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Inhibition of neointimal formation after balloon injury by cilostazol, accompanied by improvement of endothelial dysfunction and induction of hepatocyte growth factor in rat diabetes model.

AIMS/HYPOTHESIS: Cilostazol, a well-known phosphodiesterase type 3 (PDE3) inhibitor for the treatment of peripheral arterial disease, has vasodilator properties and an anti-proliferative action on the growth of vascular smooth muscle cells. In this study, we tested whether cilostazol inhibits neointimal formation and improves endothelial dysfunction after balloon injury in non-diabetic and diabetic rats. METHODS: Cilostazol or vehicle was administered to non-diabetic and streptozotocin-induced diabetic rats from 7 days before to 14 days after balloon injury of the carotid artery. We focused on the expression of hepatocyte growth factor to explore how cilostazol improved endothelial dysfunction. Also, we studied the effects of cilostazol on hepatocyte growth factor production in in vitro experiments. RESULTS: At 14 days after injury, the ratio of neointimal to medial area was decreased in rats treated with cilostazol in non-diabetic and diabetic animals. The impaired response to acetylcholine in balloon injured vessels was improved by cilostazol in non-diabetic and diabetic rats (p < 0.05). Vascular hepatocyte growth factor concentration was decreased in injured vessels of non-diabetic rats compared to uninjured vessels. Moreover, hepatocyte growth factor was further decreased in injured vessels of diabetic rats as compared to those of non-diabetic rats (p < 0.05). Of note, administration of cilostazol attenuated the decrease in hepatocyte growth factor concentration in injured vessels of both non-diabetic and diabetic rats (p < 0.01). Increase in vascular hepatocyte growth factor by cilostazol was confirmed by in vitro experiments showing that cilostazol increased hepatocyte growth factor concentration in cultured human vascular smooth muscle cells, accompanied by cAMP accumulation. CONCLUSION/INTERPRETATION: Our study shows that the increase in vascular hepatocyte growth factor by cilostazol could improve abnormal growth of vascular smooth muscle cells and endothelial dysfunction through rapid regeneration of endothelial cells.

8-Bromo Cyclic Adenosine Monophosphate↗

Role of endothelial dysfunction in insulin resistance.

The endothelium regulates vascular tone through the release of vasodilating and vasoconstricting substances. The most important of these vasodilating substances is nitric oxide (NO), which is also vascular protective and inhibits inflammation, oxidation, vascular smooth muscle cell proliferation, and migration. Damage to the endothelium causes endothelial dysfunction with impaired release of NO and loss of its antiatherogenic protection. Traditional risk factors for coronary artery disease, including diabetes, hypercholesterolemia, hypertension, and low levels of high-density lipoprotein cholesterol, are associated with endothelial dysfunction and thus promote the atherogenic process. More recently, insulin resistance in the absence of overt diabetes or the metabolic syndrome has been associated with endothelial dysfunction. This association provides evidence that the atherosclerotic process may actually begin earlier in the spectrum of insulin resistance, ultimately resulting in a progression of the metabolic syndrome to prediabetes and then to type 2 diabetes. Aggressive treatment of dyslipidemia and hypertension, even before the onset of type 2 diabetes, would appear prudent in decreasing the progression of the atherosclerotic process. The thiazolidinediones are peroxisome proliferator-activated receptor-gamma agonists that improve glucose and lipid metabolism. These agents have recently been shown to improve endothelial function in the early stages of insulin resistance. Results from ongoing trials with thiazolidinediones will reveal whether they will also reduce cardiovascular end points.

Arteriosclerosis↗

Targeting endothelial dysfunction in hypertensive subjects.

The endothelium is a favourite early target of cardiovascular risk factors and cardiovascular diseases like hypertension. This key role of the endothelium results from its capacity to respond to numerous autocrine and paracrine stimuli and to mechanical factors like shear stress but also from the pathophysiological consequences of endothelial dysfunction on vasomotor tone, arterial stiffness, arterial remodelling, and inflammation, all of which are factors that play a critical role in atherosclerosis and target-organ damage. In hypertension, endothelial dysfunction has been shown at the level of both resistance and conduit arteries and mainly results from an increase in nitric oxide (NO) degradation by interaction between NO and superoxide anions, while in experimental models of hypertension a decrease in NO production can also be observed. The fact that forearm endothelial dysfunction is a marker of future cardiovascular events in patients with hypertension stresses the importance of the clinical evaluation of endothelial function and of the evaluation of the effects of the different antihypertensive drug classes on this parameter. In this context, many studies have demonstrated that angiotensin-converting enzyme inhibitors, the perindopril-indapamide combination, and angiotensin II type I receptor (AT1) blockers improve endothelium-dependent vasodilatation partly independently of arterial pressure. Both their antioxidant effects and the stimulation of the release of NO are involved in their beneficial effects. For calcium antagonists, only the recent drugs have been shown to improve endothelial function with a simultaneous improvement in several markers of oxidative stress. Finally, beta-blockers classically do not affect endothelial function. Only nebivolol, a beta-blocker with NO donor properties, has been shown to improve endothelial function, but this effect results from the increase in NO and not from the beta-blocking properties of the drug.

Angiotensin-Converting Enzyme Inhibitors↗

Circulating intercellular cell adhesion molecule-1, endothelin-1 and von Willebrand factor-markers of endothelial dysfunction in uncomplicated essential hypertension: the effect of treatment with ACE inhibitors.

The aim of the study was to examine whether the circulating cell adhesion molecules, von Willebrand factor (vWf) and endothelin-1, are elevated in patients with essential hypertension with no other risk factors for atherosclerosis and thus may serve as a markers of endothelial dysfunction in uncomplicated hypertension. Furthermore, the effect of treatment with the ACE inhibitor, quinapril, on levels of endothelial dysfunction markers were studied. The levels of adhesion molecules (intercellular cell adhesion molecule-1 [ICAM-1], E-selectin, P-selectin), von Willebrand factor (vWf) and endothelin-1 were measured in patients with hypertension without any other risk factors of atherosclerosis before and after treatment with quinapril (n = 22) and in normotensive controls (n = 22). Compared with normotensive subjects, the hypertensive patients had significantly higher levels of ICAM-1 (238 vs 208 ng/ml, P = 0.02), vWf (119 vs 105 IU/dl, P < 0.05) and endothelin-1 (5.76 vs 5.14 fmol/ml, P < 0.05). Three-month treatment of hypertensive patients with quinapril led to a significant decrease in the levels of endothelin-1 (5.76 vs 5.28 fmol/ml, P < 0.01). We did not observe significant changes in the levels of adhesion molecules and vWf after ACE inhibitor treatment, although a trend toward a decrease was apparent with all these parameters. Patients with uncomplicated hypertension with no other risk factors of atherosclerosis had significantly elevated levels of ICAM-1, vWf, and endothelin-1. Our data suggest that these factors may serve as markers of endothelial damage even in uncomplicated hypertension. In hypertensive patients, treatment with the ACE inhibitor quinapril resulted in a significant decrease in endothelin-1 levels. These findings indicate a beneficial effect of ACE inhibitors on endothelial dysfunction in hypertensive patients.

Adult↗

Stress and vascular responses: endothelial dysfunction via lectin-like oxidized low-density lipoprotein receptor-1: close relationships with oxidative stress.

Endothelial dysfunction is associated with pathological vascular conditions including atherosclerosis, hypertension, and diabetes. The oxidatively modified form of low-density lipoprotein (LDL) is recognized as a major cause of endothelial dysfunction in atherogenesis. As the receptor for oxidized LDL in endothelial cells, we have identified the lectin-like oxidized LDL receptor-1 (LOX-1). LOX-1 is up-regulated by products of oxidative stresses and the molecules that induce oxidative stresses. Activation of LOX-1 induces the generation of reactive oxygen species and decreases NO released from endothelial cells. LOX-1 activation further induces the expression of endothelin-1, AT(1) receptor, and cell adhesion molecules. Together with these properties, LOX-1 works as an adhesion molecule for activated platelets and neutrophils. Thus, LOX-1, within the close relationships between oxidative stress generation and response, enhances functional changes in endothelial cells that are relevant to the disturbed vascular homeostasis under pathological settings.

Animals↗

Endothelial dysfunction is an independent factor responsible for vasospastic angina.

In order to evaluate peripheral endothelial function in patients with vasospastic angina (VSA), we measured flow-mediated dilation (FMD) of the brachial artery in patients with VSA and compared it with FMD in patients without VSA. Endothelial dysfunction is considered one of the mechanisms underlying VSA. However, its exact role remains to be clarified. The study included 30 patients with positive spasm-provocational test results without evidence of significant coronary stenosis (VSA group) and 30 patients with negative spasm-provocational test results without evidence of significant coronary stenosis (control group). In each patient, brachial artery diameter responses to hyperemic flow and glyceryl trinitrate spray were measured using high-resolution ultrasound. The carotid intima-media thickness was also measured as a marker of systemic atherosclerosis. FMD was lower in the VSA group (4.8+/-0.5%) compared with the control group (9.4+/-0.7%, P<0.0001). In the VSA group, FMD was not affected by coronary risk factors or the presence of atherosclerotic changes on coronary angiography. Glyceryl trinitrate-induced dilation did not differ between the two groups. The intima-media thickness was comparable between the VSA (0.85+/-0.04 mm) and control groups (0.81+/-0.05 mm). These findings indicated that peripheral endothelial function is impaired only in the VSA group, whereas the atherosclerotic changes were similar in the two groups. We conclude that endothelial dysfunction may be an independent factor responsible for the development of VSA.

Aged↗

Effect of doxazosin on endothelial dysfunction in hypercholesterolemic/antioxidant-deficient rats.

Hypertension, hypercholesterolemia, atherosclerosis, and coronary heart disease are associated with abnormal endothelium-dependent, nitric oxide-mediated vasorelaxation. In rats, hypercholesterolemia in combination with deficiencies of vitamin E and selenium results in increased endogenous lipid oxidation and endothelial dysfunction. Two hydroxymetabolites of doxazosin, an alpha 1-adrenergic blocking antihypertensive agent, inhibit human lipid oxidation in vitro in a dose-dependent fashion. The present studies were performed to determine the effect of in vivo treatment with doxazosin on endothelial dysfunction in hypercholesterolemic/ antioxidant-deficient rats. Dahl rats were fed 1) a standard diet, 2) a high cholesterol (4%) diet, or 3) a high cholesterol, vitamin E- and selenium-deficient diet. A subgroup of animals in each group were administered doxazosin (3.5 mg/100 g/day) for 16 weeks. In the aortas, vascular relaxations induced by acetylcholine were significantly decreased (P < .05) in high cholesterol/antioxidant-deficient rats compared with normal and high cholesterol animals. Doxazosin treatment prevented the impairment in endothelium-dependent vascular relaxation in the high cholesterol/antioxidant-deficient group. Vasorelaxation in response to the exogenous nitric oxide donor diethylamine nanoate, which was significantly impaired (P < .05) in aortas from high cholesterol/antioxidant-deficient animals compared with normal and high cholesterol animals, was normalized in aortas from high cholesterol/ antioxidant-deficient animals that had received doxazosin. The antioxidant effect of doxazosin may have therapeutic implications in diseases associated with endothelial dysfunction linked to products of lipid oxidation.

Adrenergic alpha-Antagonists↗

Coronary endothelial dysfunction after ischemia and reperfusion in the dog: a functional and morphological investigation.

Coronary endothelial dysfunction is characterized by a lower response to endothelium-dependent vasodilators such as acetylcholine (ACh) and serotonin (5HT), but by an unaltered response to endothelium-independent vasodilators such as nitroglycerin (NTG). In the present study, we investigated the vasoreactivity of the coronary bed in vivo, in a dog model of ischemia and reperfusion (I/R). We also assessed the morphology of the subepicardial arterioles and capillary bed by means of scanning electron microscopy (SEM). Anesthetized, instrumented dogs were divided in two groups. One group (N = 27) was submitted to ischemia (60 min) and reperfusion (180 min) of the left circumflex coronary artery, the second group (N = 8) was sham-operated. Prior to and following I/R, ACh, 5-HT, and NTG were given intracoronarily. At the end of the experiment a 1 cm3 myocardial biopsy was processed for SEM. The sham-operated dogs showed a reduction of basal coronary flow of 11%, but the vasoreactivity to ACh and 5-HT remained constant. In the I/R group, basal coronary flow was reduced by 35% (p < 0.05), and the vasoreactivity to ACh and 5-HT, but not to NTG, was significantly blunted. At SEM the arterioles of the dogs submitted to I/R showed a marked adhesion of leukocytes associated with holes on the endothelial surface, while the capillary bed was free of changes and patient. Thus, following I/R, coronary endothelial dysfunction could be demonstrated in vivo by the blunting of the vasoreactive responses to two different endothelium-dependent vasodilators. The responses to NTG were not affected, probably because the function of the smooth muscle cell was preserved, and the capillary bed was patent.

Animals↗

Pulse pressure and endothelial dysfunction in never-treated hypertensive patients.

OBJECTIVES: This study sought to investigate whether pulse pressure (PP) is associated with endothelium-dependent vasodilation in a group of never-treated hypertensives. BACKGROUND: Pulse pressure represents a well-established independent predictor for cardiovascular morbidity and mortality. Forearm endothelial dysfunction, defined as impaired vasodilating response to acetylcholine (ACh), may be associated with several cardiovascular risk factors. Recently, the prognostic value of coronary and forearm endothelial dysfunction has been demonstrated. METHODS: All patients underwent measurement of blood pressure (BP) both clinically and in an ambulatory setting. Endothelium-dependent and -independent vasodilation was investigated by strain-gauge plethysmography in 262 hypertensive patients (age 30 to 55 years) during intra-arterial infusion of increasing doses of ACh and sodium nitroprusside. RESULTS: We observed that systolic BP rather than diastolic BP significantly induces the PP increase. Linear regression analysis revealed a significant inverse correlation between ACh-stimulated forearm blood flow (FBF) and age, body mass index, clinic and monitored systolic BP, and clinic and monitored PP. However, stepwise multivariate analysis showed that monitored PP was the strongest independent predictor of ACh-stimulated FBF, accounting for 33.6% of the variation. After adjustment for other covariates, ACh-stimulated FBF decreases by 8.7% for each mm Hg increment in monitored PP. CONCLUSIONS: Our data indicate that monitored PP is inversely correlated with ACh-stimulated vasodilation. It is possible to hypothesize that elevation in PP reduces FBF by increasing oxidative stress and reducing production of nitric oxide caused by reduced shear stress. In addition, the present findings demonstrate the accuracy of ambulatory BP as a prognostic predictor of hypertension-associated endothelial dysfunction.

Acetylcholine↗

Role of tight junction derangement in the endothelial dysfunction elicited by exogenous and endogenous peroxynitrite and poly(ADP-ribose) synthetase.

DNA single-strand breakage and activation of the nuclear enzyme poly(ADP-ribose) synthetase (PARS) triggers an energy consuming, inefficient repair cycle, which contributes to peroxynitrite-induced cellular injury. Here, we investigated whether peroxynitrite and PARS activation are involved in tight junctions (tight junction) derangement in the endothelial dysfunction in cells exposed to peroxynitrite and in vascular rings of animals subjected to zymosan non-septic shock. In human umbilical vein endothelial cells (HUVEC) in vitro, peroxynitrite caused a dose-dependent suppression of mitochondrial respiration, as measured by the mitochondrial-dependent conversion of the dye 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide to formazan. Moreover, peroxynitrite caused activation of PARS. Inhibition of PARS by 3-aminobenzamide (3-AB; 1 mM) reduced the peroxynitrite-induced suppression of mitochondrial respiration in HUVECs. Vascular rings exposed to peroxynitrite exhibited reduced endothelium-dependent relaxant responses in response to acetylcholine. Peroxynitrite incubation also caused a significant derangement of zonula occludens (ZO)-1, which was significantly affected by pharmacological inhibition of PARS. 3-AB ameliorated the development of this peroxynitrite-induced endothelial dysfunction. In vascular rings obtained from the zymosan-treated rats, there was a marked suppression of the endothelium-dependent relaxation ex vivo, which was reduced by in vivo 3-AB treatment. A significant derangement of ZO-1 was observed in vascular rings from zymosan-treated rats. Tight junction alteration was significantly reduced by in vivo 3-AB treatment. Thus, activation of PARS by exogenous and endogenous peroxynitrite may be involved in the tight junction derangement associated with endothelial dysfunction. Inhibition of PARS may be a novel pharmacological approach to preserve endothelial tight junction function in shock and inflammation.

Actins↗

Inflammation and endothelial dysfunction as therapeutic targets in patients with heart failure.

Evidence suggests that vascular endothelium plays key role in the regulation of vascular tone, in the process of inflammation and in the thrombotic mechanisms. Recent studies indicate that it is an important component of the pathophysiological mechanisms of heart failure. Heart failure may induce endothelial dysfunction by different mechanisms, such as reduced synthesis and release of nitric oxide (NO), increased degradation of NO or by increased production of endothelin-1. In addition, endothelial dysfunction has been associated with the progression of heart failure. Alterations in neurotransmitters, hormones and also in physiological stimuli are present in heart failure and affect the vascular endothelium. Treatments with beneficial effects on endothelial dysfunction may also improve prognosis in patients with heart failure.

Animals↗

Acute effect of rheopheresis on peripheral endothelial dysfunction in patients suffering from sudden hearing loss.

Single low density lipoprotein (LDL) fibrinogen apheresis has shown beneficial effects in the treatment of patients with sudden sensorineural hearing loss (SSHL). Pathophysiologically, a microcirculatory disorder of the inner ear, probably caused by disturbed endothelial function, is discussed as a final common pathway of a variety of SSHL etiologies. Thus, we carried out a prospective pilot study on the efficacy of Rheopheresis on vascular function in these patients, embedded into an ongoing randomized controlled multicenter trial investigating the efficacy of Rheopheresis for the treatment of SSHL. Potential modulation of systemic endothelial dysfunction by Rheopheresis was examined by measuring flow-associated vasodilatation of the brachial artery (according to the criteria of the American College of Cardiology) in a small group of patients suffering from SSHL (N=6, 5m/1f, mean age 56+/-11 years) within the last 3 days. At baseline, five of the six patients with acute hearing loss showed endothelial dysfunction as evidenced by diminished flow-mediated vasodilatation (FMD<5%). After a single Rheopheresis treatment, flow-mediated vasodilatation improved significantly (from 3.9+/-3.6% to 7.2+/-2.4%, P=0.05, mean+/-SD, two-sided paired T-test). This was paralleled by a reduction in fibrinogen (364+/-216 mg/dL to 142+/-96 mg/dL, P=0.03), total cholesterol (228+/-23 to 98+/-10, P<0.0001) and LDL cholesterol levels (153+/-8 mg/dL to 83+/-23 mg/dL, P<0.01). Based on this case series we conclude that single Rheopheresis treatment might have an acute beneficial effect on endothelial dysfunction in patients suffering from SSHL.

Blood Component Removal↗

Susceptibility to provoked cerebral infarction is not increased in a rat model of pharmacologically-induced hypertension despite endothelial dysfunction.

An increase in susceptibility to provoked stroke has been described in a genetically-determined rat model of hypertension. We investigated whether the susceptibility to provoked cerebral ischaemia was also increased in a rat model of pharmacologically-induced hypertension with endothelial dysfunction. Chronic inhibition of nitric oxide synthase induced by N(omega)-nitro-L-arginine methyl ester (L-NAME) administration (50 or 75 mg.kg(-1) x day(-1)) in drinking water for 6 weeks caused a sustained hypertension, comparable in the two groups. Endothelium-dependent relaxation induced by acetylcholine or A23187 was significantly, and dose-dependently, impaired in rats receiving L-NAME, as proven by a decrease in maximal relaxation and increase of EC50, as compared to control. Endothelium-independent relaxation induced by sodium nitroprusside was not different in the three groups. Aortic media area was significantly, and dose-dependently, increased following chronic nitric oxide inhibition. Cerebral infarct volumes were not increased in L-NAME-treated groups independently of the level of endothelial dysfunction induced by chronic L-NAME administration. These data demonstrate that susceptibility to cerebral infarction was not increased in a non-genetically determined hypertension model in spite of the development of endothelial dysfunction and vascular structure alterations.

Animals↗

Preventive mechanism of genistein on coronary endothelial dysfunction in ovariectomized rats: an isolated arrested heart model.

The effects of genistein on coronary endothelial dysfunction in bilateral ovariectomized rats were examined. Female Wistar rats were subjected to a bilateral ovariectomy (OVX rat). The animals were divided into three groups: sham treated with vehicle (DMSO 100 microl/day, Sham-DMSO), OVX treated with vehicle (DMSO 100 microl/day, OVX-DMSO), and OVX treated with genistein (0.25 mg/kgBW/day, OVX-genistein). Mean arterial pressure (MAP), heart rate (HR), body weight (BW), uterine weight and plasma E2 were monitored at 4- and 10-week after the treatment. We investigated the endothelium-dependent and -independent vasorelaxation by using acetylcholine (Ach 10(-5) M) and sodium nitroprusside (SNP 10(-7) M), respectively. The experimental results indicated that the uterine weights of all OVX rats were significantly decreased as compared to the sham groups. HR and MAP of both OVX-DMSO and OVX-genistein on 4 and 10 weeks were no significantly increased as compared to the Sham groups. The present coronary vasodilatation responses demonstrated only the significant decrement of endothelium-dependent, not for endothelium-independent, in OVX rats. The treatment of genistein could significantly attenuate this abnormality (% changes of vessel diameter obtained after Ach 10(-6) M: Sham-DMSO(10-wk) = 10.96 +/- 1.2%, OVX-DMSO(10-wk) = 3.2 +/- 0.77%, OVX-genistein(10-wk) = 11.45 +/- 1.85%), (% changes of vessels diameter obtained after SNP 10(-7)M: Sham-DMSO(10-wk) = 16.05 +/- 2.82%, OVX-DMSO(10-wk) = 12.73 +/- 2.72%, OVX-genistein(10-wk) = 16.4 +/- 4.71%) (p < 0.05). However, the lipid profiles monitored from all groups of 4 and 10 weeks did not demonstrate any significant changes. Therefore, it implied that endothelial dysfunction was not primarily cause by the lipid profiles changing in ovariectomized rats. Moreover, such effects of estrogen lacking on coronary endothelial-dependent vasodilatation could be attenuated by genistein supplementation. The present findings suggest that genistein might be used as an therapeutic agent for preventing the menopausal vascular complications.

Analysis of Variance↗

Red wine polyphenols prevent angiotensin II-induced hypertension and endothelial dysfunction in rats: role of NADPH oxidase.

OBJECTIVE: Chronic administration of moderate amounts of red wine has been associated with a protective effect on the cardiovascular system. This study examined whether red wine polyphenols prevent the angiotensin II (Ang II)-induced hypertension and endothelial dysfunction in rats, and, if so, to elucidate the underlying mechanism. METHODS: Hypertensive rats were obtained by a 14-day infusion of Ang II. Red wine polyphenols were administered in the drinking water one week before and during the Ang II infusion. Arterial pressure was measured in conscious rats. Ex vivo vascular relaxation was assessed in organ chambers, vascular superoxide anion production by dihydroethidine and vascular NADPH oxidase expression by immunohistochemistry. RESULTS: Ang II-induced hypertension was associated with decreased relaxation to acetylcholine but not to red wine polyphenols. The Ang II treatment also increased vascular superoxide anion production and expression of nox1 and p22phox NADPH oxidase subunits. Intake of red wine polyphenols prevented the Ang II-induced hypertension and endothelial dysfunction and normalized vascular superoxide anion production and NADPH oxidase subunit expression. Red wine polyphenol treatment alone did not affect blood pressure. CONCLUSION: Intake of red wine polyphenols prevents Ang II-induced hypertension and endothelial dysfunction. Prevention of vascular NADPH oxidase induction and preservation of arterial nitric oxide availability during Ang II administration likely contribute to this effect.

Acetylcholine↗

Early detection of atherosclerosis in type 2 diabetic patients by endothelial dysfunction and intima-media thickness.

UNLABELLED: Endothelial dysfunction (ED) is regarded as an early functional marker and intima-media thickness (IMT) as an early morphological marker of atherosclerosis. The aim of this study was to evaluate whether peripheral endothelial function and common carotid IMT are impaired in type 2 diabetic patients with inadequate glycemic control. MATERIAL AND METHODS: We examined 20 subjects--10 controls (aged 54.2 +/- 4.37 years) and 10 type 2 diabetic patients (aged 55.6 +/- 3.66 years) with HbA1c level >8.5% (mean 9.25% +/- 0.54%), with an average duration of diabetes of 5.65 +/- 2.34 years, all without clinical evidence of atherosclerosis. B-mode ultrasonography was used to assess both intima-media thickness in the common carotid artery and endothelium function in the brahial artery. In order to evaluate endothelium function brachial artery diameter was measured at rest, during reactive hyperemia, which causes endothelium-dependent vasodilation and after sublingual administration of nitroglycerin (500 microg), which causes endothelium-independent vasodilation. RESULTS: There was no statistical difference between the two groups regarding age. Systolic blood pressure, diastolic blood pressure, total cholesterol were higher and HDL-cholesterol was lower in the diabetic group, but the differences didn't reach statistical significance. Triglycerides concentration and BMI were significant greater in the diabetic group (triglycerides-204 +/- 48.5 mg/dl vs. 117 +/- 22.2 mg/dl, p<0.0001; BMI-28.6 +/- 1.28 kg/m2 vs. 26.7 +/- 1.93 kg/m2, p=0.021). Diabetic subjects had significantly impaired flow-mediated vasodilation (FMD) in the brachial artery compared with control group (5.65% +/- 1.42% vs. 7.11% +/- 1.01%, p=0.016). Endothelium-independent vasodilation induced by nitroglycerin did not differ between the two groups (15.4% +/- 2.01% in diabetic subjects vs. 15.7% +/- 2.58% in control subjects, p=0.75). Intima-media thickness was significantly increased in diabetic patients (0.87 +/- 0.07 mm vs. 0.77 +/- 0.06, p=0.0022). CONCLUSION: In diabetic patients with inadequate glycemic control and without clinical evidence of atherosclerosis endothelial function assessed by FMD is significantly impaired and IMT is significantly greater compared to nondiabetic healty subjects. Large clinical trials should evaluate if in clinical practice FMD and IMT are useful in identification of high-risk subjects.

Atherosclerosis↗

Microvascular endothelial dysfunction and its mechanism in a rat model of subarachnoid hemorrhage.

UNLABELLED: After subarachnoid hemorrhage (SAH), large cerebral arteries are prone to vasospasm. Using a rat model of SAH, we examined whether cortical microvessels demonstrate vasomotor changes that may make them prone to spasm and whether endothelial dysfunction may account for any observed changes. Two days after percutaneous catheterization into the cisterna magna, 0.3 mL of autologous blood was injected into the subarachnoid space. The brain tissue was harvested 20 min later, and microvessels were dissected from the parietal cortex. Vasomotor responses to the thromboxane analog U46619, the protein kinase C agonist phorbol acetate, endothelin-1, adenosine diphosphate, nitroprusside, and isoproterenol were examined in vitroin cerebral arterioles from the control, sham-operated, and SAH animals. Endothelial nitric oxide synthase (NOS3) messenger RNA and protein concentration was measured by northern and western blotting, respectively. Arterioles from the SAH animals demonstrated attenuated dilation to the endothelium-dependent dilator adenosine diphosphate and accentuated constriction to endothelin-1, while responses to the other agents tested were unchanged. NOS3 protein concentration was decreased, but NOS3 messenger RNA was increased after SAH. After SAH, cortical arterioles demonstrate endothelial dysfunction, which may be the basis for microvascular spasm. This is in part related to decreased NOS3, which occurs despite an increase in its transcription. IMPLICATIONS: Acute microvascular endothelial dysfunction may occur after subarachnoid hemorrhage and contribute to microvascular spasm.

Adenosine Diphosphate↗

Tumor necrosis factor-alpha induces endothelial dysfunction in the prediabetic metabolic syndrome.

Inflammation is a condition that underscores many cardiovascular pathologies including endothelial dysfunction, but no link is yet established between the vascular pathology of the metabolic syndrome with a particular inflammatory cytokine. We hypothesized that impairments in coronary endothelial function in the obese condition the prediabetic metabolic syndrome is caused by TNF-alpha overexpression. To test this, we measured endothelium-dependent (acetylcholine) and -independent vasodilation (sodium nitroprusside) of isolated, pressurized coronary small arteries from lean control and Zucker obese fatty (ZOF, a model of prediabetic metabolic syndrome) rats. In ZOF rats, dilation to ACh was blunted compared with lean rats, but sodium nitroprusside-induced dilation was comparable. Superoxide (O2*-) generation was elevated in vessels from ZOF rats compared with lean rats, and administration of the O2*- scavenger TEMPOL, NAD(P)H oxidase inhibitor (apocynin), or anti-TNF-alpha restored endothelium-dependent dilation in the ZOF rats. Real-time PCR and Western blotting revealed that mRNA and protein of TNF-alpha were higher in ZOF rats than that in lean rats, whereas eNOS protein levels were reduced in the ZOF versus lean rats. Immunostaining showed that TNF-alpha in ZOF rat heart is localized in endothelial cells and vascular smooth muscle cells. Expression of NAD(P)H subunits p22 and p40-phox were elevated in ZOF compared with lean animals. Administration of TNF-alpha more than 3 days also induced expression of these NAD(P)H subunits and abrogated endothelium-dependent dilation. In conclusion, the results demonstrate the endothelial dysfunction occurring in the metabolic syndrome is the result of effects of the inflammatory cytokine TNF-alpha and subsequent production of O2*-.

Acetylcholine↗