Search PubMed⌕ Search

Biomedical subjects

C B Treasure

Publications and source records attributed to C B Treasure.

At least 19 recordsLinked to original sources

Performance standards and edge detection with computerized quantitative coronary arteriography. The Lovastatin Restenosis Trial Group.

Quantitative coronary angiography (QCA) has become an important tool for evaluating coronary angiograms. Many methodologic factors, such as the choice of frame to analyze, the selection of the "normal," segment and the method of edge detection used may affect the results of QCA. The sequential steps in performing QCA, including a comparison of visual and automated edge-detection methodologies, were evaluated using 12 precision-drilled phantoms and 20 patient films. Normal diameter, minimal lumen diameter, and diameter stenosis were measured. In the phantom studies, the measurements from both visual and automated systems correlated well with the true measurements of the phantoms and between systems (all r values >0.92). To study the difference between methodologies on QCA results as influenced by the choice of frame and normal segment analyzed, the patient films were analyzed independently in 3 separate rounds of interpretation. In round 1, each system's operator individually chose frames and normal segments for analysis. In round 2, both systems analyzed the same preselected frames, but independently chose normal segments. In round 3, both systems analyzed the same preselected normal segments and frames. The intersystem correlations between visual and automatic systems for rounds 1, 2, and 3 were: normal diameter, r = 0.25, r = 0.37, and r = 0.75, respectively; minimal lumen diameter, r = 0.79, r = 0.86, and r = 0.85, respectively; and diameter stenosis, r = 0.65, r = 0.73, and r = 0.87, respectively. The manual edge-detection and automated edge-detection systems used in this study are reasonably accurate and consistent on phantom studies. In patient studies, the nonautomated processes (choice of frame and normal segment for analysis) produced significant differences in the QCA results, thus illustrating that operator-dependent factors other than edge detection are very important in QCA.

Constriction, Pathologic↗

Computer errors in electrocardiography.

Computer interpretation of electrocardiograms is far from adequate. This paper highlights a particular type of computer error that is merely symbolic of the large number of errors the computer can make. In addition to computer errors in electrocardiography, it is likely that computer interpretation has diminished the ability of physicians to interpret electrocardiograms.

Electrocardiography↗

Endothelial dysfunction in coronary heart disease.

Atherosclerosis is a chronic disease characterized by the focal accumulation of plaque (leukocytes, macrophages, smooth muscle cells, lipids, and extracellular matrix) in the vessel wall that ultimately leads to obstruction of the lumen through gradual progression, plaque rupture with intraluminal thrombosis, or both. The "vulnerable" plaque is smaller in size, richer in lipids, and more infiltrated with macrophages than the stable fibromuscular lesion. Therefore, lowering the lipid or macrophage pools stored in the plaque may stabilize the plaque and reduce the risk for plaque rupture. Indeed, cholesterol-lowering trials have yielded a significant reduction in acute cardiac events. Antithrombotic therapy may further prevent acute coronary syndromes by altering the consequences of plaque rupture. However, we need to address the earlier stages of atherosclerosis, namely, endothelial dysfunction. Current hypotheses concerning its pathogenesis focus on vascular endothelial injury, the oxidation of low-density lipoprotein and its effects on the endothelium, which set off a cascade or responses involving the complex interaction of growth factors and cytokines leading to increased oxidative stress, increased free radical formation, destruction of nitric oxide, endothelial dysfunction, increased platelet aggregation, thrombosis, inflammation, plaque formation, proteolysis, plaque fissure, and rupture.

Coronary Artery Disease↗

Beneficial effects of cholesterol-lowering therapy on the coronary endothelium in patients with coronary artery disease.

BACKGROUND: Impaired endothelium-mediated relaxation contributes to vasospasm and myocardial ischemia in patients with coronary artery disease. We hypothesized that cholesterol-lowering therapy with the 3-hydroxy-3-methylglutaryl-coenzyme A reductase inhibitor lovastatin could improve endothelium-mediated responses in patients with coronary atherosclerosis. METHODS: In a randomized, double-blind, placebo-controlled trial, we studied coronary endothelial responses in 23 patients randomly assigned to either lovastatin (40 mg twice daily; 11 patients) or placebo (12 patients) plus a lipid-lowering diet (American Heart Association Step 1 diet). Patients were studied 12 days after randomization and again at 5 1/2 months. These patients had total cholesterol levels ranging from 160 to 300 mg per deciliter (4.1 to 7.8 mmol per liter) and were undergoing coronary angioplasty. At the initial and follow-up studies, patients received serial intracoronary infusions (in a coronary artery not undergoing angioplasty) of acetylcholine to assess endothelium-mediated vasodilatation. The responses of the coronary vessels were analyzed with quantitative angiography. RESULTS: The patients in the placebo and lovastatin groups had similar responses to acetylcholine at a mean of 12 days of therapy (expressed as the percentage of change in diameter in response to acetylcholine doses of 10(-9) M, 10(-8) M, 10(-7) M, and 10(-6) M). In the placebo group, the respective mean (+/- SE) changes were 1 +/- 2, 0 +/- 2, -2 +/- 4, and -19 +/- 4 percent; in the lovastatin group, they were -2 +/- 2, -4 +/- 4, -12 +/- 5, and -16 +/- 7 percent (P = 0.32). (Coronary-artery constriction is reflected by negative numbers). The responses to acetylcholine in the placebo group after a mean of 5.5 months of therapy were -3 +/- 3, -1 +/- 2, -8 +/- 4, and -18 +/- 5 percent, respectively; there was significant improvement in the lovastatin group, which had responses of 3 +/- 3, 3 +/- 3, 0 +/- 2, and 0 +/- 3 percent (P = 0.004). CONCLUSIONS: Cholesterol lowering with lovastatin significantly improved endothelium-mediated responses in the coronary arteries of patients with atherosclerosis. Such improvement in the local regulation of coronary arterial tone could potentially relieve ischemic symptoms and signal the stabilization of the atherosclerotic plaque.

Acetylcholine↗

Usefulness of Holter monitoring for detecting myocardial ischemia in patients with nondiagnostic exercise treadmill test.

To determine if Holter monitoring can predict cardiac risk in patients when the exercise test is nondiagnostic, a total of 90 eligible patients were monitored for 24 hours after their exercise test without alterations in baseline medications. Prospective follow-up was obtained and events were confirmed by investigators unaware of subjects' clinical data. Nineteen patients (21%) had a total of 71 episodes of ST depression, all of which were asymptomatic. During a mean follow-up of 719 days, there were 10 patients with adverse events: 3 with cardiac deaths, 3 with nonfatal myocardial infarctions, and 4 with admissions for unstable angina. Of the 10 adverse events, 9 occurred in the group of 19 with ST depression detected by Holter (relative risk 34, 95% confidence interval 10 to 114). The sensitivity of ST depression was 90%, the specificity 88%, the predictive positive value 47%, and the predictive negative value 99%. In a multivariate Cox proportional-hazards model that controlled for prior history of coronary artery disease, hypercholesterolemia, and all exercise test variables, the presence of ST depression detected by Holter was the only independent predictor of outcome. In patients with nondiagnostic exercise tests, ST depression detected by Holter monitoring identified those with an increased risk of adverse cardiac events. The absence of ST depression detected by Holter was a useful predictor of low risk.

Adult↗

The dysfunctional endothelium in heart failure.

Through release of paracrine and autocrine substances, the vascular endothelium exerts a profound influence on the contractile and growth state of underlying vascular smooth muscle. In heart failure, there is now compelling evidence that endothelium-mediated relaxation is attenuated in response to muscarinic stimulation in both the coronary and peripheral circulation of humans. This impaired response is present regardless of the etiology of heart failure. The mechanisms, significance and etiologic importance of this endothelial defect are not yet understood. Possibilities include 1) alterations in endothelial cell surface receptors or abnormalities of postreceptor signal transduction; 2) abnormalities of endothelium-derived relaxing factor production or release; 3) rapid inactivation of endothelium-derived relaxing factor; and 4) an increase in endothelium-derived contracting factor production and activity in heart failure. We currently have little understanding of the mechanisms accounting for this dysfunctional state of the endothelium. Future research efforts should be directed toward an understanding of these mechanisms.

Animals↗

Hypertension and left ventricular hypertrophy are associated with impaired endothelium-mediated relaxation in human coronary resistance vessels.

BACKGROUND: Patients with hypertension and myocardial hypertrophy may have signs and symptoms of myocardial ischemia in the absence of obstructive coronary disease. Prior investigations have demonstrated impaired coronary flow reserve and have led to speculation that microvascular dysfunction might contribute to ischemia in these patients. Experimental studies have shown that the endothelium, an important regulator of microvascular tone, can be damaged by hypertension and is dysfunctional in cardiomyopathy. We hypothesized that endothelium-dependent vasodilation is impaired in the coronary microvasculature of patients with hypertension and ventricular hypertrophy. METHODS AND RESULTS: We studied coronary microvascular responses in 10 patients with left ventricular hypertrophy secondary to essential hypertension (HTN) (mean arterial pressure at catheterization, 151/94 mm Hg; mean posterior wall thickness, 1.4 +/- 0.1 cm) and nine normal control subjects with no history of hypertension (mean arterial pressure at catheterization, 128/75 mm Hg; mean posterior wall thickness, 1.0 +/- 0.02 cm) using the intracoronary Doppler catheter and quantitative angiography to assess changes in coronary blood flow (CBF). All patients had normal left ventricular systolic function. To assess microvascular endothelial function, we infused the endothelium-dependent vasodilator acetylcholine (10(-8)-10(-6) M) and the endothelium-independent vasodilator adenosine (10(-6)-10(-4) M) into the left anterior descending coronary artery. In response to acetylcholine, CBF increased only 32 +/- 25% in HTN patients, whereas CBF increased 192 +/- 39% in normal control subjects (p = 0.003). CBF increased 465 +/- 93% in HTN patients and 439 +/- 41% in normal control subjects in response to adenosine (p = NS). The proportion of coronary flow reserve attributable to endothelium-dependent dilation (obtained from peak acetylcholine/peak adenosine flow response) was 48 +/- 9% in normal control subjects but only 7 +/- 8% in HTN patients (p = 0.008). CONCLUSIONS: Endothelium-dependent vasodilation is markedly impaired in the coronary microvessels of patients with hypertension and ventricular hypertrophy. Loss of this vasodilator mechanism may contribute to disordered coronary flow regulation and the ischemic manifestations of hypertensive heart disease.

Acetylcholine↗

Patients with evidence of coronary endothelial dysfunction as assessed by acetylcholine infusion demonstrate marked increase in sensitivity to constrictor effects of catecholamines.

BACKGROUND: Studies in patients undergoing cardiac catheterization have demonstrated that normal coronary arteries dilate and atherosclerotic arteries constrict in response to exercise and the cold pressor test, but the mechanisms are unknown. These vasomotor responses are mirrored by the vasomotor response to the endothelium-dependent agent acetylcholine. Exercise and the cold pressor test are associated with adrenergic stimulation and increased circulating catecholamines. The present study tested the hypothesis that coronary arteries with intact endothelial function are relatively resistant to the constrictor effects of catecholamines, whereas arteries with loss of endothelial function have increased sensitivity to catecholamine-induced constriction. METHODS AND RESULTS: The vasomotor function of the coronary endothelium was assessed by serial acetylcholine infusions (final concentration, 10(-8) to 10(-6) M) in 30 segments in 15 patients with minimal or no evidence of coronary atherosclerosis. The acetylcholine responses were related to the vasomotor response to intracoronary phenylephrine infusion (final concentration, 10(-9) to 10(-6) M) in the same segments. In the group of 18 segments that constricted to acetylcholine, there was a constrictor response to phenylephrine at an approximately 100-fold lower concentration than the group of 12 segments that did not constrict to acetylcholine. CONCLUSIONS: These results suggest that the endothelial dysfunction that characterizes early and late atherosclerosis is associated with a marked increase in sensitivity to the constrictor effects of catecholamines. This finding may explain the constrictor responses of atherosclerotic coronary arteries to exercise and the cold pressor test. In stenotic coronary arteries this mechanism may play a role in the production of myocardial ischemia.

Acetylcholine↗

Loss of the coronary microvascular response to acetylcholine in cardiac transplant patients.

BACKGROUND: The coronary arteries of transplanted hearts frequently develop accelerated diffuse arteriosclerosis. The effects of this disease on resistance vessel function are unknown. METHODS AND RESULTS: To investigate the integrity of endothelium-dependent small-vessel vasodilation in transplanted hearts, coronary blood flow (CBF) responses to the endothelium-dependent dilator acetylcholine (10(-8) to 10(-6) M) and the essentially endothelium-independent dilator adenosine (10(-6) to 10(-4) M) were assessed in 40 studies of 29 transplant patients 1-3 years after transplantation and in seven nontransplanted controls. CBF was measured at constant arterial pressure with a Doppler catheter in the left anterior descending coronary artery. Controls, year 1 transplant patients, and year 2 transplant patients had similar increases in CBF in response to acetylcholine (232 +/- 40%, 200 +/- 41%, and 201 +/- 54%, respectively; p = NS), whereas year 3 transplant patients had increased CBF of only 100 +/- 39% (p less than 0.05 versus controls). An index of the proportion of CBF reserve attributable to endothelium-dependent dilation was obtained by normalizing each patient's peak acetylcholine flow response by the peak adenosine flow response. In patients receiving both acetylcholine and adenosine, endothelium-dependent flow responses declined over time [57 +/- 9% in controls, 56 +/- 10% for year 1, 47 +/- 12% for year 2, and 29 +/- 9% for year 3 (p less than 0.05 versus controls)]. An increased mean cyclosporine level (range, 99-261 ng/ml) (r = 0.67, p = 0.004) and increased transplant recipient age (range, 20-63 years) (r = 0.51, p = 0.004) predicted a preserved endothelium-dependent microvascular response. CONCLUSIONS: Thus, microvascular endothelium-dependent dilation deteriorates over time in the transplanted heart, which may reflect underlying graft arteriosclerosis and contribute to ischemic damage of the myocardium.

Acetylcholine↗

Epicardial coronary artery responses to acetylcholine are impaired in hypertensive patients.

Hypertension is a risk factor for coronary atherosclerosis possibly via an adverse effect on the vascular endothelium. Endothelium-mediated relaxation is impaired in animal models of hypertension. However, the effects of hypertension on human coronary artery endothelial cell function are unknown. To test whether endothelium-mediated relaxation is impaired in the coronary arteries of patients with hypertension, we studied 14 patients with essential hypertension requiring therapy and 15 nonhypertensive control patients undergoing cardiac catheterization. All had angiographically normal, smooth-appearing coronary arteries. Patients were matched for age and other coronary atherosclerosis risk factors. To assess endothelial cell function, the endothelium-dependent vasodilator acetylcholine (ACh, 0.01, 0.1, and 1.0 microM) and the endothelium-independent vasodilator nitroglycerin (40 micrograms) were selectively infused into the left anterior descending or circumflex coronary artery. Diameter change (expressed as percent) was assessed using quantitative angiography. There was a marked vasoconstrictor response to serial doses of ACh in hypertensive patients (-7%, -21%, and -27%) compared with control patients (-4%, -5%, and -7%) (p less than 0.02). The vasodilator response to nitroglycerin was preserved in hypertensive patients (+29%) and control patients (+25%) (p = NS), suggesting that endothelial cell dysfunction accounted for the differences in response to ACh. Thus, patients with hypertension have an accentuated coronary vasoconstrictor response to ACh, suggesting that endothelium-mediated regulation of coronary vascular tone is impaired by essential hypertension. This may reflect more generalized coronary endothelial changes contributing to the pathogenesis of atherosclerosis as well as hypertension.

Acetylcholine↗

Hypertension and the coronary circulation. With special attention to endothelial regulation.

Calcium channel antagonists are commonly used to treat chronic hypertension. Several studies of intact vascular tissues suggest that these agents may impair the production of the endothelium-derived relaxing factor and alter endothelium-dependent vascular relaxation. These studies are difficult to interpret because the calcium channel antagonist may have direct effects on vascular smooth muscle. In our study, a chemiluminescence assay was used to measure the release of nitrogen oxides from bovine aortic endothelial cells (BAEC) grown in monolayer. Under basal conditions, the release of nitrogen oxides was 0.2 nmol/100 mg protein and was increased approximately two-fold by 0.1 micrograms, bradykinin. Incubations with diltiazem, verapamil, and nifedipine for 60 min did not influence the basal and bradykinin-stimulated release of nitrogen oxides by BAEC. These data illustrate that the production of the endothelium-derived relaxing factor is not altered by the calcium channel antagonist, and are compatible with an absence of L-type calcium channels in vascular endothelial cells. Chronic hypertension produces myriad adverse effects in the coronary circulation. After coronary occlusion, infarct size, expressed as a function of myocardial mass perfused, is increased by 33%, and the wavefront of infarction from subendocardium to subepicardium is hastened. Both chronic and acute hypertension produce numerous abnormalities of coronary flow regulation. These include impairments of autoregulation, changes in vascular responsiveness, and alterations of endothelial cell function. Many of these may worsen the clinical consequences of ischemic heart disease, either by producing structural alterations of the coronary vasculature, or equally importantly, by altering coronary vascular responsiveness to either mechanical or neurohumoral stimuli.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Coronary vasomotor response to acetylcholine relates to risk factors for coronary artery disease.

In animals, acetylcholine dilates normal arteries and produces vasoconstriction in the presence of hypercholesterolemia, hypertension, or atherosclerosis, reflecting endothelial cell dysfunction. In patients with angiographically smooth coronary arteries, acetylcholine has been reported to produce both vasodilation and constriction. To test the hypothesis that the acetylcholine response relates to risk factors for coronary artery disease, acetylcholine 10(-8) to 10(-6) M was infused into the left anterior descending or circumflex coronary artery, and diameter changes were assessed with quantitative angiography in 34 patients with angiographically smooth coronary arteries. The acetylcholine response ranged from +37% (dilation) to -53% (constriction) at the peak acetylcholine dose. All coronary arteries dilated in response to nitroglycerin (26 +/- 17%), suggesting an abnormality of endothelial function in the patients with a constrictor response to acetylcholine. By multiple stepwise regression analysis, serum cholesterol (p less than 0.01), male gender (p less than 0.001), family history (p less than 0.05), age (p less than 0.05), cholesterol level (p less than 0.01), and total number of risk factors (p less than 0.0001) were independently associated with the acetylcholine response. Thus, coronary risk factors are associated with loss of endothelium-dependent vasodilation. The development of vasoconstriction is likely to be an abnormality of endothelial function that precedes atherosclerosis or an early marker of atherosclerosis not detectable by angiography.

Acetylcholine↗

Endothelium-dependent dilation of the coronary microvasculature is impaired in dilated cardiomyopathy.

Dilator reserve of the coronary microvasculature is diminished in patients with dilated cardiomyopathy. Although increased extravascular compressive forces, tachycardia, and increased myocardial mass can explain some impairment, recent evidence suggests the possibility of intrinsic microvascular disease. We tested the hypothesis that impairment of endothelium-dependent dilation of the microvasculature could be a contributing mechanism. We infused the endothelium-dependent dilator acetylcholine (Ach) (10(-8) to 10(-6) M) and the smooth muscle vasodilator adenosine (AD) (10(-6) to 10(-4) M) into the left anterior descending coronary artery in eight patients with dilated cardiomyopathy (mean ejection fraction, 28%) and seven controls (atypical chest pain). Small vessel resistance was assessed by measuring coronary blood flow (CBF) at constant arterial pressure with a Doppler velocity catheter (corrected for cross-sectional area by angiography). With Ach, control patients increased CBF 232 +/- 40% (mean +/- SEM), whereas CBF did not significantly change in cardiomyopathy patients (41 +/- 24%) (p less than 0.0001, control vs. cardiomyopathy). With AD, control patients increased CBF 422 +/- 56% and cardiomyopathy patients increased CBF 268 +/- 43% (p = 0.13). An index of the proportion of coronary flow reserve attributable to endothelium-dependent vasodilation was obtained by standardizing each patient's Ach dose response to his maximal AD flow response. In seven control patients receiving both Ach and AD, 56 +/- 9% of the maximal AD flow response was attained with the endothelium-dependent vasodilator Ach, whereas in seven cardiomyopathy patients receiving both Ach and AD, only 23 +/- 14% of the maximal AD response was attained (p less than 0.01).(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylcholine↗

Early evidence of endothelial vasodilator dysfunction at coronary branch points.

Intracoronary acetylcholine produces endothelium-dependent dilation of normal coronary arteries and paradoxical constriction of atherosclerotic vessels. Regional differences in endothelium-dependent vasomotion, however, have not been studied in relation to the nonuniform development of atherosclerosis. We compared the vasomotor response to increasing doses of acetylcholine of angiographically smooth coronary artery segments prone to atherosclerosis (coronary branch points) with segments remote from branch points (straight segments). In patients with entirely smooth coronary arteries and a dilator response to acetylcholine (group 1, n = 7), branch points and straight segments demonstrated equal and significant dose-dependent dilation to acetylcholine (14.7 +/- 8.9% and 12.3 +/- 12.7%, respectively; p identical to NS). In patients with early atherosclerosis as manifest by luminal coronary irregularities, the lowest dose of acetylcholine (10(-8) M) produced constriction at branch points and slight dilation at straight segments (-6.3 +/- 7.4% vs. +2.2 +/- 7.3%, p less than 0.05). At higher doses of acetylcholine, both branch point and straight segments constricted, but constriction remained more pronounced at branch points. Both branch point and straight segments, however, retained the ability to dilate to the non-endothelium-dependent agent, nitroglycerin. In a third group of patients with angiographically entirely smooth coronary arteries but without dilation to acetylcholine, constriction to acetylcholine again occurred first at branch points. Thus, coronary branch points demonstrate increased sensitivity to acetylcholine-induced constriction in patients with angiographic evidence of early coronary atherosclerosis and in middle-aged patients with smooth coronary arteries. These segments, however, retain the ability to dilate to nitroglycerin. Whether this early evidence of defective endothelium-dependent vasodilation predicts the later development of occlusive atherosclerosis is not yet known.

Acetylcholine↗

Control of shear stress in the epicardial coronary arteries of humans: impairment by atherosclerosis.

Altered arterial wall shear stress may adversely affect vascular endothelium and contribute to atherogenesis. This study examined the hypothesis that, in humans, dilation of normal coronary arteries with increased flow limits increases in shear stress and that loss of flow-mediated dilation in atherosclerosis results in failure to control shear stress. Coronary blood flow was increased by infusing adenosine (0.022 to 2.2 mg/min) through a 2.5F Doppler flow catheter positioned in the middle segment of the left anterior descending coronary artery in 8 patients with mild atherosclerosis but no flow-limiting stenosis and in 10 patients with entirely smooth coronary arteries. Quantitative angiography and coronary flow velocity were used to estimate shear stress in a proximal segment of the left anterior descending artery exposed to increased flow, but not to adenosine. The peak increase in blood flow was the same in smooth (371 +/- 65%) and irregular (377 +/- 50%) arteries. However, at peak flow, dilation was greater in smooth segments (16.3 +/- 2.7%) than in irregular segments (2.0 +/- 1.5%) (p less than 0.001). In each patient, smooth segments dilated with increasing shear stress (slope 7.4 +/- 0.9%), whereas irregular segments dilated less (slope 0.9 +/- 0.6%) and showed greater increases in shear stress (p less than 0.01). The peak increase in shear stress was less in smooth (189 +/- 23%) than in irregular (365 +/- 52%) segments (p less than 0.01). These results suggest a control mechanism in normal coronary arteries whereby increases in shear stress stimulate vasodilation and thus limit further increases in this force at the endothelial surface.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine↗

Leaflet entrapment causing acute severe aortic insufficiency during balloon aortic valvuloplasty.

Cusp entrapment is a previously unreported mechanism of aortic insufficiency after balloon aortic valvuloplasty. In a patient who developed severe acute aortic insufficiency and expired after balloon aortic valvuloplasty, pathologic evaluation revealed a large, solitary, fractured, calcific nodule in the noncoronary cusp in which the malaligned, irregular fracture surfaces of the nodule had entrapped the leaflet in an open position. The ease with which the entrapped leaflet was reduced by manipulation on postmortem examination suggests that further manipulation of the cusp might restore valve competence in some cases when aortic insufficiency occurs after balloon valvuloplasty in calcific aortic stenosis.

Aged↗

Atherosclerosis impairs flow-mediated dilation of coronary arteries in humans.

Studies in animals have suggested that increases in blood flow result in dilation of large arteries by an endothelium-dependent mechanism. Atherosclerosis can impair endothelium-dependent vasodilation to vasoactive agents. The purpose of this study was to determine whether or not large coronary arteries in humans exhibit dilation with increases in blood flow and to test the hypothesis that this response is impaired in the presence of atherosclerosis. Graded concentrations of adenosine were infused into the distal left anterior descending (LAD) coronary artery to test the dilator response of the proximal LAD to increases in blood flow. The proximal LAD was thereby exposed to changes in blood flow, but not directly to adenosine. Ten patients with angiographically smooth proximal LAD segments (group 1) and seven patients with irregularities in the proximal LAD consistent with mild atherosclerosis (group 2) were studied. Infusions of adenosine throughout the range of 0.022 to 2.2 mg/min into the LAD produced a dose-dependent increase in estimated coronary blood flow and a mean increase of 305 +/- 27% at 2.2 mg/min adenosine. At 2.2 mg/min adenosine, a striking difference (p less than 0.001) occurred between the significant flow-mediated dilation of the proximal LAD observed in group 1 (+13.2 +/- 1.3% from 2.63 +/- 0.16 mm, p less than 0.001), and the lack of dilation in group 2 (+1.8 +/- 1.5% from 3.20 +/- 0.17 mm, p = NS), despite a greater increase in coronary blood flow in group 2 (+387 +/- 29%) than in group 1 (+230 +/- 36%).(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine↗