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Inhibiting the NO pathway with intracoronary L-NAME infusion increases endothelial dysfunction and intimal hyperplasia after heart transplantation.

BACKGROUND: The endothelium protects the vascular wall through the nitric oxide (NO) release. Coronary endothelial dysfunction occurs early after heart transplantation and predicts the development of intimal thickening typical of graft coronary vasculopathy. OBJECTIVE: We designed this study to examine the effect of endothelial NO synthase (eNOS) inhibition on the endothelial dysfunction caused by rejection and on the development of accelerated atherosclerosis after heart transplantation. METHODS: To study the effect on these 2 end-points of inhibiting eNOS with intracoronary L-nitro arginine methyl ester (L-NAME; 1 mg/kg/day), infused with an osmotic pump for 30 days, we used a porcine model of heterotopic heart transplantation with pre-operative immunologic typing, to permit slow rejection without the need for immunosuppression. The endothelium-dependent relaxations of allografted coronary arteries, allografted arteries infused with L-NAME, allografted arteries mounted with the pump, and vehicle and native coronary arteries were compared 30 days after graft implantation using standard organ chamber experiments. We evaluated intimal thickening using a semi-quantitative scale (0-4+ grading). RESULTS: A significant decrease in relaxations to serotonin (5-HT) occurred in allografted arteries infused directly with L-NAME compared with allografted arteries from swine receiving 5-HT, and relaxations in the latter were decreased compared with those of swine receiving the vehicle and native coronary arteries (p < 0.05). We found no significant differences in endothelium-dependent relaxations to bradykinin among coronary rings from all groups. We observed a significant increase in the prevalence and severity of intimal thickening in allografted coronary arteries infused with L-NAME compared with allografts not infused (p < 0.05), which had significantly more intimal thickening compared with native coronary arteries (p < 0.05). CONCLUSION: These results demonstrate that inhibiting the NO pathway worsens the endothelial dysfunction caused by rejection after heart transplantation and accelerates the intimal thickening process, leading to graft coronary vasculopathy. Strategies designed to preserve endothelial integrity and function of the endothelial NO pathway should be used to prevent graft coronary vasculopathy.

Animals↗

Impact of endothelial dysfunction on left ventricular remodeling after successful primary coronary angioplasty for acute myocardial infarction--analysis by quantitative ECG-gated SPECT--.

BACKGROUND: We hypothesized that endothelial cell integrity in the risk area would influence left ventricular remodeling after acute myocardial infarction. PATIENTS AND METHODS: Twenty patients (61 +/- 8 y.o.) with acute myocardial infarction underwent 99mTc-tetrofosmin imaging in the subacute phase and three months after successful primary angioplasty due to myocardial infarction. All patients were administered angiotensin-converting enzyme inhibitor after revascularization. Cardiac scintigraphies with quantitative gated SPECT were performed at the sub-acute stage and again 3 months after revascularization to evaluate left ventricular (LV) remodeling. The left ventricular ejection fraction (EF) and end-systolic and end-diastolic volume (ESV, EDV) were determined using a quantitative gated SPECT (QGS) program. Three months after myocardial infarction, all patients underwent cardiac catheterization examination with coronary endothelial function testing. Bradykinin (BK) (0.2, 0.6, 2.0 microg/min) was administered via the left coronary artery in a stepwise manner. Coronary blood flow was evaluated by Doppler flow velocity measurement. Patients were divided into two groups by BK-response: a preserved endothelial function group (n = 10) and endothelial dysfunction group (n = 10). RESULTS: At baseline, both global function and LV systolic and diastolic volumes were similar in both groups. However, LV ejection fraction was significantly improved in the preserved-endothelial function group, compared with that in the endothelial dysfunction group (42 +/- 10% to 48 +/- 9%, versus 41 +/- 4% to 42 +/- 13%, p < 0.05). LV volumes progressively increased in the endothelial dysfunction group compared to the preserved-endothelial, function group (123 +/- 45 ml to 128 +/- 43 ml, versus 111 +/- 47 ml to 109 +/- 49 ml, p < 0.05). CONCLUSION: In re-perfused acute myocardial infarction, endothelial function within the risk area plays an important role with left ventricular remodeling after myocardial infarction.

Angioplasty, Balloon, Coronary↗

Oral L-arginine administration attenuates postprandial endothelial dysfunction in young healthy males.

BACKGROUND: Endothelial dysfunction is considered the earliest stage of atherosclerosis. Postprandial phase is associated with a transient impairment of endothelial function concomitantly with the triglyceride-rich lipoprotein increase. This phenomenon may be explained by the oxidative burden induced by triglyceride-rich lipoproteins, reducing nitric oxide bioavailability. OBJECTIVE: To investigate the effect of a diet enriched with L-arginine, the substrate for nitric oxide synthesis on endothelial function in healthy volunteers. METHODS: Endothelial function (expressed as flow-mediated vasodilation (FMV) of the brachial artery), total cholesterol, LDL-cholesterol, HDL-cholesterol, triglycerides, LDL-size, Lp (a) and reduced glutathione (GSH) were evaluated in seven healthy males (mean age 23 +/- 3 years) without cardiovascular risk factors. Measurements were made at baseline and 2, 4 and 6 h after a standardized oral fat load. L-arginine (6 g daily) was administered for 10 days. On the 11th day the oral fat load and the parameters examined previously at entry were repeated. RESULTS: After the first oral fat load, FMV significantly decreased at 2 and 4 h, and overlapped with the basal levels at 6 h. After L-arginine treatment, FMV significantly decreased at 2 h and normalized after 4 and 6 h. Triglycerides increased at 2 and 4 h and decreased after 6 h in both sets of observations relating to before and after L-arginine administration. GSH dropped 2 h after the fat load, both before and after L-arginine. Before L-arginine, FMV exhibited a significant correlation with triglycerides (r= -0.426, P= 0.024) and GSH (r=0.48; P=0.009). After L-arginine, FMV was related to GSH (r=0.39; P=0.03) but not to triglycerides (r= -0.12; P=0.52). CONCLUSION: Postprandial endothelial impairment is partly abolished by L-arginine administration. These data, which require confirmation, suggest the importance of dietary choice for atherosclerosis prevention even in young healthy subjects.

Adult↗

Acute smoke-induced endothelial dysfunction is more prolonged in smokers than in non-smokers.

BACKGROUND: The aim of the study was to compare acute endothelial dysfunction caused by smoking one cigarette between smokers and non-smokers. METHODS: Thirty volunteers, 15 smokers and 15 non-smokers, were asked to smoke the same type of cigarette and endothelial function was assessed by FMD (flow mediated dilatation) at fast, 30, 60 and 90 min post-smoking. RESULTS: Overall response of FMD after smoking was significantly different between smokers and non-smokers (p=0.011). Endothelial dysfunction after smoking remained significant for 1-h in smokers (p=0.002), but only for 30 min in non-smokers (p=<0.001). FMD 1-h after smoking was significantly higher in non-smokers than in smokers (p=0.002). CONCLUSIONS: Smokers seem to have sustained and more intensive unfavourable effects in endothelial function than non-smokers after smoking one cigarette. It is possible that long-term smoking diminishes the capacity of endothelium to counterbalance external factors that cause endothelial dysfunction.

Adult↗

Vascular endothelium is the organ chiefly responsible for the catabolism of plasma asymmetric dimethylarginine--an explanation for the elevation of plasma ADMA in disorders characterized by endothelial dysfunction.

Plasma levels of asymmetric dimethylarginine (ADMA), an endogenously produced competitive inhibitor of nitric oxide synthase (NOS), have been found to be elevated in a large number of disorders characterized by endothelial dysfunction; this remarkable phenomenon has yet to receive a plausible explanation. ADMA arises by proteolysis of methylated proteins throughout the body; the majority of this ADMA is catabolized by the enzyme dimethylarginine dimethylaminohydrolase (DDAH), found in many tissues, including those that express NOS. Since the production of ADMA can be considered constitutive, and little intact ADMA emerges in the urine, impaired catabolism is most likely responsible for elevations of plasma ADMA. The association of elevated ADMA with endotheliopathy is readily explained if we assume that vascular endothelium is the organ chiefly responsible for the catabolism of plasma ADMA--a view that is credible owing to the privileged access of endothelium to plasma, the capacity of endothelium for active transport of arginine (and methylated arginines), and the ample DDAH activity of healthy endothelial cells--and further assume that endothelial dysfunction is often attended by a loss of DDAH activity and/or an impairment of arginine transport, reducing the efficiency of ADMA catabolism. Indeed, there is recent evidence that DDAH is inhibited by endothelial oxidative stress, a typical feature of endotheliopathy; there is also some reason to suspect that arginine transport may be less efficient in dysfunctional endothelium. From this perspective, increased plasma ADMA is not the primary cause of the endothelial dysfunction in various disorders, but rather its effect--though the rise in ADMA can then exacerbate this dysfunction by inhibiting endothelial NOS. Supplemental arginine should be of some clinical benefit in disorders characterized by elevated ADMA, since it can offset that adverse impact of ADMA on NOS activity, and possibly exert other beneficial effects on endothelium--but it cannot be expected to reverse the primary cause of the endothelial dysfunction. Whether or not ADMA plays an important pathogenic role, it seems likely to emerge as a potent risk factor for adverse vascular events, since it may be viewed as a barometer of endothelial health.

Amidohydrolases↗

[Study on endothelial dysfunction and platelet activation in elderly hypertensive patients complicated with cerebral infarction].

OBJECTIVE: The aim of this paper was to investigate endothelial dysfunction, platelet activation, and inflammation in elderly hypertensive patients and those complicated with cerebral infarction. METHODS: Twenty-eight elderly hypertensive patients complicated with cerebral infarction(within 72 hours after onset of neurological symptoms), thirty-one Stage I-II elderly hypertensive patients and twenty-eight elderly healthy individuals were selected as subjects. Their plasma concentrations of von Willebrand factor(vWF), alpha granule membrane protein-140(GMP-140), and serum concentrations of C-reaction protein(CRP) were examined. RESULTS: Elderly hypertensive patients complicated with cerebral infarction had significantly higher plasma vWF, GMP-140, and serum CRP than elderly hypertensive patients and elderly healthy individuals. Plasma vWF and GMP-140 were higher in elderly hypertensive patients than elderly healthy individuals, whereas serum CRP was increased slightly and there was no significant difference between elderly hypertensive patients and elderly healthy individuals. CONCLUSION: This study suggests that elderly hypertensive patients complicated with cerebral infarction have obvious endothelial dysfunction, platelet activation, and inflammatory change. Stage I-II elderly hypertensive patients have obvious endothelial dysfunction and platelet activation as well.

Aged↗

Mechanisms underlying endothelial dysfunction in diabetes mellitus: therapeutic implications.

Hyperglycemia is the major causal factor in the development of endothelial dysfunction in patients with diabetes mellitus. Although the mechanisms underlying this phenomenon are likely to be multifactorial, recent in vivo and in vitro studies have indicated a crucial role of the diacylglycerol (DAG)-protein kinase C (PKC) pathway in mediating this phenomenon. PKC may have multiple adverse effects on vascular function, including the activation of superoxide-producing enzymes such as the nicotinamide adenine dinicleotide phosphate (NADPH) oxidase as well as increased expression of a dysfunctional, superoxide-producing, uncoupled endothelial nitric oxide synthase (NOS III). PKC-mediated superoxide production may inactivate nitric oxide (NO) derived from endothelial NOS III, but also may inhibit the activity and/or expression of the NO downstream target, the soluble guanylyl cyclase. Among the different isoforms of PKC, mainly the beta-isoforms have been shown to be activated. Recent studies with selective (isoform-specific) and non-selective PKC inhibitors show that they are able to beneficially influence glucose-induced endothelial dysfunction in experimental animal models as well as in patients, pointing to the therapeutic potential of these compounds in the prevention and treatment of vascular complications of diabetes.

Animals↗

Erectile dysfunction and the cardiovascular patient: endothelial dysfunction is the common denominator.

Erectile dysfunction (ED) is a common condition and studies predict that it will become even more common in the future. There is increasing evidence to suggest that it is predominantly a vascular disease and may even be a marker for occult cardiovascular disease. The common pathological process is at the level of the endothelium, and cardiovascular risk factor control may be the key to preventing ED. Many men with established cardiovascular disease have ED. Specific guidelines for the management of ED in these patients have been produced by an expert panel. Cardiovascular risk stratification is an important initial step in managing such patients. In cardiac patients considered to have low cardiovascular risk, the management of ED can be safe and effective.

Blood Pressure↗

Endothelial dysfunction after lactated Ringer's solution resuscitation for hemorrhagic shock.

BACKGROUND: Endothelial dysfunction is presumed to occur after hemorrhagic shock and resuscitation. This study uses a novel large-animal model to evaluate the effects of diverse resuscitation regimens on endothelial function. METHODS: Twenty-seven adult domestic pigs (Sus scrofa) were used in this study. Control pigs (n = 3) underwent instrumentation alone. The remaining pigs experienced controlled hemorrhagic shock to a mean arterial blood pressure of 30 +/- 5 mm Hg for 45 minutes. Pigs were resuscitated to their baseline mean arterial blood pressure +/-5 mm Hg with either shed blood (SB; n = 8), lactated Ringers solution (40 mL/kg) followed by shed blood (LRSB; n = 8), or lactated Ringers solution alone (LR; n = 8). At baseline, 1 and 4 hours after resuscitation, acetylcholine (5, 10, and 15 microg/min) was infused into the proximal iliac artery to measure endothelial dependent relaxation (EDR). Sodium nitroprusside was infused to determine endothelial independent relaxation at the end of the study to insure smooth muscle vasomotor integrity. External iliac artery luminal diameter was measured using motion-mode ultrasonography. Statistical analysis was performed using repeated-measures analysis of variance with Tukey's post-hoc analysis. RESULTS: All pigs survived the experiment. Pigs required ninefold more resuscitation with LR (370.58 +/- 29 mL/kg) versus SB (41.45 +/- 3.5 mL/kg) or LRSB (76.4 +/- 1.1 mL/kg) (p < 0.05). EDR for LR pigs 1 hour after initiation of resuscitation (R1) was 70.4 +/- 14.4% compared with 94.2 +/- 13.4% for SB and 106.1 +/- 8.2% for LRSB (p < 0.05). At 4 hours after resuscitation (R4), systolic luminal diameters were larger in the SB (0.45 +/- 0.01 cm) and LRSB (0.51 +/- 0.02 cm) groups compared with LR (0.41 +/- 0.03 cm) (LRSB versus LR; p = 0.01). At R4, EDR for the LR group was 78.3 +/- 10.7% compared with SB (101.4 +/- 8.3%) and LRSB (106.4 +/- 7.4%) (p < 0.05). Infusion of sodium nitroprusside confirmed integrity of smooth muscle vasorelaxation. Analysis of serum nitric oxide levels revealed decreased values after resuscitation with LR (9.44 +/- 0.76 mol/L) compared with SB (26.3 +/- 7.8 mol/L) and LRSB (16.3 +/- 1.0 mol/L) (p = not significant). CONCLUSION: This is the first description of a large-animal model to evaluate EDR after hemorrhagic shock. Resuscitation with LR requires significantly larger volumes than SB or LRSB. LR resuscitation leads to endothelial dysfunction, as determined by decreased EDR, versus SB or LRSB. Resuscitation with blood products may preserve nitric oxide bioactivity when compared with crystalloid resuscitation in the setting of hemorrhagic shock.

Animals↗

Prevention of inflammation-induced endothelial dysfunction: a novel vasculo-protective action of aspirin.

BACKGROUND: Inflammation and infection may initiate and promote atherosclerosis or its complications by adverse effects on the vascular endothelium. The mechanisms by which aspirin reduces cardiovascular risk might involve anti-inflammatory actions or direct effects on the endothelium in addition to its antiplatelet action. We investigated the role of aspirin in modulating endothelial dysfunction induced by an experimental inflammatory stimulus. METHODS AND RESULTS: An inflammatory response was generated in healthy volunteers by Salmonella typhi vaccination. Venous occlusion plethysmography was used to assess resistance vessel responses (16 hours before and 8 hours after vaccination) to the endothelium-dependent dilator bradykinin (BK) and the endothelium-independent dilator glyceryl-trinitrate (GTN). Twelve subjects were randomized to receive either aspirin 1.2 g orally or placebo 2 hours before vaccination. After vaccination alone there was suppression of the response to BK in the placebo group (P=0.01), with no change in response to GTN. In the aspirin group there was no change in the response to either BK or GTN after vaccination. Aspirin treatment prevented vaccine-induced elevation of interleukin-1 receptor antagonist but enhanced the generation of tumor necrosis factor-alpha compared with placebo. In an additional 5 individuals, local intrabrachial aspirin (10 mg/min for 15 minutes) failed to restore responses to BK after vaccination. CONCLUSIONS: Experimental inflammation produces endothelial dysfunction, which can be prevented by pretreatment with aspirin. Locally administered aspirin does not reverse vaccine-induced endothelial dysfunction once established. The protective effects of aspirin on inflammation-induced endothelial dysfunction may be through modulation of the cytokine cascade.

Administration, Oral↗

Infliximab improves endothelial dysfunction in systemic vasculitis: a model of vascular inflammation.

BACKGROUND: Endothelial vasomotor dysfunction and markers of systemic inflammation are independent determinants of cardiovascular risk. However, the link between clinical inflammation and endothelial dysfunction is unclear. The aim of this study was to use anti-neutrophil cytoplasmic antibody-associated systemic vasculitis (AASV) as a model of systemic inflammation in which to test the hypothesis that inflammation is associated with endothelial dysfunction and can be reversed with anti-tumor necrosis factor-alpha (TNF-alpha) therapy. METHODS AND RESULTS: Fourteen patients with active AASV and 21 age-matched control subjects were studied. Endothelial function was assessed through the use of forearm plethysmography and related to clinical disease activity: Birmingham Vasculitis Activity Score (BVAS) and serum levels of C-reactive protein (CRP), interleukin-6 (IL-6), and TNF-alpha. The effects of anti-TNF-alpha therapy (infliximab), either alone (n=6) or in combination with standard treatment (n=4), on endothelial function were subsequently determined. Patients had a mean BVAS of 11+/-1, and CRP and IL-6 were higher in the AASV group than in control subjects (34.8+/-10.5 versus 1.6+/-0.2 pg/mL, P<0.001; 9.0+/-0.7 versus 6.7+/-0.6 pg/mL, P=0.02). Forearm blood flow response to acetylcholine (ACh) was reduced in the patients compared with control subjects (P=0.002), but sodium nitroprusside (SNP) responses were not (P=0.3). The response to ACh improved with infliximab treatment (P=0.004) in particular, with infliximab alone (P=0.03). CONCLUSIONS: AASV is associated with endothelial dysfunction. Anti-TNF-alpha therapy, alone or in combination with standard treatment, results in clinical remission, reduced inflammation, and improved endothelium-dependent vasomotor responses.

Anti-Inflammatory Agents, Non-Steroidal↗

Homocysteine and endothelial dysfunction: a link with cardiovascular disease.

The nature of the link between homocysteine and cardiovascular disease has not yet been clearly established. Impaired endothelium-independent vasodilatation is an early feature of vascular disease. In human studies, methionine loading, which acutely elevates plasma homocysteine, induces endothelial dysfunction. Folate therapy, which lowers homocysteine, enhances endothelial function. This is consistent with, but not proof of, homocysteine toxicity to endothelium in vivo. Homocysteine, in high concentration, can induce endothelial dysfunction in vitro. This is accompanied by increased superoxide production, which when inhibited, restores normal endothelial function. These observations suggest that homocysteine may induce vascular endothelial dysfunction by a mechanism involving reactive oxygen species.

Cardiovascular Diseases↗

Endothelin in coronary endothelial dysfunction and early atherosclerosis in humans.

BACKGROUND: The endothelium modulates vascular tone through release of vasodilating substances, such as endothelium-derived relaxing factors, and vasoconstricting substances, such as endothelin. Endothelin concentrations are elevated in humans with atherosclerosis and in hypercholesterolemic pigs. Furthermore, the endothelium-dependent vasodilator acetylcholine increases endothelin in hypercholesterolemia in association with coronary vasoconstriction. The present study was designed to test the hypotheses that coronary endothelial dysfunction in humans is characterized by enhanced coronary and circulating endothelin and that the vasoconstriction associated with acetylcholine results in further release of coronary endothelin. METHODS AND RESULTS: Coronary and circulating endothelin concentrations were measured at baseline and during intracoronary acetylcholine administration in 20 patients undergoing diagnostic coronary angiography. Patients were divided into two groups on the basis of their response to intracoronary acetylcholine. Group 1 (n = 7) demonstrated a normal vasodilatory response, but group 2 (n = 13) demonstrated coronary vasoconstriction. Baseline coronary and circulating endothelin concentrations (as determined by coronary sinus and femoral artery measurements, respectively) were higher in patients who responded to acetylcholine with coronary vasoconstriction (group 2) than in group 1 patients (coronary sinus, 15.9 +/- 1.0 pg/mL versus 7.1 +/- 1.0 pg/mL; femoral, 14.1 +/- 0.9 pg/mL versus 6.8 +/- 1.0 pg/mL, respectively; P < .01). In response to intracoronary acetylcholine, a further increase in coronary endothelin was observed only in group 2; this increase correlated with changes in coronary artery diameter. CONCLUSIONS: This study demonstrates that endothelin immunoreactivity is enhanced in the coronary and systemic circulation in humans with coronary endothelial dysfunction. Moreover, acetylcholine further increased coronary endothelin concentration in patients with coronary endothelial dysfunction and was associated with coronary vasoconstriction. These observations strongly support a role for endothelin as an early participant in and marker for coronary endothelial dysfunction in humans.

Acetylcholine↗

[Selected markers of endothelial dysfunction in patients with subclinical and overt hyperthyroidism].

INTRODUCTION: There are many factors causing endothelial dysfunction. The aim was to observe chosen markers of endothelial function in patients with subclinical and overt hyperthyroidism. MATERIAL AND METHODS: We studied 97 patients with hyperthyroidism: 51 with subclinical (44 F/7 M; mean age 49.3 +/- 15.9 y) and 46 patients with overt (39 F/7 M, mean age 50.4 +/- 13.2 y). The control comprised of 39 healthy volunteers (26 F/13 M, mean age 47.5 +/- 11.8 y). Concentration of TSH, FT3, FT4 were measured by MEIA, TPO Ab, TG Ab, E-selectin, interleukin 6, VCAM-1, ICAM-1 by ELISA. RESULTS: The goiter was found in 71 persons 63F/8M, mean age 49.9 +/- 15.3 y, (42-subclinical, 29-overt). Morbus Graves-Basedow was diagnosed in 26 persons, 20 F/6 M, mean age 49.5 +/- 12.8 y (9-subclinical, 17-overt). There were no significant differences serum concentration of E-selectin, IL-6, ICAM-1 in patients with subclinical and overt hyperthyroidism compared to the control. Statistically significant differences were shown between concentration of IL-6 in patients with Graves-Basedow compared with the control (p < 0.05). Significance of VCAM-1 values were found in the patients with subclinical and overt hyperthyroidism compared to the control (p < 0.001; p < 0.001, respectively). CONCLUSIONS: Among persons with overt and subclinical hyperthyroidism occurs endothelial dysfunction which doesn't depends on exciting cause of thyrotoxicosis but on degree of hyperthyroidism. Elevated concentrations of endothelial markers may confirm that persons with thyroid disorders are extremely exposed to the occurrence of the cardiovascular diseases.

Adult↗

Arginase activity is increased by thrombin: a mechanism for endothelial dysfunction in arterial thrombosis.

BACKGROUND: Earlier observations implicate arterial thrombosis causing endothelial dysfunction by decreasing nitric oxide (NO) levels. NO levels are restored by regional L-arginine supplementation in animal models. The purpose of this study was to investigate the roles of thrombus components in NO generation. STUDY DESIGN: Human umbilical vein endothelial cells were harvested and cultured. The thrombus components thrombin, thrombin receptor agonist peptide (TRAP), and fibrin were added to a media of confluent human umbilical vein endothelial cells. Endothelial nitric oxide synthase (eNOS) activity was assayed by measuring conversion of L-arginine to L-citrulline. Endothelial NOS mRNA levels were quantitated using real-time polymerase chain reaction. Cellular membrane transport of L-arginine through the y+ channel was assayed with (14)C-labeled L-arginine. Arginase activity was determined as the conversion of (14)C L-arginine to (14)C urea and trapped as Na(2)(14)CO(3) for scintillation counting. Arginase protein amounts were assessed using Western blotting. RESULTS: Endothelial cells exposed to thrombin for 4 hours led to increased arginase activity. Thrombin (10 U/mL) caused a 1.6-fold increase compared with that in controls (320+/-29 microM urea/min versus 194+/-10 microM urea/min, p=0.03), and thrombin (30 U/mL) increased arginase activity 2.1-fold (398+/-27 microM urea/min, p < 0.001, versus controls); thrombin at 1 U/mL and fibrin had no effect. TRAP (50 microM) had an effect similar to that of thrombin 10 U/mL (316+/-21 microM urea/min, p < 0.01, versus controls). Protein amounts of arginase corresponded with activity levels. Neither eNOS nor inducible nitric oxide synthase (iNOS) activities were affected by exposure to thrombin and TRAP for 4 hours. Similarly, quantification of eNOS, iNOS, and endothelin-1 mRNA did not change, although CL-100, a known thrombin-inducible gene, was upregulated. Finally, transport of L-arginine into endothelial cells was unaffected by thrombin, TRAP, and fibrin exposure. CONCLUSIONS: Endothelial cells exposed to thrombin have increased arginase enzymatic activity, and the remainder of NO generation capability is unaffected. L-arginine supplementation or arginase blockade may counteract endothelial dysfunction in the setting of acute arterial thrombosis.

Arginase↗

Screening test for preeclampsia through assessment of uteroplacental blood flow and biochemical markers of oxidative stress and endothelial dysfunction.

OBJECTIVE: This study was undertaken to evaluate whether screening through a uterine artery (UtA) Doppler and biochemical markers of oxidative stress and endothelial dysfunction predict preeclampsia. STUDY DESIGN: UtA Doppler was performed at 11 to 14 and 22 to 25 weeks on 1447 asymptomatic pregnant women. Oxidative stress, endothelial dysfunction, and antiangiogenic state were assessed in women who later developed preeclampsia and normotensive controls. RESULTS: There was a significantly increased of UtA pulsatility index (PI), plasma levels of soluble fms-like tyrosine kinase 1 (sFlt1), PAI-1/PAI-2 ratio, and F-2 isoprostane in women who subsequently developed preeclampsia compared with control pregnancies. Multivariate logistic regression showed that increased UtA PI performed at 23 weeks was the best predictor for preeclampsia. CONCLUSION: This study demonstrates early changes in markers of impaired placentation, antiangiogenic state, oxidative stress, and endothelial dysfunction suggesting that these derangements may play a role in the pathogenesis of preeclampsia. Our data point to UtA as the best test to predict preeclampsia at 23 weeks of gestation.

Adult↗

Low-density lipoprotein subfractions and cardiovascular risk in hypertension: relationship to endothelial dysfunction and effects of treatment.

Although hypertensive patients are at particular risk of vascular complications, the possible contribution of an atherogenic lipoprotein profile and endothelial dysfunction to this risk is unclear. We investigated this by measuring LDL subfractions and flow-mediated dilation (FMD) (reflecting endothelial dysfunction) in a cohort of high-risk hypertensive patients. We studied 84 hypertensive patients (74 men; mean age, 64 years; SD 8). Chylomicron-free LDL subfractions were analyzed by disc polyacrylamide gel electrophoresis, producing an LDL score, with higher scores being equivalent to a greater proportion of the more atherogenic LDL subfractions. High-resolution ultrasound was used to assess endothelium-dependent brachial artery FMD after reactive hyperemia after vessel occlusion. Baseline levels were compared with 61 age- and gender-matched healthy normotensive control subjects. Mean LDL score was higher and FMD impaired in hypertensive subjects compared with control subjects. These indexes were significantly improved after 6 months of cardiovascular risk factor management. LDL score correlated significantly with the 10-year Framingham coronary heart disease risk score, with a negative correlation with FMD (both P<0.001). Abnormal atherogenesis and endothelial dysfunction are both present in hypertension and appear to be related to each other, potentially leading to vascular complications. The abnormal LDL scores also correlate with the 10-year cardiovascular risk and can be positively influenced by cardiovascular risk management.

Cardiovascular Diseases↗

A high-fat, refined-carbohydrate diet induces endothelial dysfunction and oxidant/antioxidant imbalance and depresses NOS protein expression.

We tested whether consumption of a high-fat, high-sucrose (HFS) diet can affect endothelium-dependent relaxation, whether this precedes the development of diet-induced hypertension previously noted in this model, and whether it is mediated, in part, by changes in nitric oxide synthase (NOS) and/or NOS regulatory proteins. Female Fischer rats were fed either a HFS diet or standard low-fat, complex-carbohydrate chow starting at 2 mo of age for 7 mo. Vasoconstrictive response to KCl and phenylephrine was similar in both groups. Vasorelaxation to acetylcholine was significantly impaired in the HFS animals, and there were no differences in relaxation to sodium nitroprusside, suggesting that the endothelial dysfunction is due, at least in part, to nitric oxide deficiency. HFS consumption decreased protein expression of endothelial NOS in aorta, renal, and heart tissues, neuronal NOS in kidney, heart, aorta, and brain, and inducible NOS in heart and aorta. Caveolin-1 and soluble guanylate cyclase protein expression did not change, but AKT protein expression decreased in heart and aorta and increased in kidney tissue. Consumption of HFS diet raised brain carbonyl content and plasma hydrogen peroxide concentration and diminished plasma total antioxidant capacity. Because blood pressure, which is known to eventually rise in this model, was not as yet significantly elevated, the present data suggest that endothelial dysfunction precedes the onset of diet-induced hypertension. The lack of a quantitative change in caveolin-1 and soluble guanylate cyclase protein content indicates that alteration in these proteins is not responsible for the endothelial dysfunction. Thus nitric oxide deficiency combined with antioxidant/oxidant imbalance, appears to be a primary factor in the development of endothelial dysfunction in this model.

Animals↗