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M A Pfeffer

Publications and source records attributed to M A Pfeffer.

At least 19 recordsLinked to original sources

Effect of captopril on mortality and morbidity in patients with left ventricular dysfunction after myocardial infarction. Results of the survival and ventricular enlargement trial. The SAVE Investigators.

BACKGROUND: Left ventricular dilatation and dysfunction after myocardial infarction are major predictors of death. In experimental and clinical studies, longterm therapy with the angiotensin-converting--enzyme inhibitor captopril attenuated ventricular dilatation and remodeling. We investigated whether captopril could reduce morbidity and mortality in patients with left ventricular dysfunction after a myocardial infarction. METHODS: Within 3 to 16 days after myocardial infarction, 2231 patients with ejection fractions of 40 percent or less but without overt heart failure or symptoms of myocardial ischemia were randomly assigned to receive doubleblind treatment with either placebo (1116 patients) or captopril (1115 patients) and were followed for an average of 42 months. RESULTS: Mortality from all causes was significantly reduced in the captopril group (228 deaths, or 20 percent) as compared with the placebo group (275 deaths, or 25 percent); the reduction in risk was 19 percent (95 percent confidence interval, 3 to 32 percent; P = 0.019). In addition, the incidence of both fatal and nonfatal major cardiovascular events was consistently reduced in the captopril group. The reduction in risk was 21 percent (95 percent confidence interval, 5 to 35 percent; P = 0.014) for death from cardiovascular causes, 37 percent (95 percent confidence interval, 20 to 50 percent; P less than 0.001) for the development of severe heart failure, 22 percent (95 percent confidence interval, 4 to 37 percent; P = 0.019) for congestive heart failure requiring hospitalization, and 25 percent (95 percent confidence interval, 5 to 40 percent; P = 0.015) for recurrent myocardial infarction. CONCLUSIONS: In patients with asymptomatic left ventricular dysfunction after myocardial infarction, long-term administration of captopril was associated with an improvement in survival and reduced morbidity and mortality due to major cardiovascular events. These benefits were observed in patients who received thrombolytic therapy, aspirin, or beta-blockers, as well as those who did not, suggesting that treatment with captopril leads to additional improvement in outcome among selected survivors of myocardial infarction.

Adult

Do the results of randomized clinical trials of cardiovascular drugs influence medical practice? The SAVE Investigators.

BACKGROUND: Medical practice patterns change in response to a variety of stimuli, one of which may be the publication of the results of randomized clinical trials. We assessed the temporal association between the publication of clinical trials on myocardial infarction and changes in treatment practices for this disorder. METHODS: We analyzed the use of aspirin before and after myocardial infarction and that of calcium antagonists after myocardial infarction in 2231 survivors of myocardial infarction enrolled in the Survival and Ventricular Enlargement (SAVE) study over a three-year period (from January 1987 through January 1990). The proportion of patients using these treatments was analyzed before and after the publication dates of three clinical trials: the Physicians' Health Study, published in January 1988, which supported the use of aspirin to prevent a first myocardial infarction; the Second International Study of Infarct Survival (ISIS-2), published in August 1988, which supported the use of aspirin after myocardial infarction; and the Multicenter Diltiazem Postinfarction Trial, published in August 1988, which reported a deleterious effect of diltiazem in some patients after myocardial infarction. RESULTS: The use of aspirin before myocardial infarction increased from 16.2 percent to 23.9 percent between January 1987 and January 1990 (P less than 0.001). Enrollment in the study after the publication of the Physicians' Health Study independently predicted aspirin use before myocardial infarction (odds ratio, 1.43; 95 percent confidence interval, 1.11 to 1.85). The use of aspirin after myocardial infarction increased from 38.8 percent to 71.9 percent (P less than 0.001) during the three-year study period. Enrollment in the study after the publication of ISIS-2 independently predicted the use of aspirin after myocardial infarction (odds ratio, 2.28; 95 percent confidence interval, 1.89 to 2.76). The use of calcium antagonists after myocardial infarction decreased from 57.1 percent to 33.1 percent (P less than 0.001) during the study period. Enrollment in the study after the publication of the Multicenter Diltiazem Postinfarction Trial independently predicted the use of calcium antagonists after myocardial infarction (odds ratio, 0.47; 95 percent confidence interval, 0.39 to 0.57). CONCLUSIONS: These observations suggest that randomized clinical trials have a measurable influence on medical practice patterns.

Adult

The effect of treatment on survival in congestive heart failure.

Congestive heart failure (CHF) is a disorder characterized by a variety of clinical, biochemical, electrophysiological, and hemodynamic abnormalities. During the past two decades, numerous drugs have been employed in the treatment of this complex syndrome, and many agents have been shown to improve symptoms and ventricular function in patients with CHF. Because CHF is associated with a high risk of death, treatment should be directed not only toward the relief of symptoms, but also toward a reduction in mortality. Many variables have been shown to be related to survival; taken individually, however, each is limited in its utility in predicting prognosis. In recent years, large-scale studies with large sample sizes have directly assessed the effects of treatment on mortality in CHF. Results from these trials indicate that vasodilators and angiotensin-converting enzyme (ACE) inhibitors may improve mortality in patients with symptoms of heart failure. Additional trials are now in progress to evaluate the effect of treatment on patients with asymptomatic left ventricular dysfunction.

Angiotensin-Converting Enzyme Inhibitors

Left ventricular remodeling in the year after first anterior myocardial infarction: a quantitative analysis of contractile segment lengths and ventricular shape.

Infarct expansion after myocardial infarction results in early ventricular enlargement and distortion of ventricular geometry. To characterize the components of late volume enlargement, biplane left ventriculography was performed in 52 patients 3 weeks and 1 year after a first anterior myocardial infarction. Biplane diastolic circumference and contractile and noncontractile segment lengths were measured. Global geometry was evaluated by using a sphericity index (angiographic volume of the ventricle divided by the volume of a sphere with the same circumference). Regional geometry was assessed by measurement of endocardial curvature, an important determinant of wall tension. End-diastolic volume was enlarged at baseline and increased at 1 year (230 +/- 42 to 244 +/- 55 ml, p = 0.01) as a result of increases in contractile segment length (34 +/- 5 to 37 +/- 5 cm, p less than 0.001) and sphericity index (0.74 +/- 0.07 to 0.76 +/- 0.08, p less than 0.001), whereas the noncontractile segment length decreased (15 +/- 6 to 12 +/- 6 cm, p less than 0.005). Curvature analysis revealed a flattening of presumably high tension concavity at the anterobasal (-6.0 +/- 4.0 to -4.5 +/- 3.7, p less than 0.01) and inferior (-4.5 +/- 2.0 to -3.6 +/- 2.1, p less than 0.005) margins of the infarct and less bulging of the anterior wall (9.4 +/- 2.5 to 8.2 +/- 2.3, p less than 0.001). Patients selected for late enlargement (diastolic volume increase greater than 20 ml, n = 19) had an increase in sphericity (0.75 +/- 0.05 to 0.80 +/- 0.08, p less than 0.005) and in diastolic circumference (54 +/- 3 to 56 +/- 4 cm, p less than 0.001) secondary to elongation of the contractile segment (32 +/- 4 to 36 +/- 4 cm, p = 0.001) at 1 year. Thus, late ventricular enlargement after anterior infarction results from an increase in contractile segment length and a change in ventricular geometry and is not a result of progressive infarct expansion. In the group of patients at high risk for late ventricular enlargement because of persistent occlusion of the infarct-related vessel, captopril therapy attenuated late volume enlargement by preventing these changes in contractile segment length and chamber geometry.

Adult

Rationale and design of a secondary prevention trial of lowering normal plasma cholesterol levels after acute myocardial infarction: the Cholesterol and Recurrent Events trial (CARE)

Recent clinical trials of primary and secondary prevention of cardiovascular disease have demonstrated that lowering plasma cholesterol decreases the incidence of coronary heart disease in patients with elevated plasma cholesterol. However, it is not known whether patients with established coronary artery disease and normal plasma cholesterol can be benefited. Several previous prevention trials reviewed in this report found that patients who had plasma cholesterol levels at baseline in the upper portion of the eligibility range (e.g., greater than 240 mg/dl) received greater benefit from hypolipidemic diet or drug therapy than patients who had lower plasma cholesterol levels at baseline. The recent availability of drugs that are more potent and less prone to cause adverse reactions than previous regimens permits this important question to be addressed. The Cholesterol and Recurrent Events trial is testing whether pravastatin, a hydroxymethylglutaryl coenzyme A reductase inhibitor, will decrease the sum of fatal coronary heart disease and nonfatal myocardial infarction (MI) in patients who have recovered from a MI and who have normal total cholesterol levels. Fatal cardiovascular disease and total mortality are important secondary end points. The trial is enrolling 4,000 men and women from 80 centers throughout North America, age 21 to 75 years, who have survived MI for 3 to 20 months, who have plasma total cholesterol less than 240 mg/dl (6.2 mmol/liter) and low-density cholesterol of 115 to 174 mg/dl (3.0 to 4.5 mmol/liter), and who are representative of the general population of patients with MI. Patients are randomized to either active or inactive drug therapy. Active therapy consists of pravastatin, 40 mg/day, designed to achieve an average decrease in low-density lipoprotein cholesterol of approximately 30%, and an increase in high-density lipoprotein of 5%. The average duration of follow-up will be greater than or equal to 5 years. To protect against a lower than expected rate of recurrent events, the trial will be continued until a predetermined fixed number of coronary heart disease events occurs in the entire cohort so that the original sensitivity of the trial will be maintained.

Adult

Ventricular enlargement and remodeling following acute myocardial infarction: mechanisms and management.

Severe myocardial ischemia, when sustained, leads to a predictable sequence of events, including myocardial necrosis, expansion of the infarct, and later its replacement by scar tissue. The nonischemic tissue sustains ventricular function, but it frequently adapts to the extra load placed on it by dilating. The enlargement and remodeling of the left ventricle may lead to ventricular failure and arrhythmias. Rational management to prevent these complications includes restoration of the patency of the occluded vessel and ventricular unloading. These two interventions may be useful both early and late in the course of infarction.

Cardiomegaly

Patency of the infarct-related coronary artery and ventricular geometry.

The pathogenesis of acute myocardial infarction (AMI) involves a sudden thrombotic occlusion of a coronary artery. Spontaneous or pharmacologic thrombolysis may lead to myocardial salvage if patency is achieved within a narrow time window. However, patients in whom thrombolysis occurs late seem to demonstrate improved left ventricular (LV) function and prognosis, which may be independent of myocardial salvage. Preservation of normal LV geometry by reducing expansion of the infarcted segment is a likely mechanism for this benefit. Infarct expansion is most pronounced in patients with anterior wall AMI who have a persistently occluded infarct-related vessel. This process of expansion leads to early increases in LV volume and distortions of LV contour (abnormal LV geometry). Patients whose infarct segment is largest, patients who have manifested infarct expansion, and patients with a persistently occluded infarct-related artery are at highest risk for progressive LV dilation. Experimental data support the concept that reperfusion of occluded vessels that occurs too late for myocardial salvage will preserve LV geometry by limiting infarct expansion. Prospective clinical trials should address whether there is a late, "second time window" during which infarct expansion and distortions of LV geometry may be reduced by (1) therapy with thrombolytic agents applied late after infarction, (2) late mechanical reperfusion with percutaneous transluminal coronary angioplasty (PTCA) or related methods, and (3) load-reducing agents to decrease remodeling, such as angiotensin-converting enzyme inhibitors or nitroglycerin.

Animals

Rationale, design and baseline characteristics of the survival and ventricular enlargement trial. SAVE Investigators.

Heart failure, often associated with ventricular enlargement and recurrent myocardial infarction, is one of the major causes of postinfarction mortality. This observation suggests that measures used to prevent ventricular enlargement may improve postinfarction survival. The Survival and Ventricular Enlargement (SAVE) trial is a randomized, double-blind, placebo-controlled clinical trial with the purpose of evaluating the effect of angiotensin-converting enzyme (ACE) inhibition on postinfarction death and ventricular dilation. This multicenter trial had a sample size goal of 2,220 patients between 21 and 79 years of age who had recently sustained a myocardial infarction and who have an ejection fraction determined by radionuclide ventriculogram (RVG-EF) of less than or equal to 40%. In addition to conventional therapy, patients were randomly assigned to captopril or placebo therapy commencing within 3-16 days following their myocardial infarction. A second RVG-EF is performed on all surviving participants at the end of the average 3.5-year treatment and follow-up period. The study has 90% power to detect a 25% improvement in postinfarction mortality or prevention of greater than or equal to 9 unit absolute reduction in radionuclide ejection fraction. Additional end points, design features, and the administrative organization of the trial are described.

Adult

Ventricular enlargement following infarction is a modifiable process.

The dilation and distortion of the left ventricle that may occur as a consequence of myocardial infarction are associated with a heightened risk for adverse cardiovascular events. Infarcts that are extensive, transmural, and involve the apex as well as persistently occluded, infarct-related coronary arteries are predisposing factors for ventricular enlargement. Infarct expansion is an early component of the overall process of volume enlargement, which later continues as a volume overload hypertrophy of the remaining myocardium. Therapy to limit myocardial necrosis has been associated with the preservation of a more normal ventricular architecture. The late phase of ventricular remodeling has also been shown to be amendable to therapy, as chronic administration of angiotensin-converting enzyme (ACE) inhibitors has been associated with a reduction in the extent of ventricular dilation. There is currently a great deal of clinical investigative interest not only in whether ACE inhibition therapy following acute myocardial infarction will result in preservation of ventricular volume and topography, but, more importantly, whether it will lead to an improvement in clinical outcome.

Angiotensin-Converting Enzyme Inhibitors

Left ventricular remodeling after acute myocardial infarction: clinical course and beneficial effects of angiotensin-converting enzyme inhibition.

LV enlargement is an important determinant of survival after AMI. Pathophysiologic mechanisms leading to LV dilatation after an AMI include early thinning and stretching of the infarcted segment (e.g., infarct expansion) and hypertrophy of the noninfarcted myocardium. Such LV dilatation may adversely affect subsequent cardiac function, leading to heart failure and death. Experimental data in animals and preliminary studies in humans have demonstrated that early administration of captopril, an angiotensin-converting enzyme inhibitor, may limit infarct expansion and will attenuate progressive LV dilatation. This article discussed the clinical importance of the dilated left ventricle and reviewed advances and ongoing research in the use of angiotensin-converting enzyme inhibitors in the chronic phase after AMI.

Angiotensin-Converting Enzyme Inhibitors

Progressive ventricular remodeling in rat with myocardial infarction.

Ventricular dilatation may have important prognostic implications for the survival of patients with left ventricular (LV) dysfunction. To determine the manner and extent to which the left ventricle of the rat remodels and dilates after myocardial infarction, we obtained the passive pressure-volume relationships, chamber stiffness constants, and mass during both the early and late phases. In moderate and large infarcts as inflammation and edema developed, LV weight increased then progressively decreased as a thin scar formed, returning to normal values as a result of compensatory hypertrophy of the residual myocardium. LV dilatation occurred in all rats with infarcts but to different extents depending on infarct size and duration. In the early postinfarction phase, pressure-volume relationship was relatively unchanged in all infarct-size groups, except for significant rightward shift in low pressure range for rats with moderate and large infarcts and significant leftward shift in high pressure range for rats with small infarcts. During resolution of the inflammatory response, LV dilatation occurred in all infarct groups in relation to infarct size. As scar formation became complete, LV enlargement did not progress in rats with small infarcts but did so in rats with moderate and large infarcts. LV chamber stiffness remained within the range of normal values during the early phase in all rats with infarcts but decreased significantly during the late phase in rats with moderate and large infarcts in association with the extent of ventricular enlargement. Alterations in the volume-to-mass ratio (V/Vwt) were most marked in the late postinfarction phase, wherein both volume (increased) and mass (decreased, then increased) changed dramatically and V/Vwt progressively increased in rats with large infarcts.

Animals

Angiotensin converting enzyme inhibition therapy following myocardial infarction. Rationale for clinical trials.

Progressive enlargement following myocardial infarction can be anticipated to adversely effect outcome since prognosis is intimately related to the degree of left ventricular dysfunction and resultant ventricular cavity size. Recent experimental and clinical data have indicated that chronic angiotensin converting enzyme inhibitor therapy can be effective in attenuating the ventricular enlargement which occurs following infarction. These observations have provided a rationale for ongoing large multicenter clinical trials designed to determine whether angiotensin converting enzyme inhibition will be of clinical benefit following infarction. This article reviews the rationale for studies of angiotensin converting enzyme inhibition in post-infarct patients and summarizes the ongoing international research effort to fully define the role of angiotensin converting enzyme inhibition following infarction.

Angiotensin-Converting Enzyme Inhibitors

Role of left ventricular dysfunction in selective neurohumoral activation in the recovery phase of anterior wall acute myocardial infarction.

Neurohumoral activation is readily apparent in patients with symptomatic congestive heart failure (CHF) and in the acute phase after acute myocardial infarction. In this study, the neurohumoral profiles of 36 asymptomatic patients in the early convalescent phase after acute myocardial infarction were examined. All patients in the study had a radionuclide ejection fraction less than or equal to 45% and underwent cardiac catheterization 11 to 30 days after infarction. Venous blood samples were obtained in the supine state for the measurement of norepinephrine, angiotensin II, plasma renin activity and aldosterone in all patients. Despite the reduced ejection fraction and extensive wall motion abnormalities, plasma norepinephrine was not elevated and did not correlate with any measured hemodynamic, angiographic or clinical variables. The renin-angiotensin II aldosterone system was activated, as expected, in the 9 study patients receiving loop diuretics. However, even in the 27 patients not taking diuretics, plasma angiotensin II and renin activity levels were increased in relation to Killip classification, the presence of a left ventricular (LV) aneurysm and LV ejection fraction. Activation of the renin-angiotensin-aldosterone system can be identified in hemodynamically compensated postinfarction patients not taking diuretics and appears to be related to the extent of LV dysfunction.

Aged