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Aging and endothelial function in normotensive subjects and patients with essential hypertension.

BACKGROUND: Experimental data from normotensive and hypertensive animals indicate that aging is associated with impaired endothelium-dependent relaxations to acetylcholine, and this possibility appears to be confirmed in the human coronary artery. In the present study, we evaluated the effect of age on endothelial responsiveness in the forearm vessels of either normotensive control subjects or essential hypertensive patients. METHODS AND RESULTS: Within the normotensive or hypertensive group (n = 53 and n = 57, respectively), subjects were selected with similar blood pressure, plasma cholesterol, and glucose values, and hypercholesterolemic subjects, diabetics, and smokers were excluded. We evaluated forearm blood flow (by strain-gauge plethysmography) modifications induced by intrabrachial acetylcholine (0.15, 0.45, 1.5, 4.5, and 15 micrograms/100 mL per minute), an endothelium-dependent vasodilator, and sodium nitroprusside (1, 2, and 4 micrograms/100 mL per minute), an endothelium-independent vasodilator. Acetylcholine caused a dose-dependent vasodilation that was significantly (P < .01) lower in essential hypertensive patients than in normotensive control subjects. However, a significant negative correlation was observed between acetylcholine-induced vasodilation and patient age in both normotensive (r = -.86, P < .001) and hypertensive (r = -.85, P < .001) patients. In contrast, vasodilation to sodium nitroprusside was similar in normotensive control subjects and essential hypertensive patients with a poorer inverse correlation with patient age (normotensive control subjects, r = -.37; hypertensive patients, r = -.36) compared with acetylcholine. CONCLUSIONS: The present data indicate that there is a blunted response to acetylcholine with advancing age in both normotensive control subjects and essential hypertensive patients, suggesting that aging is associated with reduced endothelium-dependent vasodilation in humans.

Acetylcholine

Endothelial function in thrombosis and thrombolysis.

The localization of tissue factor (TF) in atherosclerotic plaques of human aortas was immunohistochemically examined using rabbit anti-IgG against recombinant TF, which was expressed in E. coli. TF, the initiator of the extrinsic coagulation pathway, was ubiquitously present in atherosclerotic intima, and was expressed mainly by macrophages, but not by endothelial cells. It has been suggested that some macrophages in atherosclerotic intima co-express both molecules of TF and platelet-derived growth factor-B chain. We have developed a morphometrically quantitative in vitro assay for angiogenesis, using endothelial cultures on collagen gel incorporating plasminogen. With this method, we have obtained findings suggesting that plasminogen and plasminogen activators (PAs), especially urokinase-type PA (uPA) derived from endothelial cells, enhance angiogenic activity, probably by increasing endothelial migration. uPA was immunohistochemically observed to be primarily cell-associated on the focal contract areas, probably via its receptors on endothelial cells. These findings may support the hypothesis that the activation and regulation of the pericellular fibrinolysis system is closely related to angiogenesis.

Animals

Late endothelial function of free and pedicled internal mammary artery grafts.

The internal mammary artery has greater long-term patency than the saphenous vein when used for coronary bypass grafting. Therefore, bilateral use of the internal mammary artery for grafting with the right internal mammary artery used as a "free" graft may result in improved graft survival. The study objectives were to compare the endothelial-dependent and -independent vasodilatory response in free and pedicled internal mammary artery grafts in patients who had previously undergone coronary surgery. Free (group 1, n = 8) and pedicled (group 2, n = 7) internal mammary artery grafts were studied by comparing the response to selective infusion of the endothelial-dependent vasodilator substance P (1.4 up to 22.4 pmol/min in doubling dose increments) followed by isosorbide dinitrate (2 mg over 2 minutes), in patients undergoing coronary angiography, 1 month to 6 years after coronary surgery. Maximal dilatory response to substance P was 8.7% +/- 1.8% in pedicled grafts compared with 8.8% +/- 2.3% in free grafts (p = not significant), with the dose response for both groups being similar. Infusion of isosorbide dinitrate produced only minimal further dilatation in both groups. No significant difference was found in endothelium-dependent and -independent vasodilatory response between free and pedicled internal mammary artery grafts, suggesting that the use of the free right internal mammary artery and other arterial grafts may enhance graft survival.

Adult

Perturbation of endothelial functions by ionizing irradiation: effects on prostaglandins, chemoattractants and mitogens.

Numerous studies have shown that early radiation injury is characterized by vascular damage and that the initial site of damage appears to be the EC lining of the vessel wall. Chronic irreversible tissue reactions to radiation include thrombotic occlusion of capillaries, enhanced atherosclerosis in larger vessels, inflammatory changes, and late tissue fibrosis. These processes may be mediated by endothelial products released as a result of cellular injury. Using EC cultures, we show that ionizing irradiation affects one of the major vascular defense mechanisms against platelet activation, thrombosis, and atherosclerosis--the capacity to produce PGI2. Dose- and time-related damage to enzymes of the arachidonic acid cascade were demonstrated. Radiation damage is associated with oxidant stress and production of free radicals. The oxygen radical scavenger, vitamin C, was found to protect the capacity of irradiated ECs to produce PGI2. Radiation injury often induces an acute inflammatory response. We found that irradiated ECs release a chemotactic factor for neutrophils, which is a lipid product of the lipoxygenase pathway. Late radiation-induced tissue fibrosis and the capacity of radiation to enhance arteriosclerosis may involve participation of mitogens released from perturbed and damaged ECs. We show that conditioned medium of irradiated ECs contain larger amounts of newly synthesized mitogens capable of stimulating the proliferation of fibroblasts, SMCs, and ECs. Hence, it may be assumed that the mitogenic activity released by irradiated ECs includes both PDGF and FGF-like mitogens.

Animals

Endothelial function in normal and pre-eclamptic pregnancy: a hypothesis.

Pre-eclampsia is the most common medical complication of pregnancy. Immunologic maladaptation has been suggested to play a role in the etiology of pre-eclampsia. The putative misalliance of fetal trophoblast with maternal tissue in the uteroplacental vascular bed may give rise to an increase in oxygen free radicals. Oxygen free radicals and lipid peroxides might form the link between the hypothetical immunologic maladaptation and the endothelial cell damage known to occur in pre-eclampsia. Recent studies have demonstrated the existence of increased oxygen free radical production in pre-eclampsia. Oxygen free radicals and lipid peroxides decrease vascular prostacyclin and EDRF release and increase thromboxane A2 and endothelin release. The hypothesis is put forward that in pre-eclampsia a proposed immunologic maladaptation causes an increase in oxygen free radicals by decidual lymphoid cells. A decrease in vasodilatory autocoids, prostacyclin and EDRF may result from the endothelial cell damage induced by oxygen free radicals. Uteroplacental prostacyclin production might be essential as escape mechanism. The adequacy as escape mechanism seems to determine the final clinical outcome.

Blood Platelets

Preservation of endothelial function by ramipril in rabbits on a long-term atherogenic diet.

Hypertension and hypercholesterolemia predispose to atherosclerosis. Ramipril, known to lower blood pressure, was used to study the effect of converting-enzyme inhibition on impairment of endothelium-derived relaxation and changes in basal cGMP content in rabbits fed an atherogenic diet (0.25% cholesterol). The generation of cGMP in the presence of bradykinin and ramiprilat was studied in vitro in aortic segments from normal untreated rabbits as well as in bovine endothelial cells. The ability to relax in response to acetylcholine was almost abolished in aortic segments from the vehicle-treated rabbits fed the atherogenic diet for 4 months. The basal cGMP content was substantially reduced. Aortic segments from rabbits concomitantly treated with ramipril (0.3 and 3.0 mg/kg/day) for 3 months showed well-preserved relaxation and matching basal cGMP content compared to normal controls. The relaxation was not significantly greater in aortic segments from ramipril-treated rabbits fed the standard diet, but the cGMP content was more than doubled. In vitro studies in aortic segments and in endothelial cells showed that both the ramiprilat and bradykinin concentrations dependently stimulated cGMP formation, which serves as a biochemical marker of nitric oxide or EDRF release. Thus, the observed endothelial protection against hypercholesterolemia by ramipril may be the result of continuously increased cGMP formation due to preserved EDRF release. This is presumably produced by enhanced bradykinin activity through inhibition of degradation by converting-enzyme inhibition with ramipril.

Angiotensin-Converting Enzyme Inhibitors

Vascular renin-angiotensin-system, endothelial function and atherosclerosis?

Clinical observations demonstrate an enhanced risk for myocardial infarction in patients with sustained activation of the local and/or systemic renin-angiotensin system, such as a high renin-sodium profile or a heritably enhanced expression of angiotensin converting enzyme. Chronic renin-angiotensin system blockade by angiotensin converting enzyme inhibition in patients with moderate heart failure reduces the rate of myocardial infarction and reinfarction. Preliminary experimental evidence suggests that these clinical observations may be partially explained by a proatherogenic effect of an activated renin-angiotensin system, which can downregulate the endothelial releasability of nitric oxide. Nitric oxide exerts many potentially antiatherogenic effects on endothelium, platelets and low density lipoproteins and indirectly on monocytes and leukocytes. Hypertension-induced chronic distension of elastic arteries upregulates the local renin-angiotensin system in these arteries and thereby downregulates nitric oxide releasability. Enhanced local synthesis of the trophic factor angiotensin-II and reduced releasability of the antitrophic factor nitric oxide appear to cooperate in the trophic adaptation of the distended vessel wall to the enhanced load, but with the disadvantage of enhanced susceptibility for atheroma development due to reduced releasability of nitric oxide. Chronic blockade of the renin angiotensin system by angiotensin converting enzyme inhibitors or by angiotensin receptor type-1 antagonists normalizes a reduced endothelial releasability of nitric oxide in several models, partially by a bradykinin-dependent mechanism. This endothelial protection proved to attenuate the progression of atherosclerosis in experimental models. The antiatherogenic potential of renin angiotensin system blockade in humans is presently under study.

Angiotensin-Converting Enzyme Inhibitors

Effects of mechanical agitation on endothelial function of preserved corneas.

Corneas from adult albino New Zealand rabbits were stored in either MK medium or moist chambers at 4 degrees C. for 18 to 24 hours. During that time, half the corneas from each group were agitated for 8 hours to simulate the motion that might occur during long-distance shipment. The corneas were then placed in specular microscopes and perfused for 4 hours with a modified Krebs-Ringer solution at 34 degrees C. Serial measurements of corneal thickness made during temperature reversal showed that agitation had no effect on endothelial viability of corneas stored in either solution. Electron microscopy of selected corneas confirmed this finding.

Animals

Different influence of superoxide anions and hydrogen peroxide on endothelial function of isolated cat cerebral and pulmonary arteries.

1. Exogenous superoxide dismutase (SOD) or catalase did not modify isolated cat middle cerebral arterial basal tone. Catalase but not SOD reduced ACh relaxation. 2. H2O2 induced endothelium-independent relaxation which was abolished by catalase. 3. 3-Amino-1,2,4-triazole (AT) evoked endothelium-dependent contractions and diminished ACh relaxation. 4. Diethyldithio carbamic acid (DETC) induced endothelium-independent relaxation and did not modify ACh vasodilatation. 5. ACh relaxation of cat isolated pulmonary arteries was unaffected by SOD, catalase or AT, and diminished by DETC. 6. Endothelial catalase but neither SOD nor superoxide anions is involved in EDRF cerebral vasodilatation and H2O2 participates in ACh relaxation. In pulmonary arteries, only endothelial SOD activity plays a role.

Acetylcholine

[EDRF/NO and endothelial functions].

Our appreciation of the vascular endothelium has changed considerably over the last decade. This organ, finally recognized as such, participates actively in vasomotor regulation and haemostasis. It secretes several relaxing and contracting factors which act locally to determine resting vascular tone. One of the relaxing factors, EDRF/NO plays an important physiological role as it contributes to the rapid adaptation of blood flow to various pharmacological and mechanical stimuli, thereby ensuring maintenance of adequate tissue perfusion. Nitric oxide (NO) is an ubiquitous factor which was crowned "molecule of the year 1992" by the scientific review Science. Its effects extend well beyond those on the cardiovascular system. Endothelial dysfunction is observed in many pathological states such as atherosclerosis, reperfusion injury, postangioplasty endothelial regeneration, degeneration of venous bypass grafts, pure spastic angina, hypertension and diabetes. It is associated with decreased production of EDRF/NO, which probably contributes significantly to the aggravation of endothelial and parietal lesions and to the natural progression of atherosclerotic disease in general. This article describes the principal vasoactive factors secreted by the endothelium and goes on to list the physiologic cardiovascular effects of EDRF/NO in detail, and to review the different pathologies associated with a disorder of secretion of this factor.

Endothelins

Angiographic assessment of human coronary artery endothelial function by measurement of endothelium-dependent vasodilation.

In isolated atherosclerotic human coronary arteries endothelium-dependent vascular relaxation is abolished with acetylcholine whereas another EDRF-dependent vasodilator, substance P, still produces significant relaxation. To study further these in vitro findings, graded doses of acetylcholine and substance P, which produced no systemic effects, were infused into the left anterior descending artery of patients with angiographically moderate coronary artery disease. The effects of acetylcholine and substance P on LAD diameter were analysed by quantitative angiography. Generally, acetylcholine caused no relaxation but concentration-dependent contraction from 1.67 +/- 0.06 mm to 1.45 +/- 0.09 mm (P less than 0.01), whereas substance P dilated the arteries to 1.89 +/- 0.10 mm (P less than 0.01). In contrast, both drugs caused a marked increase in great cardiac vein oxygen saturation, indicating an increase of coronary flow. The results suggest that the failure of the atherosclerotic epicardial human coronary artery to vasodilate in response to acetylcholine represents a muscarinic endothelial defect. The preserved vasodilation with substance P in the presence of a refractoriness to acetylcholine suggests that atherosclerotic human coronary endothelial cells exposed to appropriate non-muscarinic stimuli are still capable to release EDRF and that atherosclerotic smooth muscle retains a responsive receptor mechanism for EDRF.

Acetylcholine

Developmental aspects of endothelial function.

We believe that the mechanisms through which nitric oxide and guanylate cyclase produce relaxation are fully functional in cerebral arteries at term in the fetal sheep and probably also in the term human infant. The relation between cGMP levels and the degree of relaxation varies both with age and with the relaxant used in a vessel specific manner. The factors underlying this variability constitute a fruitful area for future research and include possible age-related changes in membrane potential, calcium channel density and currents, and the participation of cGMP-independent mechanisms, to name only a few. Between fetal and newborn life, the biotransformation of nitroglycerin appears to improve significantly, particularly in the smaller more distal cerebral arteries. This improvement may be a clue to other important vascular metabolic and enzymatic changes that occur during the perinatal period. At the endothelial level, responses to A23187, an index of maximum endothelial vasodilator capacity, are relatively stable across the perinatal period and do not change consistently with age across all arteries. More importantly, large arteries, such as the common carotid, appear to relax better than the smaller cerebral arteries, and this difference is greater in fetal than in adult arteries. Responses to ADP disappear with age in the common carotid, but remain or even become enhanced in the cerebral arteries, thus illustrating the key role played by changes in receptor type and distribution in development and maturation.

Adenosine Diphosphate

L-arginine normalizes endothelial function in cerebral vessels from hypercholesterolemic rabbits.

We hypothesized that normal vascular reactivity could be restored in vessels from hypercholesterolemic animals by exposing them to L-arginine, the precursor of endothelium-derived relaxing factor (EDRF). Basilar arteries were harvested from New Zealand white rabbits fed normal chow or that supplemented with 2% cholesterol for 10 wk. Vessels were cannulated for perfusion at physiologic pressure. Changes in vessel diameter were monitored by videomicroscopy. In comparison to normal vessels, those from hypercholesterolemic animals vasoconstricted more to KCl, endothelin (E), and 5-hydroxytryptamine (5-HT). Conversely, vasodilation to acetylcholine (ACh) (but not that to verapamil) was significantly impaired in the hypercholesterolemic animals. In vitro administration of L-arginine (3 mM) for 45 min normalized vasodilation to ACh and vasoconstriction to E, 5-HT, and KCl in the isolated vessels from hypercholesterolemic animals. This effect was stereospecific, since D-arginine had no effect. To conclude, these data confirm that hypercholesterolemia attenuates endothelium-derived relaxation, and enhances the sensitivity of these vessels to vasoconstrictors. In vitro administration of L-arginine normalized vascular reactivity of isolated vessels from hypercholesterolemic animals. Thus, hypercholesterolemia induces a reversible endothelial dysfunction that may be corrected by supplying the precursor of EDRF, L-arginine.

Acetylcholine

Pulmonary vascular resistance related to endothelial function after lung transplantation.

In 8 donor pigs, flush perfusion was performed with a low-potassium-dextran solution. Ring segments were taken from a small intralobar pulmonary artery in the right lung immediately after perfusion and after 24 hours of cold storage for studies in organ baths. Stable vasoconstriction was induced with the thromboxane mimic U-46619, and acetylcholine was used to induce endothelium-dependent relaxation. The maximum relaxation was significantly reduced after flush perfusion compared with fresh nonperfused controls, and a significant additional reduction was seen after the 24-hour storage period. The left donor lung was transplanted into a recipient after 24 hours of cold storage. Contralateral pneumonectomy was then performed, making the recipient entirely dependent on the transplanted lung for survival. All 8 pigs were in good condition throughout the 24-hour observation period, with arterial oxygen tension of around 165 mm Hg (range, 80 to 275 mm Hg; inspired oxygen fraction, 0.5) and pulmonary vascular resistance of around 450 dyne.s.cm-5 (range, 260 to 730 dyne.s.cm-5). The maximum endothelium-dependent relaxation for each donor was checked for correlation to pulmonary vascular resistance and to systolic, mean, and diastolic pulmonary artery pressures as recorded at 4-hour intervals. Regression analyses showed arterial oxygen tension to be unrelated to pulmonary vascular resistance and endothelial dysfunction to be unrelated to pulmonary artery pressure but to correlate to pulmonary vascular resistance, this correlation being significant after reperfusion for 16 hours (p < 0.05) and highly significant after 24 hours (p < 0.001).(ABSTRACT TRUNCATED AT 250 WORDS)

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

Adrenoreceptors, endothelial function, and lipid profile: effects of atenolol, doxazosin, and carvedilol.

BACKGROUND: The use of effective blood-pressure-lowering drugs has not achieved the expected reduction in the incidence of ischaemic heart disease in hypertensive patients. This study examined the cardiovascular effects of adrenergic blockade (alpha or beta, or both) and its effect on the fibrinolytic response of the endothelium to anoxia and lipoprotein metabolism in 78 hypertensive patients with ischaemic heart disease. METHODS: All patients had stable angina on positive exercise testing and silent ischaemia on 24 h Holter monitoring at baseline and 6 months after effective blood-pressure-lowering treatment with the selective beta-blocker atenolol, the alpha 1-inhibitor doxazosin, or the dual-action drug carvedilol. RESULTS: Atenolol increased the effort time (P < 0.05), total ischaemia (P < 0.05), and the number of ischaemic episodes (P < 0.05). It reduced the lipoprotein ratio (P < 0.05) but did not modify the fibrinolytic activity of the endothelium. Doxazosin increased the fibrinolytic index (ratio of plasminogen activator to its main inhibitor) before (P < 0.05) and after anoxia (P < 0.0001) and the lipoprotein ratio (P < 0.001), without an anti-ischaemic effect. Carvedilol increased the effort time (P < 0.05), reducing total ischaemia (P < 0.05), the number of ischaemic episodes (P < 0.01), and increasing the post-anoxia fibrinolytic index (P < 0.05) without modifying the lipid profile. CONCLUSIONS: At antihypertensive equipotent doses, the inhibition of alpha 1-receptors improves the endothelial fibrinolytic activity and the lipid profile. beta-Blockade has an anti-ischaemic action, but reduces the lipoprotein ratio (ApoA/ApoB) and does not improve endothelial fibrinolytic activity.

Adult

Alteration of endothelial function in arterioles of renal hypertensive rats at two levels of vascular tone.

DESIGN: Arterioles were studied in vivo to determine whether the altered response to endothelium-dependent and -independent vasodilators in one-kidney, one clip (1K1C) hypertensive rats was related to increased vascular tone or precontraction with norepinephrine. METHODS: Acetylcholine, bradykinin and nitroprusside were applied topically to arterioles in the spinotrapezius muscle of 4-week 1K1C hypertensive rats and normotensive control rats. The changes in internal diameter of arcade arterioles in response to four doses of each drug were measured with intravital microscopy before and during superfusion of indomethacin. Arteriolar responses were redetermined during enhancement of vascular tone by superfusion of norepinephrine. RESULTS: Vasodilation in response to acetylcholine, but not to nitroprusside, was reduced in 1K1C rats compared with normotensive rats. Indomethacin decreased the resting arteriolar diameter, but did not alter the response to acetylcholine or nitroprusside. The response to bradykinin, which was partly attenuated after cyclo-oxygenase inhibition, was also reduced in 1K1C rats. The attenuated endothelium-dependent responses in 1K1C rats may have been a result of changes in the synthesis or release of endothelium-derived relaxing factor because the response to the endothelium-independent vasodilator nitroprusside was unchanged. Indomethacin attenuated the vasodilation of bradykinin, which suggests that prostacyclin is involved in this action in vivo. CONCLUSIONS: Precontraction with norepinephrine did not change any of the responses, indicating that the reduced endothelial-dependent responses in hypertensive rats cannot be explained by differences in vascular tone.

Acetylcholine

Comparison of the antiatherogenic effects of isradipine and ramipril in cholesterol-fed rabbits: II. Effect on regression of atherosclerosis and restoration of endothelial function.

We report the effects of isradipine and ramipril on regression of diet-induced atherosclerosis in rabbits. Regression of diet-induced atherosclerosis was not significantly affected by ramipril, but isradipine significantly retarded regression. Thirty rabbits in three groups were fed a 0.3% cholesterol diet for 4 weeks. After this induction period, group IIr received the 0.3% cholesterol diet, group IIIr received the 0.3% cholesterol diet with isradipine (0.33 mg/kg/day), and group IVr received the 0.3% cholesterol diet with ramipril (0.33 mg/kg/day) for 12 more weeks. The rabbits then received a standard diet and remained on their respective drug regimen for 12 more weeks. Group Ir (10 rabbits) received a standard diet for 28 weeks. Acetylcholine (ACh)-induced maximal endothelium-dependent relaxations (EDR) of aortic rings were significantly less in group IIr (22.8 +/- 3.2%) than in group Ir (66.4 +/- 4.0%; p < 0.05). Ramipril and isradipine did not improve EDR as compared with group IIr. Regression of atherosclerosis was accompanied by an improved endothelium-dependent releasing factor (EDRF) release from the endothelium, but ramipril and isradipine did not promote this process. In addition, regression was associated with increasing sensitivity of vascular smooth muscle to EDRF that was significantly retarded by isradipine but not ramipril. Basal cyclic GMP levels were significantly reduced in aortic rings from group IIr as compared with group Ir. Ramipril, but not isradipine, restored basal cyclic GMP levels to control values. Both isradipine and ramipril protect against endothelial degeneration in hypercholesterolemic rabbits. However, isradipine but not ramipril inhibits regression of diet-induced atherosclerosis in rabbits.

Acetylcholine

Endothelial function in human coronary arteries in vivo. Focus on hypercholesterolemia.

To examine whether and to what extent hypercholesterolemia may affect the vasoactive role of the endothelium before the onset of angiographically visible atherosclerosis in the coronary circulation, we studied normal subjects (group 1, n = 11), individuals with elevated low density lipoprotein plasma values but angiographically smooth coronary arteries (group 2, n = 8), and patients with hypercholesterolemia and minimal disease of the vessel under study (group 3, n = 8). Coronary vasomotor function was evaluated by three interventions: subselective intracoronary infusion of acetylcholine (0.036, 0.36, and 3.6 micrograms/min) with a 3F Doppler catheter in the left anterior descending artery, 0.3 mg intracoronary nitroglycerin ("endothelium-independent"), and increase in blood flow (assessment of flow-dependent, endothelium-mediated coronary dilation). In group 1, all interventions caused coronary dilation of the left anterior descending artery as assessed by automatic quantification of digitized cineframes. However, in group 2, acetylcholine elicited substantial coronary vasoconstriction, and the vasodilator response to nitroglycerin and to increases in flow (flow-dependent dilation) was preserved. In group 3, the acetylcholine-induced coronary vasoconstriction was even more pronounced, and the flow-dependent dilation was impaired (+5.1 +/- 1% versus +10.5 +/- 1.1% [group 1], p less than 0.05). The coronary flow reserve (derived from Doppler flow velocity measurements) in response to papaverine was not significantly different in normal and hypercholesterolemic individuals (groups 2 and 3). However, the increase in coronary flow exerted by acetylcholine was substantially depressed in patients with hypercholesterolemia (groups 2 and 3) as compared with normal individuals (+48 +/- 8.3% and +49 +/- 25% versus +220 +/- 28.5%, respectively, p less than 0.01). Thus, hypercholesterolemia elicits endothelial dysfunction in coronary conduit and resistance vessels in humans that precedes angiographically visible atherosclerotic lesions in large coronary arteries. Conceivably, these vascular alterations contribute to increased coronary vasomotor tone within the coronary circulation and may predispose these patients to myocardial ischemia.

Acetylcholine