PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “endothelial dysfunction”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 361 records · Page 20Linked to original sources

How does ascorbic acid prevent endothelial dysfunction?

Human coronary and peripheral arteries show endothelial dysfunction in a variety of conditions, including atherosclerosis, hypercholesterolemia, smoking, and hypertension. This dysfunction manifests as a loss of endothelium-dependent vasodilation to acetylcholine infusion or sheer stress, and is typically associated with decreased generation of nitric oxide (NO) by the endothelium. Vitamin C, or ascorbic acid, when acutely infused or chronically ingested, improves the defective endothelium-dependent vasodilation present in these clinical conditions. The mechanism of the ascorbic acid effect is unknown, although it has been attributed to an antioxidant function of the vitamin to enhance the synthesis or prevent the breakdown of NO. In this review, multiple mechanisms are considered that might account for the ability of ascorbate to preserve NO. These include ascorbate-induced decreases in low-density lipoprotein (LDL) oxidation, scavenging of intracellular superoxide, release of NO from circulating or tissue S-nitrosothiols, direct reduction of nitrite to NO, and activation of either endothelial NO synthase or smooth muscle guanylate cyclase. The ability of ascorbic acid supplements to enhance defective endothelial function in human diseases provides a rationale for use of such supplements in these conditions. However, it is first necessary to determine which of the many plausible mechanisms account for the effect, and to ensure that undesirable toxic effects are not present.

Animals↗

Influence of hyperhomocysteinemia on the cellular redox state--impact on homocysteine-induced endothelial dysfunction.

Hyperhomocysteinemia is an independent risk factor for the development of atherosclerosis. An increasing body of evidence has implicated oxidative stress as being contributory to homocysteine's deleterious effects on the vasculature. Elevated levels of homocysteine may lead to increased generation of superoxide by a biochemical mechanism involving nitric oxide synthase, and, to a lesser extent, by an increase in the chemical oxidation of homocysteine and other aminothiols in the circulation. The resultant increase in superoxide levels is further amplified by homocysteine-dependent alterations in the function of cellular antioxidant enzymes such as cellular glutathione peroxidase or extracellular superoxide dismutase. One direct clinical consequence of elevated vascular superoxide levels is the inactivation of the vasorelaxant messenger nitric oxide, leading to endothelial dysfunction. Scavenging of superoxide anion by either superoxide dismutase or 4,5-dihydroxybenzene 1,3-disulfonate (Tiron) reverses endothelial dysfunction in hyperhomocysteinemic animal models and in isolated aortic rings incubated with homocysteine. Similarly, homocysteine-induced endothelial dysfunction is also reversed by increasing the concentration of the endogenous antioxidant glutathione or overexpressing cellular glutathione peroxidase in animal models of mild hyperhomocysteinemia. Taken together, these findings strongly suggest that the adverse vascular effects of homocysteine are at least partly mediated by oxidative inactivation of nitric oxide.

Animals↗

Peripheral endothelial dysfunction in heart transplant recipients: possible role of proinflammatory cytokines.

Endothelium-dependent vasodilation in the peripheral circulation may be impaired in heart transplant recipients (HTx rec). Conflicting results have been obtained and the mechanisms involved have not been examined. In the present study, we examined whether long-time survivors of heart transplantation (Tx) show signs of endothelial dysfunction in the peripheral microcirculation, and further investigated the possible role of endothelium-related markers and proinflammatory cytokines in this process. The vasodilatory responses to acetylcholine (Ach) (endothelium-dependent) and sodium nitroprusside (SNP) (endothelium-independent) were evaluated by skin laser-Doppler perfusion measurements in 63 clinically stable HTx rec 6 yr (range 1-13 yr) after Tx, and compared with 20 healthy controls. Ten HTx rec were also followed prospectively with three repeated measurements during the first year after Tx. Plasma von Willebrand factor, big-endothelin (b-ET), and proinflammatory cytokines were measured by enzyme immunoassays. Vascular responses to both Ach and SNP were significantly attenuated in the HTx rec compared with controls. In longitudinal testing, there was a significant reduction in endothelium-dependent vasodilation, but not independent vasodilation from 1 to 12 months after Tx. Plasma levels of vWF and b-ET, as well as levels of proinflammatory cytokines, tumor necrosis factor (TNF)-alpha, interleukin (IL)-6 and IL-1beta, were all markedly increased in HTx rec. HTx rec responses to Ach were negatively correlated to TNF-alpha levels in plasma (r = -0.39, p < 0.01). Moreover, there was also a significant positive correlation between plasma b-ET and TNF-alpha (r = 0.34, p < 0.01). In the long-term follow-up of HTx rec, endothelial dysfunction is demonstrated by both regulation of blood flow in the skin microcirculation and by raised markers of endothelial activation in plasma. This endothelial dysfunction may be related to enhanced levels of proinflammatory cytokines in these patients.

Acetylcholine↗

Endothelin contributes to basal vascular tone and endothelial dysfunction in human obesity and type 2 diabetes.

Endothelium-dependent vasodilation is impaired in clinical states of insulin resistance such as obesity and type 2 diabetes. Individuals who have hyperinsulinemic insulin resistance have relatively elevated circulating levels of endothelin (ET)-1, suggesting that ET-1 may be important in the endothelial dysfunction and alterations of vascular tone in these conditions. In 8 lean subjects, 12 nondiabetic obese subjects, and 8 subjects with type 2 diabetes, we measured basal and methacholine-stimulated rates of leg blood flow (LBF) and total serum nitrates (NOx) before and after the intrafemoral arterial administration of BQ123, a specific blocker of ET(A) receptors. BQ123 produced significant vasodilation in the obese and type 2 diabetic subjects (leg vascular resistance = mean arterial pressure/LBF fell by 34 and 36%; P < 0.005) but not in the lean subjects (13%; P = NS, P = 0.018 comparing all groups). ET(A) blockade did not change basal NOx flux (NOx*LBF). This suggests increased basal ET-1 constrictor tone among obese and type 2 diabetic subjects. BQ123 corrected the baseline defect in endothelium-dependent vasodilation seen in obese and type 2 diabetic subjects, suggesting an important contribution of ET-1 to endothelial dysfunction in these subjects. In contrast to basal conditions, stimulated NOx flux was augmented by BQ123 in obese and type 2 diabetic subjects but not in L subjects (P = 0.04), suggesting a combined effect of ET(A) blockade to reduce constrictor tone and augment dilator tone. Endothelin seems to contribute to endothelial dysfunction and the regulation of vascular tone in human obesity and type 2 diabetes.

Adult↗

[Endothelial dysfunction in patients with open-angle glaucoma and atheromatous lesions].

UNLABELLED: A number of observations revealed that the haemodynamic alteration may contribute to pathogenesis of glaucomatous neuropathy. Endothelial dysfunction associated with atherosclerosis impaired the endothelial dependent vasodilatation. PURPOSE: To evaluate the relationship between the endothelial dysfunction (assessed by plasma NO level) and carotid stenosis degree în primary open angle-glaucoma patients. METHODS: Carotid ultrasonography and plasma NOx level (nitrite and nitrate) were obtained from 3 groups of patients: group 1-patients with primary open angle-glaucoma and carotid stenosis; group 2-patients with carotid stenosis and group 3-healthy subjects. RESULTS: A significant lower NO level (compared with group 3) and a significant higher carotid stenosis (compared with group 2) were found în primary open angle-glaucoma patients. There was a significant correlation between the NOx level and carotid stenosis. CONCLUSIONS: Assessing the carotid atherosclerotic plaques may be benefical for the patients with primary open angle-glaucoma. Pharmacological neuroprotection with NO precursors may be useful for the patients with carotid stenosis associated with primary open angle-glaucoma.

Aged↗

Oxidative stress could precede endothelial dysfunction and insulin resistance in Indian Mauritians with impaired glucose metabolism.

AIMS/HYPOTHESIS: To measure oxidative stress, endothelial dysfunction and insulin resistance in Indian Mauritians at different stages of development of Type II (non-insulin-dependent) diabetes mellitus. METHODS: Plasma total 8-epi-PGF2alpha, an indicator of oxidative stress, was determined in age-matched subjects with normal glucose metabolism (n = 39), impaired glucose tolerance (n = 14), newly diagnosed diabetes (n = 8) and established diabetes (n = 14). Plasma glucose and insulin were measured at baseline and 2 h following an oral glucose tolerance test. Endothelial function was assessed by non-invasive digital pulse wave photoplethysmography. RESULTS: Plasma 8-epi-PGF2alpha increased in subjects with impaired glucose tolerance (p < 0.05) compared with control subjects, and was even higher in newly diagnosed diabetic patients (p < 0.01) and established (p < 0.01) diabetic patients. A tendency towards reduced endothelial function in subjects with impaired glucose tolerance became significant in patients with newly diagnosed and established diabetes (p < 0.01), and was correlated with 8-epi-PGF2alpha (r = 0.36, p < 0.01). Insulin resistance (homeostasis model assessment) did not change in subjects with impaired glucose tolerance compared with control subjects, but increased in newly diagnosed (p < 0.01) and established (p < 0.001) diabetic subjects. The 8-epi-PGF2alpha was correlated with fasting glucose (r = 0.50, p < 0.001), triglycerides (r = 0.40, p < 0.001) and insulin resistance (r = 0.35, p < 0.001). CONCLUSION/INTERPRETATION: Oxidant stress is an early event in the evolution of Type II diabetes and could precede the development of endothelial dysfunction and insulin resistance.

Blood Glucose↗

[Endothelial dysfunction in patients with chronic colitis].

The work shows that patients with chronic colitis have an expressed endothelial dysfunction, which becomes apparent as an increase of the level of vasoconstrictor endothelin-1 and decrease of the level of vasodilator nitric oxide. The obtained data indicate the role of the endothelial dysfunction in the pathogenesis of chronic colitis. The efficiency of the complex therapy with the use of folic acid and zinkteral for the restoration of the endothelium function is marked in comparison with the group of the patients treated with the help of the basic therapy.

Adult↗

The clinical implications of endothelial dysfunction.

Defining new approaches for the prevention and treatment of atherosclerosis is an important priority. Recently, measurement of endothelial function in patients has emerged as a useful tool for atherosclerosis research. Risk factors are associated with impaired endothelial function, and clinical syndromes relate, in part, to a loss of endothelial control of vascular homeostasis. Recent studies have shown that the severity of endothelial dysfunction relates to cardiovascular risk. A growing number of interventions known to reduce cardiovascular risk have been shown to improve endothelial function. This work suggests that studies of endothelial function could be used in the care of patients and as a surrogate marker for the evaluation of new therapeutic strategies. This article will review this growing literature in an effort to evaluate the current clinical utility of endothelial dysfunction.

Arteriosclerosis↗

Relationship between markers of endothelial dysfunction, oxidant injury and tubular damage in patients with insulin-dependent diabetes mellitus.

1. Diabetic nephropathy is a serious microvascular complication in patients with insulin-dependent diabetes mellitus, resulting in end-stage renal disease in 30-45% of such patients. Despite intensive investigation, the pathophysiology of diabetic renal disease has not been fully elucidated. However, several clinical and experimental studies have suggested that endothelial dysfunction and free-radical activity may be important factors. 2. Forty normotensive patients with insulin-dependent diabetes mellitus of between 10 and 20 years duration with persistent normoalbuminuria (albumin excretion < 30 mg/day) and normal renal function were investigated for markers of endothelial dysfunction (plasma von Willebrand factor, soluble thrombomodulin and angiotensin-converting enzyme activity), free oxygen radical generation (erythrocytic superoxide dismutase and glutathione peroxidase) and oxidant injury (serum malondialdehyde). Glomerular proteinuria (albuminuria, transferrinuria), tubular proteinuria (retinol-binding protein) and tubular enzymuria (N-acetyl glucosaminidase and leucine aminopeptidase) were also measured. 3. Patients were divided into two groups. Group 1 comprised 21 patients with elevated markers of endothelial dysfunction, and group 2 comprised 19 patients with normal levels of plasma von Willebrand factor, soluble thrombomodulin and angiotensin-converting enzyme activity. Thirty-eight healthy subjects matched for age and sex acted as controls. 4. Groups 1 and 2 were similar in age, sex, body weight, duration of diabetes mellitus and recent glycaemic control. Serum cholesterol, serum creatinine and glomerular proteinuria were similar in the three groups. Group 1 patients had significantly increased oxidant injury, tubular enzymuria and proteinuria compared with group 2 patients and control subjects (P < 0.01).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Cyclo-oxygenase-1 and -2 contribution to endothelial dysfunction in ageing.

Experiments were designed to investigate the role of cyclo-oxygenase isoforms in endothelial dysfunction in ageing. Aortic rings with endothelium of aged and young (24 vs 4 month-old) Wistar rats, were mounted in organ chambers for the recording of changes in isometric tension. In young rats, acetylcholine (ACh) caused a complete relaxation which was not affected by indomethacin (0.3 microM), NS-398 (a preferential COX-2 inhibitor; 1 microM), SQ-29548 (a thromboxane-receptor antagonist; 1 microM), nor valeryl-salicylate (VAS, a preferential inhibitor of COX-1; 3 mM). In aged rats, ACh caused a biphasic response characterized by a first phase of relaxation (0.01 - 1 microM ACh), followed by a contraction (3 - 100 microM ACh). Indomethacin, NS-398 and SQ-29548, but not VAS, augmented the first phase. Indomethacin, VAS, NS-398 and SQ-29548 decreased the contractions to high ACh concentrations. Then, the sensitivity to thromboxane receptor activation was investigated with U-46619. The results show comparable EC(50) values in young and aged rats. In aged rats, the ACh-stimulated release of prostacyclin, prostaglandin F(2alpha) and thromboxane A(2) was decreased by either indomethacin, NS-398, VAS or endothelium removal. However, in young animals, the ACh-stimulated release of prostacyclin and prostaglandin F(2alpha) were smaller than in older animals and remained unaffected by NS-398. Aortic endothelial cells from aged - but not young - rats express COX-2 isoform, while COX-1 labelling was observed in endothelial cells from both young and aged rats. These data demonstrate the active contribution of COX-1 and -2 in endothelial dysfunction associated with ageing.

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

HMG-CoA reductase inhibitors improve endothelial dysfunction in normocholesterolemic hypertension via reduced production of reactive oxygen species.

3-Hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase inhibitors (statins) significantly reduce cardiovascular mortality associated with hypercholesterolemia. There is evidence that statins exert beneficial effects in part through direct effects on vascular cells independent of lowering plasma cholesterol. We characterized the effect of a 30-day treatment with atorvastatin in normocholesterolemic, spontaneously hypertensive rats (SHR). Systolic blood pressure was significantly decreased in atorvastatin-treated rats (184+/-5 versus 204+/-6 mm Hg for control). Statin therapy improved endothelial dysfunction, as assessed by carbachol-induced vasorelaxation in aortic segments, and profoundly reduced angiotensin II-induced vasoconstriction. Angiotensin type 1 (AT(1)) receptor, endothelial cell NO synthase (ecNOS), and p22phox mRNA expression were determined with quantitative reverse transcription-polymerase chain reaction. Atorvastatin treatment downregulated aortic AT(1) receptor mRNA expression to 44+/-12% of control and reduced mRNA expression of the essential NAD(P)H oxidase subunit p22phox to 63+/-7% of control. Aortic AT(1) receptor protein expression was consistently decreased. Vascular production of reactive oxygen species was reduced to 62+/-12% of control in statin-treated SHR, as measured with lucigenin chemiluminescence assays. Accordingly, treatment of SHR with the AT(1) receptor antagonist fonsartan improved endothelial dysfunction and reduced vascular free-radical release. Moreover, atorvastatin caused an upregulation of ecNOS mRNA expression (138+/-7% of control) and an enhanced ecNOS activity in the vessel wall (209+/-46% of control). Treatment of SHR with atorvastatin causes a significant reduction of systolic blood pressure and a profound improvement of endothelial dysfunction mediated by a reduction of free radical release in the vasculature. The underlying mechanism could in part be based on the statin-induced downregulation of AT(1) receptor expression and decreased expression of the NAD(P)H oxidase subunit p22phox, because AT(1) receptor activation plays a pivotal role for the induction of this redox system in the vessel wall.

Angiotensin Receptor Antagonists↗

Coronary endothelial dysfunction of isolated hearts subjected to prolonged cold storage: patterns and contributing factors.

BACKGROUND: A key role of endothelial dysfunction in the pathogenesis of early low coronary flow of heart transplants and late cardiac allograft vasculopathy indicates the importance of optimal coronary endothelial preservation during cold heart storage. We designed this study to investigate the effect of prolonged cold storage on endothelial and smooth muscle function of proximal (epicardial) and distal (intramyocardial) coronary arteries. METHODS: Four groups of isolated rat hearts were subjected to cold cardioplegic perfusion and immersed in storage medium at 4 degrees C. In groups 1, 2, and 3, hearts were perfused with and stored in Celsior solution for 10, 15, and 30 hours, respectively. In group 4, hearts were perfused with Plegisol and stored in saline for 15 hours. At the end of cold heart storage, arterial segments were taken from the proximal and distal parts of the left coronary artery and mounted on an isometric wire myograph for functional studies. In fifth group, proximal and distal segments of coronary artery isolated from fresh hearts were used as controls. At the end of control measurements, these vessels were used for storage in vitro at 4 degrees C for 15 hours in saline (group 5A) or Celsior (group 5B). RESULTS: The endothelium-dependent relaxation to acetylcholine was reduced in distal coronary arteries in group 1, and in both proximal and distal coronary artery segments in groups 2, 3, 4, and 5A. Endothelial function was significantly more impaired in both proximal and distal coronary arteries in group 4, as compared with group 2. The impairment of relaxation to acetylcholine was more pronounced following cold storage of the heart than after a similarly long storage of the isolated vessels. The endothelium-independent relaxations to isoprenaline did not differ among all groups. The basal myogenic tone was increased in distal coronary arteries in group 1, and in both proximal and distal coronary arteries in groups 2, 3, 4, and 5A. The sensitivity to the vasoconstricting action of 5-hydroxytryptamine was increased in distal coronary arteries in group 2, and in both proximal and distal coronary arteries in groups 3, 4, and 5A. CONCLUSIONS: Prolonged ischemic cold heart storage induces coronary endothelial dysfunction that is more pronounced in distal than in proximal arteries and is related to the duration of heart storage and the composition of storage medium.

Acetylcholine↗

Use of human immunodeficiency virus-1 protease inhibitors is associated with atherogenic lipoprotein changes and endothelial dysfunction.

BACKGROUND: Human immunodeficiency virus protease inhibitors (HIV PIs) are associated with hyperlipidemia, hyperglycemia, and obesity; however, it is not known whether they increase risk of atherosclerotic vascular disease. The purposes of this study were to characterize the lipoprotein abnormalities associated with use of HIV PIs in individuals with HIV infection and to determine the pathophysiological significance of these changes by assessing their effect on endothelial dysfunction. METHODS AND RESULTS: This was a cross-sectional study of 37 adults with HIV-1 infection who were receiving antiretroviral therapy. Twenty-two were taking HIV PIs (group 1); 15 were not (group 2). Lipids and lipoproteins were measured by enzymatic techniques and nuclear magnetic resonance spectroscopic analysis. Flow-mediated vasodilation (FMD) of the brachial artery was measured by high-resolution ultrasound. Subjects in both groups were similar in regard to age, time since diagnosis of HIV infection, and CD4 cell count. Group 1 subjects had higher total cholesterol (5.68 versus 4.42 mmol/L, P=0.007) and triglyceride (4.43 versus 1.98 mmol/L, P=0.009) levels, characterized by elevated levels of IDL and VLDL. Subjects in group 1 had impaired FMD (2.6+/-4.6%), indicative of significant endothelial dysfunction. Group 2 subjects had normal FMD (8.1+/-6.7%, P=0.005). In group 1, chylomicron, VLDL, IDL, and HDL cholesterol levels predicted FMD. CONCLUSIONS: Use of HIV PIs is associated with atherogenic lipoprotein changes and endothelial dysfunction. Because these metabolic and vascular changes predispose to atherosclerosis, monitoring and treatment of dyslipidemia in patients taking these medications is warranted.

Adult↗

Endothelial dysfunction and type 2 diabetes. Part 1: physiology and methods for exploring the endothelial function.

Coronary artery, cerebrovascular and peripheral vascular disease, are the principal causes of morbidity and mortality in type 2 diabetes mellitus. The accelerated macrovascular disease in type 2 diabetes mellitus is due partly to the increased incidence of cardiovascular risk factors, such as hypertension, obesity and dyslipidemia. Advanced glycation end products, glycoxidised and oxidized low-density lipoproteins and reactive oxygen species linked to hyperglycemia have all been identified in type 2 diabetes mellitus and could accelerate macroangiopathy. Hence, the resistance to insulin is an additional independent risk factor, in association with oxidant stress, dyslipidemias, and prothrombic/hypofibrinolytic states. The endothelium is a major organ involved by cardiovascular risk factors, such as hypercholesterolemia, hypertension, inflammation, ageing, postmenopausal status, and smoking. Changes in endothelium function may lead to the coronary artery circulation being unable to cope with the increased metabolism of myocardial muscle independently of a reduced coronary artery diameter. The way endothelial function is altered in diabetic patients is not yet fully understood, but the loss of normal endothelial function could be involved in the pathogenesis of diabetic angiopathy, as endothelial dysfunction is associated with diabetic microangiopathy and macroangiopathy. Finally, recent reports indicate that an improved metabolic control in diabetic patients, whatever the treatment used, is associated with near normalization or restoration of normal endothelial function.

Diabetes Mellitus↗

Vascular endothelial growth factor induced functional and morphologic signs of endothelial dysfunction in isolated arteries from normal pregnant women.

OBJECTIVE: The purpose of this study was to determine the effects of vascular endothelial growth factor on basal tone, endothelium-dependent dilatation, permeability, and morphologic features of endothelium in isolated arteries from normal pregnant women. We hypothesized that vascular endothelial growth factor might induce signs of endothelial dysfunction. STUDY DESIGN: Arteries (approximately 200 microm) were dissected from subcutaneous fat biopsy specimens that were obtained at cesarean delivery and mounted on a pressure arteriograph. Changes in basal tone, dilatation to bradykinin (1 nmol/L to 3 micromol/L) before, during, and after 3 hours of incubation with vascular endothelial growth factor (0.5 or 1 nmol/L), vascular endothelial growth factor (0.5 nmol/L) plus bosentan (a nonselective endothelin receptor A and B antagonist, 1 micromol/L), or vehicle were compared. Scanning electron microscopy was applied for endothelial morphologic features. Permeability to Evans blue dye was evaluated in arteries after incubation with vascular endothelial growth factor, vascular endothelial growth factor plus angiopoietin-1, or vehicle, and in arteries that were obtained from women with preeclampsia. RESULTS: Basal tone was higher after 60 minutes of incubation with vascular endothelial growth factor (0.5 nmol/L) compared with vehicle (29% +/- 5% [n = 10] vs 10% +/- 4% [n = 7], P =.006). Combination of vascular endothelial growth factor with bosentan failed to increase the tone (n = 4). Bradykinin-mediated dilatation was impaired in arteries that were incubated with vascular endothelial growth factor 0.5 nmol/L (max dilatation: 287% +/- 16% vs 160% +/- 23% [n = 10], P =.0001) or vascular endothelial growth factor 1 nmol/L (max dilatation: 207% +/- 21% vs 88% +/- 4% [n = 3], P =.003). Bradykinin-mediated dilatation was similar after incubation with vehicle (n = 7) or the combination of vascular endothelial growth factor plus bosentan (n = 4). Evans blue dye staining was higher after incubation with vascular endothelial growth factor but was reversed by the addition of angiopoietin-1. Scanning electron microscopy demonstrated the development of intercellular gaps. CONCLUSION: Vascular endothelial growth factor impaired bradykinin-mediated dilatation and enhanced basal tone and permeability. This might indicate a potential role for vascular endothelial growth factor in the development of endothelial dysfunction in pregnancy. Angiopoietin-1 inhibited the vascular endothelial growth factor-induced vascular leakage, which may have therapeutic implications in preeclampsia.

Adipose Tissue↗

Dietary vitamin E increases the resistance to lipoprotein oxidation and attenuates endothelial dysfunction in the cholesterol-fed rabbit.

This study was conducted to determine if vitamin E could reverse or attenuate endothelial dysfunction following an atherogenic diet. Rabbits were initially fed 1% cholesterol for 4 weeks to induce endothelial dysfunction. During the next 4 weeks the rabbits were fed either 1% cholesterol +0.2% vitamin E or 1% cholesterol alone, and were then killed. Endothelium-dependent responses to acetylcholine, calcium ionophore A23187 and sodium nitroprusside (SNP) were studied in the preconstricted perfused rabbit ear. Dietary vitamin E partially reversed the impaired endothelium-dependent responses to acetylcholine associated with cholesterol feeding. The maximum decrease in perfusion pressure in response to acetylcholine was 77.8% +/- 3.6% in control animals, 35.3% +/- 2.6% in cholesterol-fed animals, and 49.1% +/- 4.7% in cholesterol+vitamin E treated animals. The response to A23187 or sodium nitroprusside did not differ between the groups. The susceptibility of rabbit beta-VLDL to oxidation was markedly decreased in the vitamin E treated animals as assessed by the formation of conjugated dienes. The formation of lipid peroxidation products were also significantly inhibited by vitamin E. These data suggest that dietary vitamin E is beneficial in reducing the oxidative injury that may lead to the impairment of nitric oxide (NO)-mediated responses in early hypercholesterolaemia.

Acetylcholine↗

Improvement of peripheral endothelial dysfunction by acute vitamin C application: different effects in patients with coronary artery disease, ischemic, and dilated cardiomyopathy.

BACKGROUND: Endothelial dysfunction has been described in patients with coronary artery disease (CAD) or chronic heart failure (CHF). Vitamin C administration leads to an improvement of endothelial function by reducing elevated levels of reactive oxygen species. It remains unclear, however, whether the degree of endothelial dysfunction caused by oxidative stress differs between CAD and CHF because of ischemic (ICM) or dilated cardiomyopathy (DCM). METHODS: In patients with CAD (n = 9; left ventricular ejection fraction [LVEF], 64% +/- 3%), ICM (n = 9; LVEF, 25% +/- 4%), DCM (n = 9; LVEF, 25% +/- 3%), and healthy subjects (HS; n = 5; LVEF, 66% +/- 5%) a change in internal radial artery diameter in response to acetylcholine (Ach; 15 and 30 microg/min) was measured with high-resolution ultrasound scanning during a co-infusion of normal saline or vitamin C (25 mg/min). RESULTS: Ach-mediated vasodilation was blunted in patients with CHF (DCM, 90 +/- 20 microm; ICM, 86 +/- 20 microm) and patients with CAD (336 +/- 20 microm) as compared with HS (496 +/- 43 microm; P <.05 vs patients with DCM, ICM, CAD). Vitamin C co-infusion increased Ach-mediated vasodilation by 180 +/- 35 microm (to 270 +/- 30 microm) in DCM (P <.05 vs CAD, HS) and by 294 +/- 40 microm (to 380 +/- 20 microm) in ICM (P <.05 vs DCM, CAD, HS). In patients with CAD, vitamin C increased Ach-mediated vasodilation by 146 +/- 35 microm to normal values, whereas vascular diameter remained unchanged in HS (14 +/- 20 microm; P = not significant). CONCLUSIONS: Acute vitamin C administration restored peripheral endothelial function in patients with CAD to normal values, whereas endothelial function remained attenuated in CHF, in particular in patients with DCM. These results suggest that in patients with CHF, factors other than oxidative stress (eg, cytokines) contribute to the pathologic endothelial function.

Acetylcholine↗

Pulmonary endothelial dysfunction after cardiopulmonary bypass in neonatal pigs.

BACKGROUND: In neonatal pigs cardiopulmonary bypass (CPB) is associated with endothelial dysfunction in isolated large pulmonary arteries. It is, however, of great importance if this functional change extends to the small pulmonary resistance arteries, which are the key regulators of pulmonary flow and pressure. The aim of this study was to assess changes in pulmonary microvascular function after CPB using a clinically relevant pediatric procedure. METHODS: From three groups of neonatal pigs (CPB-, sham- and control group) pulmonary resistance arteries and systemic resistance arteries (from skeletal muscle) were isolated and mounted as ring preparations in wire myographs. Vessel diameters were less than 500 microm. Concentration-response curves were constructed for norepinephrine (NA), vasopressin (Vp), and the thromboxane A2-analog U46619, while the endothelium-dependent and -independent vasodilator functions were assessed as responses to acetylcholine and nitric oxide (NO). RESULTS: Maximum pulmonary vasodilator response to acetylcholine was attenuated after CPB compared with sham-operated and control animals (P=0.04). NO-induced relaxation, and contractile responses to NA, Vp, and U46619 were not influenced by CPB. In systemic arteries no changes in contractile or relaxant responses were seen after CPB. CONCLUSION: CPB seems to induce pulmonary endothelial dysfunction in pulmonary but not peripheral resistance arteries in neonatal piglets.

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