 4 months of training, and 8 months after cessation of regular exercise. RESULTS-Training increased peak oxygen uptake (VO(2max)) by 13% after 2 months and by 27% after 4 months (P = 0.04). Flow-mediated dilation (FMD) of the brachial artery increased from 6.5 +/- 1.1 to 9.8 +/- 1.1% (P = 0.04) by training. L-NMMA administration decreased fundus pulsation amplitude (FPA) by 9.1 +/- 0.9% before training and by 13.4 +/- 1.5% after 4 months of training (P = 0.02). VO(2max), FMD, and FPA were unchanged in the control group. Vascular effects from training were abrogated 8 months after cessation of exercise. CONCLUSIONS-Our study demonstrates that aerobic exercise training can improve endothelial function in different vascular beds in patients with long-standing type 1 diabetes, who are at considerable risk for diabetic angiopathy. However, the beneficial effect on vascular function is not maintained in the absence of exercise.

Adult↗

Regular physical exercise improves endothelial function in heart transplant recipients.

BACKGROUND: Impaired endothelial function is detectable in heart transplant (HTX) recipients and regarded as risk factor for coronary artery disease. We have studied whether endothelial function can be improved in HTX patients participating in a regular physical training program as demonstrated in patients with chronic heart failure, hypertension and coronary artery disease. METHODS: Male HTX patients and healthy, age-matched controls were studied. Seven HTX patients (age: 60 +/- 6 yr; 6 +/- 2 yr of HTX) participated in an outpatient training program, six HTX patients (age: 63 +/- 8 yr; 7 +/- 1 yr of HTX) maintained a sedentary lifestyle without regular physical exercise since transplantation. A healthy control group comprised six subjects (age: 62 +/- 6 yr). Vascular function was assessed by flow-mediated dilation of the brachial artery (FMD). Systemic haemodynamic responses to intravenous infusion of the endothelium independent vasodilator sodium nitroprusside (SNP) and to NG-monomethyl-L-arginine (L-NMMA), an inhibitor of constitutive nitric oxide synthase, were also measured. RESULTS: Resting heart rate was significantly lower (p < 0.05) in healthy controls (66 +/- 13) than in the HTX training group (83 +/- 11) and in non-training HTX patients (91 +/- 9), baseline blood pressure also tended to be lower in healthy subjects and in the training HTX patients. FMD was significantly higher (p < 0.05) in the control group (8.4 +/- 2.2%) and in the training group (7.1 +/- 2.4%), compared with non-training HTX patients (1.4 +/- 0.8%). The response of systolic blood pressure (p = 0.08) and heart rate (p < 0.05) to L-NMMA was reduced in sedentary HTX patients compared with healthy controls and heart rate response to SNP was also impaired in sedentary HTX patients. DISCUSSION: Regular aerobic physical training restores vascular function in HTX patients, who are at considerable risk for developing vascular complications. This effect is demonstrable in conduit and systemic resistance arteries.

Blood Pressure↗

Acute administration of L-arginine does not improve arterial endothelial function in chronic renal failure.

BACKGROUND: Reduced activity of the nitric oxide (NO) pathway has been implicated in the endothelial dysfunction that occurs in patients with renal failure. NO is generated from L-arginine by NO synthase, and certain uremic toxins including asymmetrical dimethyl-L-arginine (ADMA), inhibit NO synthase and might contribute to endothelial dysfunction. We hypothesized that exogenous L-arginine might improve endothelial function in patients with renal failure by overcoming the effects of uremic toxins. METHODS: Endothelial function of the forearm resistance vasculature was assessed using plethysmography to measure the dilator response to intra-arterial acetylcholine (25 to 100 nmol/min). Endothelial function of radial and brachial arteries was assessed using vascular ultrasound to measure the dilator response to flow during reactive hyperemia (flow-mediated dilation; FMD). Studies were performed before and after administration of L-arginine by intra-arterial infusion (50 micromol/min) in 8 pre-dialysis patients or by intravenous infusion (10 g) in 18 hemodialysis patients. RESULTS: Local L-arginine did not improve the dilator response of forearm resistance vessels (AUC 23.1 +/- 6.4 pre, 23.1 +/- 5.1 post; P = 0.9) or FMD of the radial artery (6.5 +/- 1.2% pre, 6.3 +/- 0.8% post; P = 0.8). Systemic L-arginine did not improve FMD of the brachial artery (4.1 +/- 1.1% pre, 3.0 +/- 1.1% post; P = 0.07). These data demonstrate that acute local or systemic administration of L-arginine did not improve endothelial function in resistance or conduit arteries of patients with chronic renal failure. CONCLUSION: The results suggest that competitive inhibition of nitric oxide synthase (NOS) by circulating inhibitors is not the principal explanation for impaired endothelial dilator function in chronic renal failure.

Adult↗