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Plasma free N-terminal fibronectin 30-kDa domain as a marker of endothelial dysfunction in type 1 diabetes mellitus.

The plasma free N-terminal fibronectin 30-kDa domain was measured in 44 type 1 diabetic patients and in 20 healthy subjects. A significantly raised mean concentration of a free N-terminal fibronectin 30-kDa domain was found in plasma of diabetic patients with proliferative retinopathy as compared with healthy persons (P less than 0.001). A positive correlation was observed between free N-terminal fibronectin 30-kDa domain and von Willebrand factor in plasma of all examined subjects (r = 0.62, P less than 0.01). A similar correlation was present between 30-kDa domain and albuminuria (r = 0.56, P less than 0.01). However, no relationship was found between fibronectin 30-kDa domain and control of diabetes as assessed by fructosamine concentration. The free N-terminal fibronectin 30-kDa domain may be used as a marker of actual endothelial cell dysfunction in diabetes.

Adult

15-Hydroxyeicosatetraenoic acid and diabetic endothelial dysfunction in rabbit aorta.

We examined the effects of diabetes on eicosanoid metabolism and endothelium-dependent relaxation in isolated aorta from alloxan-induced diabetic rabbits and that from normal rabbits incubated in increased concentrations (44 mM) of glucose in vitro for 6 h. Immunoreactive 15-hydroxyeicosatetraenoic acid (HETE) was assayed in the incubation media of isolated aortic segments. Basal and acetylcholine (ACh)-stimulated release of 15-HETE was significantly greater in aorta of diabetic animals as compared with those of normal rabbits. Incubation of aortic segments from normal rabbits in increased concentrations of glucose caused a significant increase in basal and ACh-stimulated release of 15-HETE; and the release was significantly greater in aortic segments with endothelium than in segments without endothelium. Basal and ACh-stimulated release of 15-HETE was inhibited by indomethacin, a cyclooxygenase inhibitor. 15-HETE caused contractions of aortic rings that were inhibited by the prostaglandin H2 (PGH2) thromboxane A2 (TXA2) receptor blocker SQ-29548, but not by the TXA2 synthase inhibitor carbethoxyhexyl imidazole or indomethacin. Treatment of aortic rings with subthreshold concentrations of 15-HETE impaired ACh-induced relaxation; this was prevented by treatment with SQ-29548. Thus, abnormal release of endothelium-derived 15-HETE may play a role in endothelial cell dysfunction and increased vasoconstriction in diabetes by a mechanism that involves interaction with PGH2/TXA2 receptors.

Acetylcholine

Oxidative stress and lipids in diabetes: a role in endothelium vasodilator dysfunction?

Endothelial dysfunction is a key feature of diabetes mellitus and is thought to be the major cause of vascular complications associated with the disease. The vascular endothelium demonstrates impaired synthesis of vasodilators and increased release of procoagulants and vasoconstrictors, defects which theoretically could explain the increased incidence of atherosclerosis and hypertension found within this patient group. The pathways mediating endothelial cell layer dysfunction are unknown, although many candidates have been proposed. This review concentrates on the hypothesis that increased oxidative stress combined with abnormal plasma lipid composition leads to reduced synthesis of endothelial vasodilators and hence endothelial dysfunction. Free radical generation is undoubtedly raised in diabetes but the evidence for decreased antioxidant status is debatable. The role of antioxidant and lipid-lowering therapy is considered, but few studies have directly investigated the effect of treatment on vascular function. Concern arises from individual studies of vitamin E in diabetic animals which have proved deleterious. Current literature implies that a combination therapy of vitamin E and vitamin C may be beneficial, but this needs to be investigated further in both animal and human diabetes.

Animals

Endothelial dysfunction and coronary risk reduction.

There is growing evidence that improvement of endothelial function has the potential to reduce cardiovascular ris. This article reviews the impact of coronary risk factors on endothelial function and the benefits of risk factor reduction. Recent studies indicate that chronic exercise may directly improve endothelial function, thus providing an additional explanation for the benefits of increased physical activity.

Acute Disease

Vascular endothelial dysfunction contributes to myocardial depression in ischemia-reperfusion in the rat.

Endocardial and vascular myocardial capillary endothelium has been shown to modulate the contractile characteristics of myocardium by altering myofibrillar affinity for calcium. Although the release of endothelial-derived substances that modify myocardial contractility has been shown to be altered in certain physiologic and pathologic situations, until now no study has evaluated whether the direct modulatory effects of endothelium on its subjacent myocardium were altered in pathologic situations and contributed to loss of contractile function. This study was designed to evaluate whether the direct contractile modulatory effects of endocardial and (or) vascular endothelium were altered and whether these alterations contributed to contractile dysfunction in a model of ischemia-reperfusion. Sixty-two perfused rat hearts as Langendorff preparations were randomized to no intervention, intracoronary Triton X100 injection (to render vascular endothelium dysfunctional), ischemia (30 min)-reperfusion (20 min), and ischemia-reperfusion followed by intracoronary Triton X100 injection. Coronary endothelial-dependent vascular reactivity and vascular smooth muscle reactivity were assessed by serotonin and sodium nitroprusside, respectively. Myocardial damage was assessed by coronary effluent creatine phosphokinase and by morphologic studies. Papillary muscles were then excised and contractile characteristics evaluated at varying extracellular calcium concentration prior to and after endocardial endothelial removal with Triton X100. All three interventions eliminated all coronary vascular response to serotonin but did not modify response to nitroprusside. Creatine phosphokinase values rose only in hearts with ischemia-reperfusion, and only minor morphologic changes occurred, mostly in hearts with ischemia-reperfusion. Papillary muscles from hearts with intracoronary Triton X100 injection had lower contractile indices compared with normal controls (total tension 4.0 vs. 4.6 g/mm2, p < 0.01) and an abbreviation of contraction duration. Increasing extracellular calcium concentration from to 0.7 to 3.25 mM eliminated these differences. Similar but more marked decreases in contractile indices and twitch duration were noted in the two ischemia-reperfusion groups, but consistent with some myocardial damage being present, increasing extracellular calcium concentration to 3.25 or 7 mM did not fully eliminate these differences. In both ischemia-reperfusion groups and the intracoronary Triton X100 group, the relative increase in total tension with increasing extracellular calcium concentrations was similar (35 to 38%) and greater than that of the control group (25%), consistent with dysfunction of vascular endothelium contributing to myocardial dysfunction in the three intervention groups. Endocardial endothelial removal had a similar effect in all four groups, suggesting that dysfunction of endocardial endothelium does not play a role in this model. We conclude that vascular but not endocardial endothelial dysfunction contributes to the myocardial dysfunction that occurs during ischemia-reperfusion injury.

Animals

Is endothelial dysfunction reversible?

To date, the published database concerning the impact of therapy on endothelial function in essential hypertension and hypercholesterolemia is small and incomplete. Chronic antihypertensive therapy had not yet been proven to restore endothelial function in patients with essential hypertension. In contrast, chronic lipid-lowering therapy is effective in restoring endothelial function of the coronary and peripheral circulation in patients with hypercholesterolemia. A beneficial effect was already documented after 3 months of therapy with fluvastatin but full restoration may last more than 1 year.

Anticholesteremic Agents

Endothelial dysfunction in preeclampsia.

Several years ago the hypothesis was advanced that alterations of endothelial function could explain much of the pathophysiology of preeclampsia. Since that time, extensive data have been generated to support the hypothesis. Markers of endothelial activation can be demonstrated in women with overt preeclampsia. More importantly, many of these markers precede clinically evident disease and disappear with resolution of the disease. The original postulate was that materials produced by the poorly perfused placenta, which is characteristic of preeclampsia, entered the systemic circulation and altered endothelial cell activity. This was proposed to change vascular sensitivity to circulating pressors, activate coagulation, and reduce vascular integrity resulting in the pathophysiological changes of preeclampsia. As data have accumulated it has become increasingly evident that the insult to the endothelium is neither toxicity nor nonspecific injury but rather can better be characterized as endothelial activation. Candidate molecules have been suggested but not established. It seems likely that the responsible agent(s) will not be unique molecules but rather usual molecules present in excessive amounts. The hypothesis has been expanded to invoke involvement of the maternal constitution in the generation of endothelial injury and injurants. This concept is stimulated by the observation that reduced placental perfusion per se is not sufficient to generate the maternal syndrome. Women with growth-restricted fetuses frequently are not preeclamptic. Placental bed biopsies from not only growth-restricted but also prematurely born infants demonstrate failure of the physiological remodeling of decidual vessels responsible for the reduced placental perfusion of preeclampsia. This has led to the concept that preeclampsia is secondary to an interaction of reduced placental perfusion and maternal factors. Interestingly these maternal factors, obesity, insulin resistance, black race, hypertension, and elevated plasma homocysteine concentration are all risk factors for atherosclerosis in later life.

Biomarkers

Preconditioning prevents chronic reperfusion-induced coronary endothelial dysfunction in rats.

Experiments were designed to test whether preconditioning protects against chronic endothelial injury after ischemia and reperfusion. Coronary arteries were isolated from rats subjected to sham surgery or 20 min of ischemia followed by 1 h, 1 day, 1 wk, or 1 mo of reperfusion without or with preconditioning. The endothelium-dependent relaxations to acetylcholine (ACh; assessed in vitro) were markedly reduced after ischemia and 1 h of reperfusion (31 +/- 6 vs. 57 +/- 6% in sham; P < 0.01) and did not recover after longer durations of reperfusion (1 mo: 32 +/- 5 vs. 56 +/- 2%; P < 0.01). The impaired response to ACh was restored by preconditioning at all time points (1 h: 53 +/- 6; 1 mo: 65 +/- 4%). After 1 mo, the potency of ACh in preconditioned arteries was also increased compared with that in sham animals. Electron microscopy showed marked endothelial damage after 1 h of reperfusion and signs of regenerated endothelium after 1 mo of reperfusion. Both acute and chronic ultrastructural changes were prevented by preconditioning. Thus preconditioning, in addition to protecting myocardial cells, also protects against chronic reperfusion-induced endothelial injury, both in terms of functional and structural changes.

Acetylcholine

Coronary endothelial dysfunction after Kawasaki disease: evaluation by intracoronary injection of acetylcholine.

OBJECTIVES: This study sought to assess the endothelial function of long-term coronary artery lesions in patients with Kawasaki disease (KD). BACKGROUND: The vascular function of the coronary arteries in children with long-term KD remains uncertain. We report our findings of the vascular response of the coronary arteries to intracoronary injection of acetylcholine (ACh) in patients with KD. METHODS: A total of 35 patients (25 patients with KD and 10 control subjects) were examined using coronary angiography. Individual arteries were divided into four groups according to the type of the coronary artery lesion: group 1 consisted of 25 sites with regressed aneurysms. These aneurysms had developed in the acute stage but had subsequently regressed and demonstrated normal findings on the follow-up coronary angiogram. Group 2 consisted of 24 sites with persistent aneurysms. Group 3 involved 60 angiographically normal sites in the same patients as those in group 1 or 2. Group 4 consisted of 30 sites in control subjects who had congenital heart disease with normal coronary arteries. During coronary angiography we infused 15 microg of ACh chloride into the coronary artery. The lumen diameters were measured using a cine videodensitometric analyzer to study the distensibility of the coronary artery wall. RESULTS: The mean (+/-SD) change in diameter was an increase of 11.71+/-12.34% in group 3 (coronary arteries without lesions in patients with KD) and 12.21+/-9.71% in the control group, demonstrating marked vasodilation in both groups. In contrast, the changes in the regressed aneurysms of group 1 and in the persistent aneurysms of group 2 were -2.65+/-12.12% and -0.08+/-6.51%, respectively, demonstrating no change or mild vasoconstriction. The change in groups 1 and 2 was significantly less than that in group 3 or in the control group. Group 3 showed no significant difference from the control group. CONCLUSIONS: These findings suggest that long-term coronary artery lesions, even after aneurysm regression, may have impaired endothelial function. A long-term follow-up study for those patients is essential.

Acetylcholine

von Willebrand factor and urinary albumin excretion are possible indicators of endothelial dysfunction in cardiopulmonary bypass.

OBJECTIVE: Experimental evidence suggests that cardiopulmonary bypass (CPB) associated inflammatory response leads to endothelial injury and increased permeability, but this has been difficult to show clinically. We have investigated the use of von Willebrand factor (vWF), and urinary albumin excretion, as measured by the urinary albumin creatinine ratio (ACR), to demonstrate this. METHODS: A total of 23 patients undergoing elective coronary artery bypass grafting were studied. Complement fragment C3a, leukotrienne B4 (LTB4), interleukin 6 (IL6), neutrophil elastase, vWF and ACR were measured on anaesthetic induction (baseline), 20 min after starting CPB, 5 min after cross-clamp removal, 5 min, 2, 6 and 24 h after termination of CPB. Anaesthetic, CPB and myocardial protection techniques were standardised. ANOVA was performed by using the distribution free Friedman test for each measured parameter. When significance differences were found (P < 0.05), post hoc analysis with Wilcoxon signed rank test was used for comparison of each time point with the base line level and differences were only accepted as significant following the Bonferroni correction (P < 0.008). Summary measures of peak versus peak and area under the cure were also analysed for ACR with vWF. RESULTS: Peak vs. baseline levels for C3a were 4.9 vs. 2.1 microg/ml (P < 0.0001), LTB4 was 800 vs. 20 pg/ml (P < 0.0001), neutrophil elastase was 250 vs. 115 ng/ml (P < 0.001), IL6 was 620 vs. 1.4 pg/ml (P < 0.0001), vWF was 2.2 vs. 1.3 IU/ml (P < 0.0001) and ACR was 17.6 vs. 2.0 mg/mmol (P < 0.0001). C3a, LTB4 and ACR peaked during the operation. Neutrophil elastase peaked at 2 h following CPB. IL6 and vWF peaked at 6 h following CPB. The correlation coefficient between vWF and ACR following peak versus peak analysis was 0.48 (P = 0.035), and area under the curve analysis was 0.6 (P < 0.01). CONCLUSION: These results demonstrate that endothelial permeability and injury, as measured by urinary albumin excretion and vWF, respectively, are related and the use of these easily detectable and sensitive biochemical markers warrants further investigation.

Aged

Endothelial dysfunction late after Kawasaki disease.

BACKGROUND: Kawasaki disease (KD) is a systemic vasculitis of childhood with widespread vascular endothelial damage in the acute stage. Long-term complications, such as myocardial infarction and death, are recognized, but the extent and nature of late vascular abnormalities that might predispose to these events have not been studied. METHODS AND RESULTS: We used high-resolution ultrasound to study endothelial function in the brachial artery of 20 patients 5 to 17 years after acute KD (median, 11 years) and compared findings with those in 20 age- and sex-matched control subjects. Vascular responses to reactive hyperemia (with flow increase leading to endothelium-dependent dilation) and to sublingual glyceryl trinitrate (GTN; endothelium-independent dilation) were recorded. The relationship between endothelium-dependent vascular responses and features of the endothelium acute illness was examined. There was no difference in baseline vessel diameter, degree of reactive hyperemia, or response to GTN between patients and control subjects. In contrast, flow-mediated dilation was markedly reduced in KD patients compared with control subjects (3.1% versus 9.4%; P < .001). Late endothelium-dependent responses were not related to features of the acute illness. CONCLUSIONS: Abnormalities of systemic endothelial function are present many years after resolution of acute KD, even in patients without detectable early coronary artery involvement. Because this may be an important factor in the genesis of late vascular complications, long-term follow-up of all patients with KD is indicated.

Adolescent

[Endothelial dysfunction and coronary heart disease. Interaction of endothelium and thrombocytes].

Aggregating thrombocytes release various mediators acting on endothelium and muscle cells of coronary arteries. In coronary arteries without endothelium, platelets induce potent vasoconstriction, whereas in segments with endothelium platelets induce relaxation. This endothelium-dependent relaxation induced by platelets is caused by the endothelial relaxation factor EDRF or nitric oxide (NO). NO inhibits not only smooth muscle cells of the vessels but also platelets themselves, an effect which is potentiated by prostacyclin. The physiologic importance of platelets-mediated contraction after removal of the vascular endothelium concerns the vascular phase of hemostasis. With the appearance of functional endothelial disorders, particularly in patients with cardiovascular risk factors, disturbances of coronary circulation can arise and finally cause ischemia. The finding that regenerated endothelial cells show functional defects especially towards the action of platelets (mainly the serotonin released from platelets) is important. In this functional disorder a dysfunction of Gi-protein of the endothelial 5HT1-serotonergic receptor plays a decisive role. Similar functional endothelial disorders can be shown after ischemia and reperfusion as well as in arteriosclerosis.

Animals

Endothelial nitric oxide and cardiovascular disease.

The vascular endothelium is the site of formation of several powerful mediators. One of these is NO, a chemically unstable radical formed by enzymatic conversion of L-arginine in the presence of molecular oxygen. NO elicits relaxation of VSMC by activating cytosolic guanylate cyclase. NO also counteracts platelet adhesion and aggregation. The biological actions of NO make it a key substance in the endogenous defense against vascular occlusion and thrombosis. The basal formation of NO maintains a moderate but significant vasodilation in the systemic resistance vessels and counteracts platelet activity. When blood flow in conduit arteries is increased there is an augmented endothelial formation of NO, eliciting flow-dependent vasodilation. Beside this, several vasodilators (acetylcholine, bradykinin, histamine, substance P) operate by stimulating endothelial NO formation. On the other hand, drugs like nitroglycerin and papaverine operate independently of the vascular endothelium. Vasodilator mechanisms, physiological as well as pharmacological, may therefore be characterized as endothelium-dependent (i.e. NO-mediated), or endothelium-independent (i.e. not mediated by NO). Physiologically, mixed mechanisms occur. Failure of the vascular endothelium to elicit NO-mediated vasodilatation may be due to decreased formation, increased degradation, decreased sensitivity to the NO formed, or a mixture of these factors. Irrespective of the mechanism behind, this is referred to as endothelial dysfunction. Endothelial dysfunction occurs in several cardiovascular settings, like atherosclerosis, hypercholesterolaemia, diabetes, and essential hypertension. Endothelial dysfunction leads to an impaired tissue perfusion, increased local vascular resistance, decreased defense against thrombus formation, and possibly also decreased defense against hypertrophy of the VSMC in the vessel wall media. In patients with CHD, endothelial dysfunction leads to an impaired coronary flow response to physical and mental stress, and to promotion of platelet adherence and aggregability. Endothelial dysfunction is thereby a probable aggravating factor in the atherosclerotic process, adding a functional component on top of the structural lesions characterizing this disease. A particular form of endothelial dysfunction, limited to the arterial resistance vessels, may explain the symptoms and clinical characteristics of microvascular angina. In patients with essential hypertension, endothelial dysfunction prevails, adding a functional component to the structural factors also in this disease. Hitherto, the only therapeutic tools available to restore endothelial dysfunction appear to be restriction of the dietary intake of lipids, possibly reinforced with intake of antioxidants like fish oil and vitamin E. However, large clinical trials to confirm the efficacy of such therapy in reversing endothelial dysfunction have not been conducted. In the future, more directly acting therapeutic regimens, aimed at supporting or substituting the endogenous formation of NO, are likely to appear as well.

Cardiovascular Diseases

[Endothelial dysfunction and atherosclerosis].

Mammalian endothelium acts as a mediator in arterial and venous relaxation and contraction. Endothelium-dependent relaxation is due to endothelial release of powerful, non-prostanoid vasodilatory substances. The best known of these is the endothelial factor EDRF identified as nitrous oxide (NO). It is the end result of the metabolism of L-arginine by the NO synthetase of endothelial cells. In arterial smooth muscle, the relaxation induced by EDRF is explained by NO stimulation of soluble guanylate cyclase, leading to accumulation of GMPc (cyclic guanosine monophosphate). In some animal vessels and in human coronary arteries, endothelial cells release a substance which induces hyperpolarisation of the cell membrane (endothelial derived hyperpolarising factor, EDHF). Release of EDRF by the cell membrane may be mediated by G proteins sensitive to pertussis toxin (activation of the alpha 2 adrenoreceptor, serotonin, platelet aggregation, leukotrienes) or non-sensitive G proteins (adenosine-diphosphate (ADP), bradykinin). In animal blood vessels where the endothelium is regenerated and reperfused, and/or atherosclerotic, a selective loss of the mechanism of EDRF release is observed, sensitive to pertussis toxin, which favors vasospasm, thrombosis and cellular proliferation. The available data on isolated or in situ human blood vessels concord with studies on isolated animal tissues. In addition to the relaxation factors, endothelial cells can also secrete contracting factors (endothelium derived contracting factors: EDCF); these include superoxide anions, endoperoxides, thromboxane A2 and endothelin. Animal studies indicate that the tendency to release EDCF is maintained or even increased in damaged vessels. The change from normally dominant EDRF release to EDCF release could play an important role in atherosclerosis.

Animals

[Coronary endothelial dysfunction in hypertension].

Intracoronary injection of acetylcholine leads to coronary vasodilatation in normal subjects and vasoconstriction in hypertensive subjects, suggesting an abnormality of endothelial function in hypertension. In order to study the response to physiological stimulation which induces endothelium-dependent vasodilatation, the effects of sympathetic stimulation (cold pressor test) and of the increase in flow velocity in the left anterior descending artery were analysed in 10 control and 26 hypertensive subjects. All had angiographically normal coronary arteries and normal lipid profiles. None of the subjects were smokers or diabetic. During the cold test (12 patients), the flow velocity increased by 47 +/- 26% (p < 0.05) in controls and by 68 +/- 48% (p < 0.01) in the hypertensives. Dilatation of the coronary arteries was observed in controls (+12.0 +/- 4.5%, p < 0.001) and constriction in the hypertensives (-10.3 +/- 8.5%, p < 0.001). Injection of papaverine in the distal left anterior descending artery (14 patients) induced proximal dilatation in controls (+17.0 +/- 10.6%, p < 0.001) and was ineffective in hypertensives (-0.4 +/- 1.5%), whereas the flow velocity increased by 521 +/- 129% and 406 +/- 120% (p < 0.001) respectively. Intracoronary injection of 2 mg of isosorbide dinitrate induced comparable dilatation in control subjects (+30.0 +/- 12.9%, p < 0.001) and in the 26 hypertensives (+22.8 +/- 6.5%, p < 0.001). In 10 hypertensive patients, intravenous injection of an angiotensin converting enzyme inhibitor, perindoprilat, immediately re-established the vasodilatory response to these two stimuli. The authors conclude that the coronary responses to physiological stimuli (sympathetic stimulation, increase in flow velocity) are altered in hypertensive subjects with angiographically normal coronary arteries with no other risk factors. Normal vasomotion may be restored by an angiotensin converting enzyme inhibitor.

Adult

Systemic endothelial dysfunction is related to the extent and severity of coronary artery disease.

Flow-mediated vasodilation (FMD) of systemic arteries, a non-invasive parameter of endothelial function, is correlated with cardiovascular risk factors. The relationship between FMD and morphologically and clinically evident coronary artery disease has not been described. This study was performed to test the hypothesis that an impairment of FMD in the brachial artery is related to the presence and/or extent and severity of coronary artery disease (CAD). We examined 74 patients with angina pectoris and 14 control subjects (age 17 36 years). Angiography revealed coronary artery disease (> or = 30% diameter stenosis) in 44 patients (CAD, age 32 67 years) and smooth coronary arteries in 30 patients (non-CAD, age 22-73 years). Vasodilation following reactive hyperemia and after sublingual nitroglycerin (NTG) was assessed in the brachial artery using B-mode high resolution ultrasound. CAD patients showed markedly impaired FMD compared to the non-CAD group (5.7 +/- 4.8 versus 12.6 +/- 6.7%, P < 0.0001) and to controls (5.7 +/- 4.8 versus 15.7 +/- 3.9%, P < 0.00001). NTG induced similar degrees of vasodilation in the CAD and non-CAD groups but less vasodilation in the CAD patients compared to controls (12.2 +/- 6.3 versus 20.4 +/- 6.9%, P < 0.01). On univariate analysis, impaired FMD in CAD patients and non-CAD patients was related to the extent of coronary disease (1-, 2- or 3-vessel disease; r = -0.67, P < 0.0001), to the maximum percent diameter stenosis in one of the major coronary vessels (r = -0.52, P < 0.0001), brachial artery diameter (r = -0.46, P < 0.0001) and plasma cholesterol level (r = -0.34, P < 0.001). On multiple stepwise regression analysis the extent of coronary disease (r = -0.51, P < 0.0001) and the baseline brachial artery diameter (r = -0.37, P < 0.0001) were independently associated with FMD in CAD and non-CAD patients. The present findings suggest that the impairment of FMD in the brachial artery, a marker of systemic endothelial function, is closely related to the angiographic extent of CAD.

Adolescent

Non-invasive detection of endothelial dysfunction in patients with essential hypertension.

The endothelium regulates vascular tone through the release of vasoactive agents that act on the underlying vascular smooth muscle. This endothelial function is impaired in certain cardiovascular conditions including atherosclerosis, and hypercholesterolemia. However, in patients with essential hypertension it is unclear whether endothelium-dependent vasodilation is impaired. Using high-resolution ultrasound, we measured the diameter of the brachial arteries at rest, during reactive hyperaemia (with increase flow causing endothelium-dependent dilatation), and after sublingual glyceryl trinitrate (GTN; causing endothelium-independent dilatation) in 42 subjects, consisted of 21 controls with normal blood pressure [mean(SD) arterial blood pressure, 92+/-7 mmHg] and 21 patients with established essential hypertension (mean arterial blood pressure, 123+/-12 mmHg). The results showed that in patients with essential hypertension, flow-mediated dilatation in arteries was much reduced in comparison with the control group (4.6%+/-2.8% vs. 12.4%+/-2.9%, P<0.001). However, there was no significant difference in response to GTN between the two groups (19.8%+/-6.0% vs. 24.5%+/-10.2%, P=0.186). This indicates that endothelium-dependent vasodilation is impaired in patients with essential hypertension.

Adult

Ischaemic endothelial dysfunction after single or multidose cardioplegia.

The effect of ischaemia, either alone or after a single or multidose infusion of St Thomas' Hospital cardioplegia solution (ST), on endothelial function was studied by examining its influence on 5-Hydroxytryptamine- (5-HT-) and nitroglycerine- (GTN-) induced coronary vasodilation in the isolated rat heart. Eighty rat hearts were perfused on a modified Langendorff preparation. Thirty minutes of unprotected ischaemia (N = 16) abolished the vasodilatory response to 5-HT but maintained the response to GTN (expressed as % of the control value 5-HT, pre 45.0 +/- 3.5, post 2.3 +/- 3.2, GTN, pre 42.3 +/- 4.4, post 39.8 +/- 4.0). The increase in coronary flow induced by either agent was unaltered following 30 or 60 min of ischaemia protected by a single dose of ST (N = 16 in each). Ninety minutes of ischaemia preceded by a single infusion of ST (N = 16) markedly reduced the 5-HT response but maintained the vasodilation induced by GTN (5-HT, pre 37 +/- 2.6, post 6.9 +/- 2.6, GTN, pre 40.1 +/- 2.5, post 37 +/- 2.8). During 90 min of ischaemia, infusion of an additional dose of ST after 45 min (N = 8) or two extra doses every 30 min (N = 8) maintained the 5-HT-induced increase in coronary flow (pre 39.5 +/- 3.9, post 36.4 +/- 3.5). It can be concluded that coronary vascular endothelium is more susceptible to ischaemic damage when compared with vascular smooth muscle. This results in early loss of endothelium-dependent vasodilation. Multidose infusion of St Thomas' Hospital cardioplegia solution is superior to a single infusion in protecting endothelial function following prolonged cardiac ischaemia.

Animals