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Reduction of postchallenge hyperglycaemia prevents acute endothelial dysfunction in subjects with impaired glucose tolerance.

OBJECTIVES: To investigate whether selective reduction of postchallenge hyperglycaemia influences acute endothelial dysfunction, a very early manifestation of vascular disease, in patients with impaired glucose tolerance. METHODS: In a randomized, double-blind, placebo-controlled, cross-over study the acute effect of 200-mg acarbose was investigated in 28 subjects with diagnosed impaired glucose tolerance. Flow-mediated dilation (FMD) of the brachial artery was determined as a measure of endothelial function before and 2 and 3 h after ingestion of 100-g saccharose. Asymmetrical dimethylarginine (ADMA) was measured by high-performance liquid chromatography. RESULTS: A negative correlation was observed between the changes of glucose and FMD (r = 0.416, P = 0.0018) 2 h after ingestion of saccharose. At 3 h, neither blood glucose nor FMD were different from baseline. Changes of both blood glucose (P = 0.0007) and FMD (P = 0.046) were significantly lower after administration of acarbose. Subgroup analysis revealed that the effect of acarbose was restricted to those subjects with an increase of blood glucose above the median increase of glycaemia. No changes of plasma ADMA were observed. CONCLUSIONS: Our data clearly demonstrate that the postchallenge alteration of vascular function in patients with impaired glucose tolerance is caused by the acute elevation of glycaemia but not mediated by ADMA.

Acarbose↗

Influence of folic acid on postprandial endothelial dysfunction.

Triglyceride-rich lipoproteins that circulate postprandially are increasingly being recognized as potentially atherogenic. These particles also have been shown to cause endothelial dysfunction. We recently demonstrated that acute parenteral administration of folic acid restores endothelial function in vivo in patients with increased LDL cholesterol levels. In vitro data suggested that this effect could be mediated by a reduction of radical stress. In the present study, therefore, we evaluated the effect of an acute oral fat load on both endothelial function and oxygen radical production. Next, we studied whether 2 weeks of pretreatment with 10 mg folic acid PO could prevent these fat-induced changes. We conducted a prospective, randomized, placebo-controlled study to evaluate the effect of oral folic acid administration (10 mg/d for 2 weeks) on basal endothelial function as well as endothelial function on an acute fat load in 20 healthy volunteers 18 to 33 years old. Endothelial function was assessed as flow-mediated dilatation (FMD). Endothelium-independent dilatation was measured after sublingual nitroglycerin spray. Oxygen radical stress was assessed by measurement of the urinary excretion of the stable radical-damage end product malondialdehyde. During administration of placebo, FMD decreased significantly after an acute oral fat load, with a median from 10.6% (8.3% to 12.2%) to 5.8% (3.0% to 10.2%), P<0.05. During folic acid administration, FMD was unaffected by a fat load, with a median from 9.6% (7.1% to 12.8%) to 9.9% (7.5% to 14.1%), P=NS. The increase in malondialdehyde excretion in the urine after fat loading was also prevented during folic acid administration (absolute increase after an acute fat load during placebo, 0.11+/-0.1 micromol/L versus folic acid, 0.02+/-0.1 micromol/L, P<0.05). The response to the endothelium-independent vasodilator nitroglycerin remained unaltered throughout the study. Pretreatment with oral folic acid prevents the lipid-induced decrease in FMD as well as the lipid-induced increase in urinary radical-damage end products. Because these observations were made in healthy volunteers with normal folate and homocysteine levels, it is suggested that a higher folate intake in the general population may have vasculoprotective effects.

Adolescent↗

Deficiency of microvascular thrombomodulin and up-regulation of protease-activated receptor-1 in irradiated rat intestine: possible link between endothelial dysfunction and chronic radiation fibrosis.

Microvascular injury is believed to be mechanistically involved in radiation fibrosis, but direct molecular links between endothelial dysfunction and radiation fibrosis have not been established in vivo. We examined radiation-induced changes in endothelial thrombomodulin (TM) and protease-activated receptor-1 (PAR-1) in irradiated intestine, and their relationship to structural, cellular, and molecular aspects of radiation injury. Rat small intestine was locally exposed to fractionated X-radiation. Structural injury was assessed 24 hours and 2, 6, and 26 weeks after the last radiation fraction using quantitative histology and morphometry. TM, neutrophils, transforming growth factor-beta, and collagens I and III were assessed by quantitative immunohistochemistry. PAR-1 protein was localized immunohistochemically, and cells expressing TM or PAR-1 transcript were identified by in situ hybridization. Steady-state PAR-1 mRNA levels in intestinal smooth muscle were determined using laser capture microdissection and competitive reverse transcriptase-polymerase chain reaction. Radiation caused a sustained, dose-dependent decrease in microvascular TM. The number of TM-positive vessels correlated with all parameters of radiation enteropathy and, after adjusting for radiation dose and observation time in a statistical model, remained independently associated with neutrophil infiltration, intestinal wall thickening, and collagen I accumulation. PAR-1 immunoreactivity and transcript increased in vascular and intestinal smooth muscle cells in irradiated intestine. PAR-1 mRNA increased twofold in irradiated intestinal smooth muscle. Intestinal irradiation up-regulates PAR-1 and causes a dose-dependent, sustained deficiency of microvascular TM that is independently associated with the severity of radiation toxicity. Interventions aimed at preserving or restoring endothelial TM or blocking PAR-1 should be explored as strategies to increase the therapeutic ratio in clinical radiation therapy.

Animals↗

PERTINENT--perindopril-thrombosis, inflammation, endothelial dysfunction and neurohormonal activation trial: a sub-study of the EUROPA study.

BACKGROUND: Markers of thrombosis, inflammation, endothelial dysfunction and neurohumoral activation such as fibrinogen, D-dimer, C-reactive protein, von Willebrand factor, tumour necrosis factor-alpha and chromogranin-A are reported to be linked to the increase of cardiovascular risk for atherosclerosis progression and events in patients with cardiovascular diseases. METHODS: EUROPA is a double blind, placebo-controlled trial on 12,231 patients that evaluates the effect of an angiotensin converting enzyme inhibitor--perindopril--on prevention of cardiovascular events in patients with coronary artery disease. PERTINENT is a sub-study of EUROPA that evaluates (a) in Part A (300 patients): the influence of perindopril vs. placebo on fibrinogen, D-dimer, C-reactive protein, von Willebrand factor, tumour necrosis factor-alpha and chromogranin-A. In addition, NOS expression and induction of apoptosis on human umbilical vein endothelial cells and angiotensin converting enzyme levels are also studied; (b) in Part B (about 1200 patients): the predictive role of plasma levels of C-reactive protein and von Willebrand factor on the occurrence of cardiovascular events. To this end, matched case-control analyses are planned (patients with vs. patients without events). STATUS OF PERTINENT: Blood analyses are in progress in four specialised laboratories: (a) Gaubius Laboratory, Leiden, TNO-PG, The Netherlands; (b) University Department of Medicine, Birmingham, UK; (c) University of Pavia, Italy; (d) Fondazione Salvatore Maugeri, Cardiovascular Research Centre, Gussago, Italy. CONCLUSIONS: The PERTINENT sub-study might help elucidating the phenomena contributing to the pathophysiology of cardiovascular events in patients with coronary artery disease and the role of perindopril in such context.

Angiotensin-Converting Enzyme Inhibitors↗

Effect of allopurinol on venous endothelial dysfunction after resuscitated hemorrhagic shock.

BACKGROUND: Blood flow deficits contribute to organ dysfunction in patients resuscitated from hemorrhage. AIM: To determine the contribution of xanthine oxidase mediated reperfusion injury to venous endothelial function after resuscitated hemorrhagic shock. METHODS: Rats were prepared for intravital microscopic study then bled to 50% of baseline blood pressure for 60 min. Treatment animals received a 50mg/kg bolus and a 25mg/kg/h infusion of the xanthine oxidase inhibitor allopurinol (allo) after shock but before resuscitation with shed blood and an equal volume of Ringer's lactate. A similarly resuscitated group (Std) and a non-hemorrhage group (No HS) served as control. Endothelial function was quantified at baseline, 30 min (R30) and 90 min (R90) post resuscitation as a change in mesenteric vessel diameter after topical application of acetylcholine (Ach), an endothelial dependent vasodilator. RESULTS: Resuscitation restored cardiac output and blood pressure in both hemorrhage groups. First order venules (V1) demonstrated a 39% and a 36% reduction in ability to dilate to Ach at R30 and R90 after resuscitation with shed blood and Ringer's lactate (Std). Second order venules (V2) demonstrated a 20% and a 25% reduction in ability to dilate to Ach at R30 and R90 after resuscitation with shed blood and Ringer's lactate (Std). Addition of allopurinol to standard resuscitation attenuated this response resulting in the preservation of endothelial dependent venous vasodilation. CONCLUSIONS: These data suggest that xanthine oxidase mediated ischemia-reperfusion injury contributes to venous endothelial dysfunction in the mesenteric microcirculation after resuscitated hemorrhagic shock. Endothelial function can be preserved by the addition of the xanthine oxidase inhibitor allopurinol to standard resuscitation lending support for its inclusion as an adjunct to resuscitation after hemorrhagic shock.

Allopurinol↗

Noninvasive interrogation of microvasculature for signs of endothelial dysfunction in patients with chronic renal failure.

Endothelial cell dysfunction (ECD) has been demonstrated in patients with end-stage renal disease (ESRD) who have cardiovascular disease (CD) or diabetes mellitus (DM). While techniques to examine conduit arteries have been adapted to these patients, evaluation of microvascular function has lagged behind. Therefore, we used laser Doppler flowmetry (LDF) and scanned laser Doppler imaging (LDI) to quantify parameters of the postocclusion reactive hyperemia and thermal hyperemic responses (local heating to 43 degrees C) in ESRD patients (n=63) and healthy individuals (n=33). Patients with ESRD were partitioned among those with either CD or DM or both (designated CDorDM, n=30), patients with both CD and DM (designated CD+DM, n=12, statistically similar to CDorDM), and patients with neither CD or DM (designated approximately CDor DM, n=33). LDF during thermal hyperemia showed a decrease in the thermal peaks and plateau as well as a delay in plateau compared with control, consistent with ECD. LDF during reactive hyperemia showed a decrease in the pay-back area under the curve, also consistent with ECD. approximately CDorDM were heterogeneous: almost 50% contained flow abnormalities similar to CDorDM. There was also a reduction in the number of functional arterioles on LDI images. Fourier analysis of LDF oscillations showed that low-frequency oscillations characterizing endothelial function were impaired in CDorDM and in many approximately CDorDM. The data demonstrate that ESRD patients with expected ECD (CDorDM) are characterized by distinct abnormalities in LDF parameters. However, similar abnormalities are found in approximately one-half of ESRD patients without evidence for CD or DM. Postocclusive and thermal interrogation of the microvasculature with laser Doppler-resolved parameters of the microcirculation, followed by Fourier analysis of the very slow oscillations, may provide a valuable adjunct to early noninvasive diagnosis of ECD in ESRD, especially important in a subpopulation of ESRD patients with no known CD or DM, which could be at increased risk of impending clinical manifestations of vasculopathy.

Adult↗

Non-invasive detection of early endothelial dysfunction in hypercholesterolaemic subjects.

Hypercholesterolaemia is associated with accelerated atherogenesis. Before the evidence of morphological lesions or plaques, endothelial dysfunctions, such as impairment in endothelium-dependent vascular tone regulation, may occur. We studied 32 subjects, 16 with primary hypercholesterolaemia and 16 normocholesterolaemic controls. Flow-dependent vasodilation, an endothelium-dependent phenomenon, was evaluated by measuring femoral artery diameter and flow velocity in basal conditions and during distal post-ischemic hyperaemia, using a high resolution echo-Doppler. Arterial distensibility and compliance were evaluated for the common carotid and femoral arteries, using a pulsed echo-tracking system and measuring the absolute and relative stroke change in arterial diameter. In the hypercholesterolaemic group there was no flow-dependent arterial relaxation, indicated by the area under the curve of percentage diameter variation as a function of time. This parameter was inversely correlated with both total and LDL-cholesterol values in all population subjects. No difference was observed between the two groups in endothelium-independent vasodilation induced by glyceryl trinitrate administration or arterial wall distensibility and compliance, confirming the hypothesis of a functional defect.

Adult↗

[Endothelial dysfunction and lipid profiles: analysis of the EDO Study].

On the basis of experimental as well as clinical observations, endothelial dysfunction is (defined as impaired or absent endothelium-dependent relaxation) considered to be an important factor in the atherogenesis. Serum lipids abnormalities have been accepted as an epidemiological risk factor of atherosclerosis. In vitro, experimental as well as epidemiological studies revealed the fact, that lipoprotein oxidation plays an important role in atherogenesis. Recently invented non-invasive methods to test and measure the endothelial function in vivo opened the opportunity to study the influence of different serum lipids on the endothelial function directly. Therefore, we decided to employ this non-invasive method for studying the endothelial function and observe the influence of various levels of plasma lipids and lipoprotein oxidation on the endothelial function of arteries in middle-aged men, since they are the most endangered part of population. In our study we used a method of measuring the diameter of a. radialis by high-resolution ultrasound (Sonoline 450, Siemens, Japan) and further mathematical and statistical analysis of functional as well as relative vasodilation reserve followed these measurements. Blood samples were taken within 24 hours of ultrasonography to study serum lipids (total cholesterol, HDL, triglycerides) and parameters of oxidation/antioxidation (superoxid dismutase--SOD, malondialdehyde--MDA). Sixty men, 25-45 years old, from an area of basically the same level of pollution were examined. We found a negative correlation between FVDR and TCH (p = 0.01), FVDR and Tg (p = 0.002) and FVDR a TCH/HDL (p = 0.015). Positive correlation exists (p < 0.001) between TCH, Tg levels and TCH/HDL ratio and MDA level in all cases. Analysing further data from the EDO Study, we can conclude, that increased plasma lipids are more likely to be oxidized, which, in turn, is the probable reason of endothelium-dependent vasodilation impairment.

Adult↗

Irbesartan and lipoic acid improve endothelial function and reduce markers of inflammation in the metabolic syndrome: results of the Irbesartan and Lipoic Acid in Endothelial Dysfunction (ISLAND) study.

BACKGROUND: The metabolic syndrome is associated with increased angiotensin II activity, induction of a proinflammatory and oxidative state, and endothelial dysfunction. We evaluated the ability of irbesartan, an angiotensin receptor blocker, and lipoic acid, an antioxidant, to affect endothelial function and inflammation in patients with the metabolic syndrome. METHODS AND RESULTS: We randomized 58 subjects with the metabolic syndrome in a double-blinded manner to irbesartan 150 mg/d (n=14), lipoic acid 300 mg/d (n=15), both irbesartan and lipoic acid (n=15), or matching placebo (n=14) for 4 weeks. Endothelium-dependent and -independent flow-mediated vasodilation was determined under standard conditions. Plasma levels of interleukin-6, plasminogen activator-1, and 8-isoprostane were measured. After 4 weeks of therapy, endothelium-dependent flow-mediated vasodilation of the brachial artery was increased by 67%, 44%, and 75% in the irbesartan, lipoic acid, and irbesartan plus lipoic acid groups, respectively, compared with the placebo group. Treatment with irbesartan and/or lipoic acid was associated with statistically significant reductions in plasma levels of interleukin-6 and plasminogen activator-1. In addition, treatment with irbesartan or irbesartan plus lipoic acid decreased 8-isoprostane levels. No significant changes in blood pressure were noted in any of the study groups. CONCLUSIONS: Administration of irbesartan and/or lipoic acid to patients with the metabolic syndrome improves endothelial function and reduces proinflammatory markers, factors that are implicated in the pathogenesis of atherosclerosis.

Adult↗

High-dose atorvastatin improves hypercholesterolemic coronary endothelial dysfunction without improving the angiogenic response.

BACKGROUND: Although 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase inhibitors (statins) can restore endothelial function in coronary disease, in vitro and murine studies have shown their effects on myocardial angiogenesis to be biphasic and dose dependent. We investigated the functional and molecular effects of high-dose atorvastatin on the endogenous angiogenic response to chronic myocardial ischemia in hypercholesterolemic swine. METHODS AND RESULTS: Yucatan pigs were fed either a normal (NORM group; n=7) or high-cholesterol diet, with (CHOL-ATR group; n=7) or without (CHOL group; n=6) atorvastatin (3 mg/kg per day) for 13 weeks. Chronic ischemia was induced by ameroid constrictor placement around the circumflex artery. Seven weeks later, microvessel relaxation responses, myocardial perfusion, and myocardial protein expression were assessed. The CHOL group demonstrated impaired microvessel relaxation to adenosine diphosphate (29+/-3% versus 61+/-6%, CHOL versus NORM; P<0.05), which was normalized in the CHOL-ATR group (67+/-2%; P=NS versus NORM). Collateral-dependent myocardial perfusion, adjusted for baseline, was significantly reduced in the CHOL group (-0.27+/-0.07 mL/min per gram versus NORM; P<0.001) as well as the CHOL-ATR group (-0.35+/-0.07 mL/min per gram versus NORM; P<0.001). Atorvastatin treatment was associated with increased phosphorylation of Akt (5.7-fold increase versus NORM; P=0.001), decreased vascular endothelial growth factor expression (-68+/-8%; P<0.001 versus NORM), and increased expression of the antiangiogenic protein endostatin (210+/-48%; P=0.004 versus NORM). CONCLUSIONS: Atorvastatin improves hypercholesterolemia-induced endothelial dysfunction without appreciable changes in collateral-dependent perfusion. Increased myocardial expression of endostatin, decreased expression of vascular endothelial growth factor, and chronic Akt activation associated with atorvastatin treatment may account for the diminished angiogenic response.

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

Endothelial dysfunction and type of cigarette smoked: the impact of 'light' versus regular cigarette smoking.

Acute cigarette smoking leads to temporary endothelial dysfunction, which is an early event in atherogenesis. Sufficient data concerning the effect of cigarettes with low tar and nicotine yield are lacking. Seventeen healthy individuals (nine women, eight men, aged 27.8 +/- 3.6 years) were subjected to evaluation of endothelial function by means of endothelium-dependent, flow-mediated dilatation (FMD) of the brachial artery, before, immediately after and 30, 60 and 90 min after smoking a regular cigarette (nicotine 0.9 mg, tar 12 mg) orthe corresponding 'light' cigarette (nicotine 0.6 mg, tar 8 mg). The following day, measurements were repeated after smoking the opposite kind of cigarette. Baseline FMD was 6.1 +/- 1.6% and 7.2 +/- 2.0% in the light and regular cigarette groups, respectively (p = NS). The overall effect of the regular cigarette over time on FMD compared with the light cigarette was significantly different (F = 3.039, p = 0.023). FMD was significantly depressed after smoking both types (light: F = 8.192, p < 0.001; regular: F = 16.698, p < 0.001). Immediately after smoking, FMD declined in both groups (light: 3.0 +/- 2.4% and regular: 1.6 +/- 3.2%, p < 0.001 and p < 0.001, respectively), and it remained significantly depressed in the regular cigarette group at 30 min (0.75+/-1.5%, p < 0.001) and 60 min (3.5 +/- 3.1%, p = 0.024), while in the light cigarette group FMD differences were abolished at 30, 60 and 90 min after smoking. In conclusion, acute smoking of both regular and light cigarettes leads to temporary vasomotor dysfunction; its duration is shorter after smoking a 'light' cigarette.

Adult↗

[Endothelial dysfunction and oxidative stress in sepsis].

Central to the pathophysiology of sepsis and septic shock is an alteration in endothelial cell function and oxidative stress. Highly complex, integrated responses that include the activation of a number of cell types, inflammatory mediators and the hemostatic system are involved in endothelial dysfunction. On the other hand, the imbalance between the excessive production of reactive oxygen species and/or inadequate antioxidative defenses characterizes the oxidative stress. The overview of all these mechanisms suggests clinical biochemical markers as a possible therapeutic target together with correct intervention timing.

Biomarkers↗

Endothelial dysfunction and cardiovascular risk prediction in peripheral arterial disease: additive value of flow-mediated dilation to ankle-brachial pressure index.

BACKGROUND: Endothelial dysfunction plays a key role in atherogenesis. We prospectively investigated the impact of noninvasive measurement of endothelial function on cardiovascular risk in peripheral arterial disease (PAD). The study was specially aimed at assessing whether brachial artery flow-mediated dilation (FMD) added to the predictive value of ankle-brachial pressure index (ABPI). METHODS AND RESULTS: Of 131 patients monitored for a mean of 23+/-10 months, 18 had a coronary event, 12 a cerebrovascular event, and 9 a peripheral event. The median FMD was lower in patients with an event than in those without (5.8% versus 7.6%, P<0.05), whereas vasodilation to nitroglycerin was similar in the two groups. The cardiovascular event rate was higher in patients with FMD below the median versus those with FMD above the median (P<0.001 by log-rank test). In a Cox proportion hazard model, independent predictors of events were FMD below the median (P<0.01), ABPI below the median (P<0.01), and previous stroke (P<0.02). Similar results were obtained when peripheral events were excluded from the analysis. Below-median ABPI and FMD combined was more accurate in predicting risk (relative risk [RR] 13.0; 95% CI, 3.0 to 56.2; P<0.01) than ABPI (RR, 6.4; 95% CI, 1.4 to 29.1; P<0.02) and FMD (RR, 4.8; 95% CI, 1.1 to 23.3; P<0.05) alone. CONCLUSIONS: A low brachial artery FMD is an independent predictor of cardiovascular risk in patients with PAD and adds to the prognostic value of ABPI, which is currently the most powerful prognostic indicator in PAD.

Ankle↗

Elevated blood pressure in adolescent boys predicts endothelial dysfunction: the cardiovascular risk in young Finns study.

Hypertension is a major risk factor for atherosclerosis. It may cause or be a consequence of endothelial dysfunction. We studied whether systolic blood pressure measured in childhood and adolescence predicts endothelial-dependent brachial flow-mediated dilation (FMD) in adulthood. Brachial FMD was measured in 2109 white adults, aged 24 to 39 years, in the 21-year follow-up of the Cardiovascular Risk in Young Finns Study. These subjects have risk factor data available dating back to their childhood (baseline in 1980, ages 3 to 18 years). In male subjects, the level of systolic blood pressure measured in adolescence (at ages 12 to 18 years at baseline) was inversely related to adulthood FMD (P=0.004). This association was independent of brachial diameter and other childhood (P=0.003) and adulthood risk factors, including blood pressure (P=0.03). Childhood (age 3 to 9 years at baseline) systolic blood pressure did not correlate with adult FMD in men or in women (P always >0.2). In male subjects, elevated systolic blood pressure in adolescence predicts impaired brachial endothelial function 21 years later in adulthood. This association is independent of other childhood and adulthood cardiovascular risk factors suggesting that blood pressure elevation in adolescence may have an influence on biological processes that regulate endothelium-dependent flow-mediated vasodilatation capacity.

Adolescent↗

Effect of angiotensin-converting enzyme inhibition on renal filtration surface area in hypertensive rats.

BACKGROUND: Angiotensin-converting enzyme (ACE) inhibitor treatment leads to protective effects on the cellular structure of the glomerulus and the kidney. The aim of this study was to determine whether ACE inhibition increases renal filtration surface area in the spontaneously hypertensive rat (SHR). METHODS: SHR were treated with the ACE inhibitor perindopril at a high dose (3 mg/kg/day) or a low dose (0.1 mg/kg/day) during the period of hypertension development, from 7 to 14 weeks of age. Some animals were treated concomitantly with the bradykinin B2 receptor antagonist, S16118. Tail-cuff systolic blood pressure and body weights were measured twice weekly. At termination of treatment, glomerular number and volume, length, and surface area of glomerular capillaries and renal filtration surface area were estimated using unbiased stereological techniques. RESULTS: There were significant dose-related reductions in blood pressure with high- and low-dose perindopril treatment. Neither low- nor high-dose perindopril treatment had any effect on glomerular number or size or glomerular capillary length and surface area. Hence, there was no significant difference in total renal filtration surface area between any of the experimental groups (8721 +/- 610 mm2 in untreated SHR and 7879 +/- 338 mm2 and 8767 +/- 437 mm2 in the low and high dose perindopril-treated groups, respectively). Coadministration of the bradykinin antagonist did not affect any of the glomerular parameters. CONCLUSIONS: ACE inhibition during the period of hypertension development does not lead to an enhanced glomerular capillary growth or increases in total renal filtration surface area in this model.

Angiotensin-Converting Enzyme Inhibitors↗

Angiotensin II type 1 receptor antagonism improves hypercholesterolemia-associated endothelial dysfunction.

OBJECTIVE: Hypercholesterolemia-induced angiotensin II type 1 (AT1) receptor overexpression is thought to be a key event in the development of endothelial dysfunction. METHODS AND RESULTS: The effect of a 6-week treatment with the AT1 receptor antagonist candesartan (16 mg/d) on endothelial function and serum inflammation markers was compared with the effect of treatment with placebo or the calcium channel antagonist felodipine (5 mg/d) in 47 hypercholesterolemic patients (low density lipoprotein cholesterol >160 mg/dL). Endothelial function was assessed by measurement of forearm blood flow (FBF) by venous occlusion plethysmography. FBF during reactive hyperemia was significantly improved by candesartan, whereas felodipine and placebo exerted no effect. Nitroglycerin-induced vasorelaxation and basal FBF were not altered significantly. Blood pressure and cholesterol levels were not affected significantly by any drug. Serum concentrations of 8-isoprostane, monocyte chemoattractant protein-1, and soluble intercellular adhesion molecule-1 were significantly reduced by candesartan treatment but not by placebo or felodipine (ELISA assays). Levels of high-sensitivity C-reactive protein and tumor necrosis factor-alpha were not altered significantly by any treatment. CONCLUSIONS: These data suggest that AT1 receptor antagonism improves endothelial function during hypercholesterolemia and that this applies not only to endothelium-dependent vasodilatation but also to oxidative stress and events involved in monocyte attraction and adhesion. AT1 receptor blockade may potentially represent a novel approach for the prevention of vascular dysfunction associated with hypercholesterolemia that is independent of lipid-lowering and blood pressure-lowering interventions.

Angiotensin II↗

Selective right, but not left, coronary endothelial dysfunction precedes development of pulmonary hypertension and right heart hypertrophy in rats.

We investigated a causal role for coronary endothelial dysfunction in development of monocrotaline (MCT)-induced pulmonary hypertension and right heart hypertrophy in rats. Significant increases in pulmonary pressure and right ventricular weight did not occur until 3 wk after 60 mg/kg MCT injection (34 +/- 4 vs. 19 +/- 2 mmHg and 37 +/- 2 vs. 25 +/- 1% septum + left ventricular weight in controls, respectively). Isolated right coronary arteries (RCA) showed significant decreases in acetylcholine-induced NO dilation in both 1-wk (33 +/- 3% with 0.3 microM; n = 5) and 3-wk (18 +/- 3%; n = 11) MCT rats compared with control rats (71 +/- 8%, n = 10). Septal coronary arteries (SCA) showed a smaller decrease in acetylcholine dilation (55 +/- 8% and 33 +/- 7%, respectively, vs. 73 +/- 8% in controls). No significant change was found in the left coronary arteries (LCA; 88 +/- 6% and 81 +/- 6%, respectively, vs. 87 +/- 3% in controls). Nitro-L-arginine methyl ester-induced vasoconstriction, an estimate of spontaneous endothelial NO-mediated dilation, was not significantly altered in MCT-treated SCA or LCA but was increased in RCA after 1 wk of MCT (-41 +/- 6%) and decreased after 3 wk (-18 +/- 3% vs. -27 +/- 3% in controls). A marked enhancement to 30 nM U-46619-induced constriction was also noted in RCA of 3-wk (-28 +/- 6% vs. -9 +/- 2% in controls) but not 1-wk (-12 +/- 7%) MCT rats. Sodium nitroprusside-induced vasodilation was not different between control and MCT rats. Together, our findings show that a selective impairment of right, but not left, coronary endothelial function is associated with and precedes development of MCT-induced pulmonary hypertension and right heart hypertrophy in rats.

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

Plasma VEGF and soluble VEGF receptor FLT-1 in proliferative retinopathy: relationship to endothelial dysfunction and laser treatment.

PURPOSE: To study plasma levels of vascular endothelial growth factor (VEGF, an index of angiogenesis), its soluble receptor (sFlt-1) and von Willebrand factor (vWf, an index of endothelial damage or dysfunction) in patients with proliferative retinopathy and corresponding changes in plasma levels after pan-retinal photocoagulation (PRP). METHODS: Eighteen patients (10 men; age, 57+/-16 years, mean +/- SD) with proliferative retinopathy secondary to diabetes (n = 13) and ischemic retinal vein occlusion (n = 5) with no previous PRP therapy were studied. Blood samples were obtained before and at 4 months after the last PRP session. Baseline (prelaser) plasma levels of VEGF, sFlt-1, and vWf (all by ELISA) were compared with levels in 16 diabetic patients with background retinopathy ("hospital controls"), and 18 healthy, age- and sex-matched "healthy controls." RESULTS: Patients with proliferative retinopathy had significantly raised plasma VEGF when compared with both control groups (P = 0.001). Patients with proliferative retinopathy and hospital controls had significantly raised plasma vWf levels when compared with healthy controls (P = 0.012). There was no difference in sFlt-1 levels between patients and controls (P = 0.162). After PRP, there was a significant reduction in plasma VEGF levels at 4 months' follow-up (P < 0.001), but no significant changes in plasma sFlt-1 or vWf levels. Patients with complete resolution of neovascularization had a trend toward lower median VEGF levels (80 versus 150 pg/ml, P = 0.062), but vWf levels (P = 0.50) and sFlt-1 (P = 0.479) were not statistically different. Baseline VEGF and sFlt-1 levels were significantly correlated (Spearman r = 0.505, P = 0.032) but after PRP at 4 months' follow-up, this was no longer significant (r = -0.269, P = 0.28). CONCLUSIONS: In this pilot study, patients with proliferative retinopathy demonstrate elevated peripheral markers of angiogenesis and endothelial dysfunction, suggesting a role for these processes in the pathogenesis of this condition. A fall in levels of VEGF after successful laser treatment may provide an opportunity for monitoring disease progression or relapse via a blood sample.

Diabetes Complications↗