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Effects of diet and serotonergic agonist on hepatic apolipoprotein B-100 secretion and endothelial function in obese men.

We studied the effects of a hypocaloric diet with or without a serotonergic agonist (dexfenfluramine, Df) on the hepatic secretion of very-low-density-lipoprotein (VLDL) apoB and endothelial function of the forearm microcirculation in 20 viscerally obese men. The kinetics of VLDL apoB were studied using an infusion of 1-((13)C)-leucine. Isotopic enrichment of apo B was measured using gas-chromatography mass spectrometry, and a multicompartmental model was used to estimate kinetic functions. Forearm vasodilatation was measured following an ischaemic stimulus using strain-gauge plethysmography, and visceral adipose tissue mass using magnetic resonance imaging. Compared with leaner subjects, the obese men had significantly higher hepatic apoB secretion (p<0.05) and lower forearm flow debt repayment (p<0.001). Both treatments produced similar decreases (p<0.05) in body weight, waist circumference, visceral adipose tissue and fasting plasma insulin. With diet alone, there was a significant decrease (p<0.05) in the plasma concentration and pool size hepatic secretion rate of VLDL apoB, as well as a significant increase (p<0.05) in post-ischaemic flow debt repayment. With diet plus Df, there were parallel responses in these variables, but only decreased forearm vascular resistance (p<0.05) was statistically significant. Combining both data sets, there was a highly significant reduction in hepatic apoB secretion rate (20. 9+/-2.0 vs. 14.7+/-1.6 mg/kg fat-free mass/day, p=0.005), as well as an increase in both maximal forearm blood flow (16.8+/-7.5 vs. 22. 2+/-8.5 ml/100 ml/min, p=0.006) and flow debt repayment (3.5+/-2.1 vs. 5.4+/-2.8 ml/100 ml, p=0.01), and a decrease in vascular resistance (6.7+/-3.7 vs. 5.1+/-4.4 mmHg/ml/100 ml/min, p=0.007). Obese men have increased hepatic secretion of apoB and endothelial dysfunction of the forearm microcirculation, and decreasing their visceral adipose tissue mass by diet (with or without a serotonergic agonist) improves these abnormalities. This may provide a mechanistic basis for the reduction in cardiovascular risk in obese patients who lose weight.

Apolipoproteins B↗

Autonomic, endothelial function and the analysis of gait in patients with type 1 and type 2 diabetes.

Ten control subjects and 20 subjects with type 1 and type 2 diabetes were examined to compare autonomic, endothelial function and gait characteristics while walking in a linear path and during turns. To measure deviations in gait, timing was recorded from foot sensors worn in the shoes and from accelerometers (2 axis) mounted on the head, shoulder, hips, knees and ankles, bilaterally. The results of the experiments showed that subjects with diabetes took additional steps when walking in a linear path and during turns. They also took significantly more time to walk a given distance (greater than 30%) than control subjects. Accelerometry data also revealed that there was an increase in flexion/extension and lateral movement at the major joints in the body. Joint movements at the hip, knee, ankle and shoulders showed a 50 and 100% increase in movement at the joints during gait for subjects with diabetes compared to control subjects. These findings suggest that individuals with type 1 and type 2 diabetes can have significant problems in both the timing and quality of gait. These impairments are likely secondary to dysfunction of the vestibular, somatosensory and autonomic system in diabetics. Data here showed at least a 50% impairment in local tissue blood flow and autonomic function in subjects in both type 1 and type 2 diabetes compared to control subjects.

Adult↗

Effect of hormone replacement therapy on plasma lipoproteins and apolipoproteins, endothelial function and myocardial perfusion in postmenopausal women with estrogen receptor-alpha IVS1-397 C/C genotype and established coronary artery disease.

UNLABELLED: Effect of hormone replacement (HRT) therapy on plasma lipoproteins and apolipoproteins, endothelial function and myocardial perfusion in postmenopausal women with estrogen receptor-alpha (ER-alpha) IVS1-397 C/C genotype and established coronary artery disease. BACKGROUND/AIMS: Associations between various ER-alpha polymorphisms and clinical phenotypes have been studied, including lipid levels and coronary atherosclerosis. We studied 48 postmenopausal women to determine the effect of ER-alpha IVS1-397 polymorphism on the response to treatment with HRT. METHODS: The study had a randomized, double-blind, placebo-controlled and crossover design. Patients were divided into two groups according to ER-alpha IVS1-397 polymorphism: CC genotype (n = 9); CT or TT genotype (n = 39). HRT was given continuously for 4 weeks, with 4-week washout periods between the treatment periods. Brachial artery Doppler and Tl-201 scintigraphy were performed at the end of each treatment period. RESULTS: HRT lowered total cholesterol, LDL-c and Apo-B levels from baseline values (all p < 0.05) and to a similar degree in CC and CT/TT genotype patients. HRT increased estradiol, HDL-c and Apo A-1 levels relative to baseline values, but to a greater degree in CC patients (p = 0.04, 0.05 and 0.04 by ANOVA, respectively). HRT increased peak forearm blood flow, brachial artery diameter during reactive hyperemia and endothelium-dependent dilation in both groups, but to a greater degree in CC patients (p = 0.03, 0.03 and 0.04 by ANOVA, respectively). Summed stress and rest scores were also more markedly reduced in CC patients (p = 0.04 and 0.05, respectively). The increase in estradiol levels was strongly correlated with the improvement in endothelium-dependent dilation (r = 0.66, p < 0.01), which in turn showed negative correlation with summed stress (r = -0.62, p < 0.01) and rest scores (r = -0.52, p < 0.05) in the CC genotype group. CONCLUSION: These data suggest that the improvement in endothelium-dependent dilation and the reduction in perfusion abnormalities by increasing estradiol levels with HRT in postmenopausal women with coronary artery disease may differ with respect to different genotypes, the effect being more prominent in those patients with ER-alpha IVS1-397 CC genotype.

Apolipoproteins↗

Noninvasive test of microvascular endothelial function in normal and hypertensive pregnancies.

OBJECTIVE: To examine microvascular endothelial cell function in vivo in pre-eclampsia. DESIGN: Iontophoresis of acetylcholine (Ach), which gives rise to endothelial cell dependent vasodilatation, and of sodium nitroprusside (SNP), which elicits vasodilatation independently of functioning vascular endothelium. SETTING: Södersjukhuset, Stockholm, Sweden. SUBJECTS: Ten pre-eclamptic patients, ten healthy pregnant women and ten healthy nonpregnant women were examined. MAIN OUTCOME MEASURES: The degree of vasodilatation following iontophoretic administration of Ach compared with SNP was recorded with a laser Doppler technique, the data being analysed on a personal computer. RESULTS: Both Ach and SNP administration resulted in marked vasodilatation; the magnitude of the vasodilatation was similar in the three groups of women. CONCLUSION: Following iontophoretic administration of endothelial cell dependent or independent vasodilatators, laser Doppler measurement of blood flow demonstrated no microvascular endothelial cell dysfunction in pre-eclamptic women.

Acetylcholine↗

Urocortin protects coronary endothelial function during ischemia-reperfusion: a brief communication.

Urocortin is a vasodilator peptide related to corticotrophin-releasing factor, which may protect myocardium during coronary ischemia-reperfusion. To study whether urocortin also protects coronary endothelial function during ischemia-reperfusion, hearts from Sprague-Dawley rats were perfused at constant flow and then exposed to 15 mins ischemia followed by 15 mins reperfusion. In one series of experiments, we found that the coronary relaxation to urocortin (10(-11) to 10(-8) M) was reduced by ischemia-reperfusion (51 +/- 4% vs. 79 +/- 4% of the active tone, for the 10(-10) Mdose). In other series of experiments, we observed that ischemia-reperfusion reduced the coronary relaxation to a test dose of acetylcholine (10(-6) M) (25 +/- 2% vs. 54 +/- 9% of active tone), without modifying the relaxation to sodium nitroprusside (10(-6) M). Treatment with a low threshold concentration of urocortin (10(-11) M), administered before ischemia and during reperfusion, partly improved the coronary relaxation to acetylcholine (36 +/- 3% of active tone). These results suggest that ischemia-reperfusion impairs the coronary vasodilation to urocortin and produces endothelial dysfunction and that this endothelial dysfunction may be improved by urocortin.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5↗

Renal endothelial function in humans.

Animal experiments have shown extensively that the endothelial generation of nitric oxide participates in the regulation of renal haemodynamics and function, probably as a factor modulating the effects of endogenous vasoconstrictors. Although the endothelial function of the systemic vasculature is assessed through the vasodilatory effect of acetylcholine, only L-arginine infusion is available for studies of the influence of nitric oxide on the renal circulation in humans. In addition to peripheral vessels, L-arginine is a potent renal vasodilator, having no effect on the glomerular filtration rate; and the renal relaxation induced by L-arginine is markedly blunted in patients with essential hypertension. A few studies showing the renal vasoconstrictor effect of an inhibitor of nitric oxide synthesis have been reported.

Albuminuria↗

Effects of leptin on endothelial function with OB-Rb gene transfer in Zucker fatty rats.

The metabolic syndrome in association with obesity is a major clinical problem inducing hypertension, diabetes mellitus, and atherosclerosis. Leptin induces angiogenesis by its proliferative effects on endothelial cells (ECs) via OB receptor (OB-Rb) gene. We evaluated the growth of ECs and intracellular signalings in response to leptin in vitro and the angiogenic effects of leptin in the cornea in vivo with and without adenovirus-mediated transfer of the OB-Rb gene in Zucker fatty (ZF) rats as a model for the metabolic syndrome. Recombinant adenovirus vector encoding rat OB-Rb (Ad.OB-Rb) or Escherichia coli. LacZ (Ad.LacZ) was transfected into cultured ECs from Zucker lean (ZL) rats and ZF rats. Leptin increased DNA synthesis dose-dependently in ECs from ZL rats but not ZF rats. Infection with Ad.OB-Rb, but not with Ad.LacZ, improved the growth effects of leptin in ECs from ZF rats. Leptin induced phosphorylation of Janus kinase (JAK)2, signal transducer and activator of transcription (STAT)3, and extracellular signal-regulated kinase (ERK) in ECs from ZL rats but not ZF rats. Infection with Ad.OB-Rb restored phosphorylation of JAK2 and STAT3 in ECs from ZF rats. Leptin induced angiogenesis in cornea from ZL rats, but not from ZF rats. Coadministration of leptin and Ad.OB-Rb induced angiogenesis in cornea from ZF rats. Ad.LacZ did not influence the angiogenic effects of leptin. The impaired endothelial function with the leptin resistance may be one of causes of the atherosclerosis in the metabolic syndrome.

Adenoviridae↗

Kidney oxygenation during water diuresis and endothelial function in patients with type 2 diabetes and subjects at risk to develop diabetes.

The aim of the present study was to examine the relationship among water diuresis-induced changes in renal oxygenation, endothelial function, and various metabolic parameters in type 2 diabetic patients and healthy subjects at risk of type 2 diabetes. Thirty-eight subjects with type 2 diabetes (D: age, 54 +/- 10 years, mean +/- SD, 24 men) and 7 healthy subjects with parental history of type 2 diabetes or with impaired glucose tolerance (IGT) (relatives [R]: age 46 +/- 11 years, 4 men) were included. Laser Doppler imaging scanning was used to measure vasodilatation in the forearm skin in response to iontophoresis of 1% acetylcholine (Ach) and 1% sodium nitroprusside (SNP), and ultrasound was used to measure the flow-mediated dilation (FMD) and nitroglycerin-induced dilation (NID) in the brachial artery. Renal oxygenation was assessed by magnetic resonance imaging (MRI) before and during water diuresis. A decrease in the magnetic parameter R2* implies an increase in oxygenation. Renal medullary oxygenation did not improve with diuresis in either group (D: -0.5 +/- 1.9, R: -0.4 +/- 2.1, P = not significant [NS]). The renal cortical oxygenation showed a small, but statistically significant, improvement after diuresis in the 2 groups (D: -0.6 +/- 1.1, R: -0.5 +/- 0.5, P <.05). There were no correlations between the change in cortical R2* (R2* post-minus R2* prewater diuresis) and the micro- and macrovascular reactivity. The postdiuresis renal cortical R2* was negatively correlated with both the Ach- and SNP-induced skin vasodilation (% change over baseline)(r = -.40, P <.01 and r = -.39, P <.05, respectively), while no correlation existed with the FMD and NID. The baseline renal cortical oxygenation was also negatively correlated with the SNP-induced skin vasodilation (r = -.36, P <.05) and positively correlated with the fasting plasma glucose, total cholesterol, and vascular cell adhesion molecule (VCAM) concentrations (r =.34, P <.05, r =.31, P <.05 and r =.37, P <.05, respectively). These preliminary findings suggest an association between the kidney cortical oxygenation and the skin microvascular reactivity, glycemia, and lipidemia. Water diuresis failed to produce an improvement in renal medullary oxygenation in both patients with diabetes and subjects at risk for diabetes.

Aged↗

Blood lipids and endothelial function in glycogen storage disease type III.

We have assessed early indicators of arterial disease in patients with glycogen storage disease type III (GSD III; McKusick 232400), investigating the plasma lipid and lipoprotein profile and endothelial function. Eleven patients, aged 10-39 years, were recruited together with age-, sex- and smoking status-matched controls. Brachial artery responses were assessed by high-resolution ultrasonographic measurement of the diameter of the brachial artery at baseline, after reactive hyperaemia and in response to sublingual glyceryl trinitrate (GTN). The means of plasma cholesterol (total and HDL and LDL subfractions), triglycerides, apo-A1, apo-B, Lp(a) and the atherogenic index were similar in both groups. Cardiac troponin I was below the lower limits of detection (< 0.03 g/L) in all subjects. The GSD III patients had similar body mass index (BMI) and brachial artery diameter to the control group (BMI 22.6 +/- 5.6 vs 22.3 +/- 5 kg/m2; brachial artery diameter 3.4 +/- 0.5 vs 3 +/- 0.7 mm). When compared to the baseline diameter, the maximal flow-mediated dilatation of the brachial artery after reactive hyperaemia was 9.3% +/- 2.1% (mean +/- SD) in the GSD III patients and 6.5% +/- 3.5% in the control group, a difference of 1.8% (95% CI 0.07% to 5.5%). The maximal dilatation of the brachial artery after GTN administration was 18.3% +/- 6.4% in the GSD III patients and 17.9% +/- 6.5% in the control group, a difference of 0.4% (95% CI-6.9% to 7.7%). In conclusion, we found no evidence of abnormal plasma lipid and lipoprotein profile or endothelial dysfunction in patients with GSD III. They are unlikely to be at increased risk of premature atherosclerosis.

Adolescent↗

Effect of exercise on coronary endothelial function in patients with coronary artery disease.

BACKGROUND: Studies of the cardioprotective effects of exercise training in patients with coronary artery disease have yielded contradictory results. Exercise training has been associated with improvement in myocardial perfusion even in patients who have progression of coronary atherosclerosis. We therefore conducted a prospective study of the effect of exercise training on endothelial function in patients with coronary artery disease. METHODS: We randomly assigned 19 patients with coronary endothelial dysfunction, indicated by abnormal acetylcholine-induced vasoconstriction, to an exercise-training group (10 patients) or a control group (9 patients). To reduce confounding, patients with coronary risk factors that could be influenced by exercise training (such as diabetes, hypertension, hypercholesterolemia, and smoking) were excluded. In an initial study and after four weeks, the changes in vascular diameter in response to the intracoronary infusion of increasing doses of acetylcholine (0.072, 0.72, and 7.2 microg per minute) were assessed. The mean peak flow velocity was measured by Doppler velocimetry, and the diameter of epicardial coronary vessels was measured by quantitative coronary angiography. RESULTS: In the initial study, the two groups had similar vasoconstrictive responses to acetylcholine. After four weeks of exercise training, coronary-artery constriction in response to acetylcholine at a dose of 7.2 microg per minute was reduced by 54 percent (from a mean [+/-SE] decrease in the luminal diameter of 0.41+/-0.05 mm in the initial study to a decrease of 0.19+/-0.07 mm at four weeks; P<0.05 for the comparison with the change in the control group). In the exercise-training group, the increases in mean peak flow velocity in response to 0.072, 0.72, and 7.2 microg of acetylcholine per minute were 12+/-7, 36+/-11, and 78+/-16 percent, respectively, in the initial study. After four weeks of exercise, the increases in response to acetylcholine were 27+/-7, 73+/-19, and 142+/-28 percent (P<0.01 for the comparison with the control group). Coronary blood-flow reserve (the ratio of the mean peak flow velocity after adenosine infusion to the resting velocity) increased by 29 percent after four weeks of exercise (from 2.8+/-0.2 in the initial study to 3.6+/-0.2 after four weeks; P<0.01 for the comparison with the control group). CONCLUSIONS: Exercise training improves endothelium-dependent vasodilatation both in epicardial coronary vessels and in resistance vessels in patients with coronary artery disease.

Acetylcholine↗

Dehydroepiandrosterone increases endothelial cell proliferation in vitro and improves endothelial function in vivo by mechanisms independent of androgen and estrogen receptors.

Dehydroepiandrosterone (DHEA) may be beneficial in cardiovascular health, but mechanisms of DHEA action in the cardiovascular system are unclear. We have therefore 1) determined DHEA effects on the proliferation of cultured endothelial cells (EC), 2) compared effects of DHEA with estradiol (E) and testosterone (T), and 3) examined DHEA effects on subcellular messengers. We have in addition examined effects of DHEA (100 mg/d, 3 months) in 36 healthy postmenopausal women on blood pressure, lipids, and endothelial function, assessed noninvasively in large vessels by flow-mediated dilation of the brachial artery during reactive hyperemia, and in small vessels by laser Doppler velocimetry with iontophoresis of acetylcholine. DHEA, E, and T all increased EC proliferation; the effect of E was abolished by the estrogen receptor antagonist ICI 182,780, and that of T was abolished by the androgen receptor antagonist flutamide; neither blocked the effect of DHEA. In vitro, DHEA increased EC expression of endothelial nitric oxide synthase and activity of extracellular signal-regulated kinase 1/2. In vivo, DHEA increased flow-mediated dilation and laser Doppler velocimetry and reduced total plasma cholesterol. Thus, DHEA increases EC proliferation in vitro by mechanism(s) independently of either androgen receptor or estrogen receptor and in vivo enhances large and small vessel EC function in postmenopausal women.

Adult↗

Effects of octreotide on lipoproteins and endothelial function of type 1 (insulin-dependent) diabetic patients.

Hypersecretion of growth hormone (GH) is a characteristic feature of Type 1 diabetic patients. In healthy subjects growth hormone is able to induce an increase in endothelial cell proteins such as fibrinogen and von Willebrand factor. Plasma concentrations of such proteins, which are markers of cardiovascular risk, are elevated in diabetic patients with microalbuminuria, suggesting endothelial cell dysfunction. In a randomized prospective study we therefore evaluated the possible effects of 1 year's treatment with a somatostatin analogue, octreotide, on lipoproteins and on endothelial function in Type 1 diabetes mellitus. Seven patients were allocated to treatment with a continuous subcutaneous infusion of 400 micrograms octreotide per day. Seven patients served as a control group. During treatment a decrease in plasma LDL-cholesterol (2.62 (2.17-3.11) (median (range] vs 2.00 (1.89-2.96) mmol l-1, p less than 0.05) and serum apolipoprotein A-I (1.47 (1.25-1.60) vs 1.23 (1.13-1.90) g l-1, p less than 0.05) was observed in the treated group. Furthermore a probable reduction during treatment in plasma concentrations of von Willebrand factor (1.72 (0.84-3.04) vs 1.24 (0.94-1.82) U ml-1, p = 0.08) and fibrinogen (11.3 (7.3-25.3) vs 8.1 (7.5-11.8) mumol l-1, p = 0.06) was found, and after withdrawal of treatment an increase towards the initial levels was seen. The platelet count declined (326 (301-612) vs 217 (206-400) x 10(9) l-1, p less than 0.01) during octreotide treatment and remained depressed 2 months after withdrawal.

Adult↗

Endothelial function in humans. Studies of forearm resistance vessels.

The endothelium is increasingly recognized as a modulator of vascular tone, and evidence also is accumulating for an important role of the endothelium in humans in vivo. Endothelial release of prostacylin appears to regulate hyperemic blood flow after ischemia and muscle exercise, and the potent vasodilating properties of endothelium-derived relaxing factor (EDRF) are well established. Tonic release of EDRF plays an important role in the regulation of vascular tone in normal subjects, and a reduction of EDRF release in response to muscarinergic stimulation has been described in subjects with uncomplicated hypertension and also in hyperlipidemic patients. These observations point toward an early disturbance of endothelial function in disorders known as risk factors for the development of atherosclerosis. Furthermore, altered EDRF release and responsiveness to stimuli may be involved in the disturbed regulation of peripheral vascular tone in congestive heart failure. The physiological role of the vasoconstricting peptide endothelin-1 is not yet defined, but the study of the vascular actions of the peptide in humans has shown a vasodilating effect (for low dosages or when the vasconstricting effects are blocked), as well as a marked and long-lasting vasoconstricting effect. Although the mechanisms leading to vasodilation are not clear in humans, endothelin-1-induced vasoconstriction appears to be completely dependent on the activity of voltage-operated calcium channels and can be blocked by organic calcium antagonists but not by nitrovasodilators or EDRF. Further clarification of the role of the endothelium will provide a better understanding of circulatory physiology and pathophysiology and eventually may lead to the development of new therapeutic modalities.

Endothelins↗

Reactive oxygen species modulate coronary wall shear stress and endothelial function during hyperglycemia.

Hyperglycemia is associated with generation of reactive oxygen species (ROS), and this action may contribute to accelerated atherogenesis. We tested the hypothesis that hyperglycemia produces alterations in left anterior descending coronary artery (LAD) wall shear stress concomitant with endothelial dysfunction and ROS production in dogs (n = 12) instrumented for measurement of LAD blood flow, velocity, and diameter. Dogs were randomly assigned to receive vehicle (0.9% saline) or the superoxide dismutase mimetic 4- hydroxy-2,2,6,6-tetramethylpiperidine-1-oxyl (tempol) and were administered intravenous infusions of d-glucose to achieve target blood glucose concentrations of 350 and 600 mg/dl (moderate and severe hyperglycemia, respectively). Endothelial function and ROS generation were assessed by coronary blood flow responses to acetylcholine (10, 30, and 100 ng/kg) and dihydroethidium fluorescence of myocardial biopsies, respectively. Indexes of wall shear stress were calculated with conventional fluid dynamics theory. Hyperglycemia produced dose-related endothelial dysfunction, increases in ROS production, and reductions in oscillatory shear stress that were normalized by tempol. The results suggest a direct association between hyperglycemia-induced ROS production, endothelial dysfunction, and decreases in oscillatory shear stress in vivo.

Animals↗

Effect of 1-week treatment with erythropoietin on the vascular endothelial function in anaesthetized rabbits.

Chronic administration of erythropoietin (EPO) is often associated with hypertension in animals and humans. The aim of this study was to estimate whether 1-week treatment with EPO can affect the vascular endothelial function. Rabbits were given with EPO (400 iu kg(-1) s.c.) or saline each other day for 1 week. Hypotensive responses to intravenously given acetylcholine (ACh), endothelium-independent nitric oxide donors (NOC7, nitroprusside and nitroglycerin) and prostaglandin I2 were tested before and after administration of N(G)-nitro-L-arginine methyl ester (L-NAME), a specific nitric oxide synthase inhibitor, under pentobarbitone anaesthesia. Blood haemoglobin concentration in EPO group was significantly higher than that in control group, whereas baseline values of aortic pressure, heart rate and femoral vascular resistance were similar. The dose of ACh (172 ng kg(-1)) requiring for a 15 mmHg hypotension from the baseline in EPO group was apparently higher than that (55 ng kg(-1)) in control group. On the contrary, hypotensive responses to NOC7, nitroprusside, nitroglycerin and prostaglandin I2 were comparable between two groups. The extent of ACh-induced hypotension did not correlate with haemoglobin concentration. L-NAME significantly inhibited the ACh-induced vasodilating response in control group but did not in EPO group. In another set of rabbits, the same treatment with EPO also decreased vasodilating responses to carbachol, bradykinin and substance P besides ACh as compared with control group. These results indicate that 1-week treatment with EPO selectively attenuates depressor responses to endothelium-dependent vasodilators in anaesthetized rabbits, most likely due to inhibition of endothelial nitric oxide synthase.

Acetylcholine↗

Endothelial function in clinical pulmonary hypertension.

The endothelium regulates the concentrations of several types of vasoactive substances that affect pulmonary vascular tone, and endothelia can oppose vasoconstriction in some circumstances by releasing vasodilators. To assess some of these endothelial functions in patients with pulmonary hypertension, we made measurements of selected vasoactive substances before and during attempts at pharmacologic vasodilatation. Studies were performed in 16 patients (1 1/2 to 23 years of age) with either idiopathic pulmonary hypertension (n = 11) or pulmonary hypertension as a consequence of unexpected early pulmonary vascular disease accompanying congenital heart defects (n = 5). In six of ten children, norepinephrine levels were elevated, and in two of the six, the concentrations of norepinephrine were greater in the aorta than in the pulmonary artery. In four out of 16 patients, thromboxane levels were increased, and in three of the four, the concentrations of thromboxane were greater in the aorta than in the pulmonary artery. These concentration gradients suggest pulmonary release of these vasoconstrictors. Identification of the contribution to pulmonary vasoconstriction made by changes in the endothelial metabolism of vasoactive substances may lead to a more fundamental understanding of the control of the pulmonary circulation, and hence lead to more specific modes of therapy for pulmonary hypertension.

Adolescent↗

Effect of acute blood pressure reduction on endothelial function in the brachial artery of patients with essential hypertension.

OBJECTIVES: To evaluate the effect of acute blood pressure reduction on endothelium-dependent vasodilation in the peripheral circulation of essential hypertensive patients. DESIGN: A parallel group study; endothelial function measured in 64 essential hypertensive patients before and after (2 h) treatment with nifedipine (20 mg, n = 32) or captopril (50 mg, n = 32), p.o., randomly assigned. METHODS: In hypertensive patients, we evaluated flow-mediated, endothelium-dependent dilation (FMD, high resolution ultrasound) of the brachial artery compared with endothelium-independent response to glyceryl trinitrate (GTN, 25 microg s.l.). Automatic computerized analysis was used to measure brachial artery diameter on end-diastolic frames acquired every second during the study. Sixty-six healthy normotensive subjects were also evaluated to assess the presence of endothelial dysfunction in hypertensive patients. RESULTS: Hypertensive patients showed a significantly (P< 0.01) lower FMD (5.9 +/- 2.5%) as compared to healthy controls (7.7 +/- 3.8%). The response to GTN was similar in normotensive subjects (7.5 +/- 3.1%) and hypertensive patients (7.2 +/- 6.5%). At baseline brachial artery diameter, FMD and response to GTN were similar in the nifedipine- and captopril-treated groups. Nifedipine and captopril similarly reduced blood pressure, but only nifedipine increased heart rate. Acute nifedipine, but not captopril, significantly (P< 0.01) increased brachial artery diameter, while FMD and response to GTN were not modified after nifedipine or captopril. CONCLUSIONS: Endothelial dysfunction in the brachial artery of essential hypertensive patients is not improved by acute blood pressure reduction.

Adult↗

Coronary endothelial function in cardiac transplant recipients with accelerated coronary disease.

BACKGROUND: Previous studies with the endothelium-dependent vasodilator substance P have shown a preserved vasodilator response in cardiac transplant recipients with angiographically normal coronary arteries. Although endothelial dysfunction is known to occur in cardiac transplant recipients with accelerated coronary disease, the degree to which the endothelium is affected is not known precisely. The aim of the present study was to examine endothelial function in accelerated coronary disease following cardiac transplantation. METHODS: Thirteen cardiac transplant recipients with epicardial coronary disease underwent substance P infusion. The response to incremental doses of substance P was measured in smooth segments of affected coronary arteries. Substance P was infused over 2 min with a starting dose of 1.4 pmol/min and a maximum of 22.4 pmol/min, reached by doubling the dose in steps, followed by an infusion of 2 mg isosorbide dinitrate over 2 min. RESULTS: Substance P caused less vasodilation at lower concentrations, with a significantly higher dose required to achieve half maximal dilation compared with cardiac transplant recipients with no coronary disease. The mean maximal dilatation achieved with substance P was 22.98 +/- 4.62% compared to 21.95 +/- 4.9% with isosorbide dinitrate; the latter value was not significantly different from the maximal dilation achieved in cardiac transplant recipients without coronary disease. CONCLUSIONS: In cardiac transplant recipients with accelerated coronary disease the functional vasodilatory ability of the coronary endothelium is impaired in segments of apparently unaffected epicardial arteries, which may lead to an increase in the resting vasoconstrictor tone and have important functional and therapeutic implications.

Adult↗