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Left ventricular dysfunction: which role for calcium antagonists?

Left ventricular dysfunction is the most common cause of congestive heart failure. Thus, treating or preventing left ventricular dysfunction represents an important therapeutic goal. The use of calcium antagonists in the treatment of left ventricular dysfunction or congestive heart failure has been proposed for many years now, mainly because of their potent vasodilatory effect. However, despite the theoretical basis, the results of studies exploring the possible use of calcium antagonists in this setting have not been at all encouraging. It has been suggested that this is because calcium antagonists have important additional effects: they depress cardiac contractility and activate the neurohormonal system. The various calcium antagonists have different characteristics and can be potentially useful in a variety of clinical conditions. Amlodipine (a calcium antagonist with a minimal cardiodepressant effect, long half-life and minimal activity on the neurohormonal system) has been shown to be clinically useful in congestive heart failure of nonischaemic origin. Calcium antagonists capable of limiting heart rate increment are useful in limiting ischaemia-induced left ventricular dysfunction. Verapamil exerts a potent protective effect on both microvascular damage and mechanical recovery during prolonged ischaemia followed by reperfusion. Lastly, nisoldipine is capable of ameliorating left ventricular function in patients with left ventricular diastolic dysfunction and has, therefore, potential in the treatment of congestive heart failure of left ventricular diastolic dysfunction origin. Thus, calcium antagonists may have a role in the treatment of left ventricular dysfunction provided that patient characteristics, the underlying mechanisms of the left ventricular dysfunction and the various calcium antagonist characteristics are well understood and carefully considered.

Animals↗

Right and left ventricular dysfunction in patients with severe pulmonary disease.

OBJECTIVE: To determine the prevalence of right and left ventricular dysfunction in a prescreened population of patients with severe pulmonary disease, and to analyze the relationship between right and left ventricular function. DESIGN: Retrospective record review of 434 patients with severe pulmonary disease. PATIENTS: Patients with end-stage pulmonary disease, including alpha1-antitrypsin deficiency emphysema, COPD, cystic fibrosis (CF), idiopathic pulmonary fibrosis, and pulmonary hypertension (primary and Eisenmenger's syndrome), who were evaluated for lung transplantation between January 1993 and December 1995. MEASUREMENTS: Pulmonary function tests, arterial blood gases, radionuclide ventriculography, two-dimensional transthoracic echocardiography, pulmonary hemodynamics, coronary angiography. RESULTS: Right ventricular dysfunction (right ventricular ejection fraction [RVEF] <45%) was present in 267 patients (66%), but the prevalence was highest (94%) in patients with pulmonary vascular disease. Among the patients with airway or parenchymal lung disease, the prevalence ranged from 59% in COPD to 66% in CF. In contrast, left ventricular dysfunction (left ventricular ejection fraction [LVEF] <45%) was present in only 6.4%, but it, too, was most common in the group with pulmonary hypertension (19.6%). In the groups with parenchymal or airway disease, the prevalence was 3.6%, and there was no statistical difference among the four diagnoses (alpha1-antitrypsin deficiency emphysema; COPD; CF; idiopathic pulmonary fibrosis). LVEF showed a significant correlation with RVEF (r=0.44; p<0.05), and left ventricular dysfunction was associated with the presence of moderate-to-severe tricuspid regurgitation but not with coronary artery disease. In a subset of patients with both right and left ventricular dysfunction who subsequently underwent lung transplantation, RVEF and LVEF increased pari passu after transplantation. CONCLUSION: The prevalence of right ventricular dysfunction is high in patients with end-stage pulmonary disease, but the prevalence of left ventricular dysfunction is relatively low. Left ventricular dysfunction appears to be related to right ventricular dysfunction, perhaps through ventricular interdependence.

Adult↗

Right ventricular dysfunction after endocardiectomy for right ventricular endomyocardial fibrosis.

Early right ventricular failure following a large endocardiectomy in right endomyocardial fibrosis (EMF) is reported. This diagnosis was confirmed upon echocardiography by the presence of a dilated right ventricle, and hemodynamically (upon postoperative control catheterization) by the presence of right ventricular diastolic dysfunction. The role of the endocardiectomy and of the pericardium in the genesis of this ventricular dysfunction are discussed in the light of this case which was documented by a hemodynamic study and surgically confirmed.

Adolescent↗

Survival of antiarrhythmic or implantable cardioverter defibrillator treated patients with varying degrees of left ventricular dysfunction who survived malignant ventricular arrhythmias.

INTRODUCTION: The relative effectiveness of the implantable cardioverter defibrillator (ICD) and antiarrhythmic drugs (AADs) varies with left ventricular ejection fraction (LVEF). However, once an ICD or AAD treatment strategy is chosen, the degree to which the LVEF influences survival is unknown. This article addresses that question. METHODS AND RESULTS: Using patient data from the Antiarrhythmics Versus Implantable Defibrillators (AVID) trial, the impact of LVEF on prognosis of patients who were treated with either an ICD or AAD was assessed. Survival within each quintile of LVEF was estimated by the method of Kaplan-Meier for patients treated with either the ICD or AADs. The Cox proportional hazards model was used to investigate the prognostic value of LVEF for estimating survival after adjustment for other baseline covariates among all patients in the subgroups treated by ICD or AAD. In the highest two quintiles of LVEF, survival was comparable in AAD-treated and ICD-treated patients. In the AAD-treated patients, higher LVEF was significantly and independently associated with survival free of all-cause mortality and arrhythmic death. In the ICD-treated patients, however, the statistical significance of the association was lost and only a trend toward greater survival was present. Death due to congestive heart failure remained independently and significantly associated with survival in both AAD-treated and ICD-treated patients. CONCLUSION: In patients treated with AADs but not patients treated with ICDs, survival is strongly associated with LVEF. The absence of a statistically significant association in the ICD patients is likely related to the effectiveness of the ICD in treating malignant ventricular arrhythmias, but a chance lack of association cannot be excluded.

Aged↗

Right ventricular dysfunction and organ failure in left ventricular assist device recipients: a continuing problem.

BACKGROUND: Although right ventricular assist device (RVAD) use has declined with the introduction of inhaled nitric oxide and phosphodiesterase inhibitors (type III), right ventricular dysfunction (RVD) is still a serious problem in patients receiving left ventricular assist devices (LVAD). METHODS: We retrospectively analyzed Thoratec Vented Electrical LVAD recipients between June 1996 and September 1999. RVD was defined as inotropic requirement 14 days or more or need for RVAD postoperatively, or both. RESULTS: Sixty-nine LVAD recipients were analyzed. Twenty-one patients (30.4%) had RVD, with 1 patient requiring RVAD insertion, and there were 48 non-RVD patients. There were no significant differences between both groups for age, sex, etiology of congestive heart failure, days of support, and preoperative hemodynamics. Preoperative right ventricle stroke work index (mm Hg x m(-2) x L(-1)) had a trend toward being lower in the RVD group (4.1+/-3.2 versus 6.1+/-3.7, p = 0.06). A higher preoperative total bilirubin (mg/dL) was noticed in the RVD group (4.0+/-5.2 versus 2.1+/-1.7). The RVD group had a higher postoperative creatinine (2.2+/-1.4 mg/dL versus 1.5+/-0.8 mg/dL), incidence of continuous venovenous hemofiltration dialysis (73% versus 26%), transfusion of packed red blood cells (43.2+/-28.6 units versus 24.7+/-18.9 units), platelets (58.6+/-46.1 units versus 30.2+/-20.4 units), with longer intensive care unit length of stay (33.6+/-34.7 days versus 9.1+/-6.9) and higher mortality (42.8% versus 14.5%). When deaths were excluded, both intensive care unit and postoperative length of stay were significantly longer in the RVD group. CONCLUSIONS: RVD in LVAD recipients remains poorly identified and is associated with a high transfusion rate and end organ failure that results in increased intensive care unit and hospital length of stay, and a high mortality rate. Preoperative identification of risk factors for RVD may select patients who would benefit from a biventricular assist device and prevent the subsequent end organ failure.

Aged↗

Mechanisms of transplant right ventricular dysfunction.

OBJECTIVE: Right ventricular (RV) dysfunction remains the leading cause of early mortality after cardiac transplantation. The effect of brain death and subsequent hypothermic cardioplegic arrest and storage on subsequent post-transplant right ventricular function was examined. SUMMARY BACKGROUND DATA: Right ventricular dysfunction in the donor heart usually is attributed to failure of the donor right ventricle to adapt to the sudden increase in afterload (pulmonary vascular resistance) in the recipient. Strategies to improve ventricular mechanics in the postoperative period are aimed at reducing pulmonary vascular resistance with vasodilators or augmenting right ventricular contractility with inotropic agents. Events occurring in the donor heart (brain death, hypothermic cardioplegic arrest, and storage) also may be directly related to post-transplant RV dysfunction. METHODS: A canine model of brain death and orthotopic cardiac transplantation was used. A dynamic pressure-volume analysis of RV mechanics was performed using micromanometers and sonomicrometric dimension transducers. Systolic function was assessed by measurement of preload recruitable stroke work (PRSW). Brain death was induced in 17 dogs by inflation of an intracranial balloon. Right ventricular function then was assessed serially to 6 hours (PRSW). Right ventricular adrenergic beta receptor density and function was sampled at control and after 6 hours of brain death. The effect of cardioplegic arrest and hypothermic storage was assessed in a second group of 17 dogs, using the same instrumentation and method of RV analysis. RESULTS: A significant decrease in right ventricular PRSW occurred after brain death, with the average decrease being 37% +/- 10.4% from the control. The RV myocardial beta adrenergic receptor density did not significantly change (253 +/- 34 fmol/ng control vs. 336 +/- 54 fmol/ng after brain death). The adenylyl cyclase activity of the RV beta receptor was assessed and was not altered by brain death. Orthotopic transplantation after cardioplegic arrest and hypothermic storage significantly decreased RV PRSW from 23.6 +/- 2.0 x 10(3) erg to 13.5 +/- 1.4 x 10(3) erg. CONCLUSIONS: These data indicate that the donor right ventricle is exposed to factors significantly detrimental to its mechanical performance well before facing an increased afterload in the recipient. Strategies to reduce RV dysfunction associated with brain death and hypothermic storage could positively impact post-transplant survival.

Animals↗

Left ventricular sensitivity to beta-adrenoceptor-stimulating drugs in patients with ischemic heart disease and varying degrees of ventricular dysfunction.

The left ventricular sensitivity to sympathomimetic amines was assessed in 47 patients with ischemic heart disease and varying degrees of left ventricular dysfunction. Patients were divided into 3 subgroups according to their basal ejection fraction (less than or equal to 35%, between 36 and 54%, and greater than or equal to 55%). After injection of a bolus of isoproterenol (2 micrograms), the isovolumic indexes of inotropic state increased significantly less in patients with an ejection fraction less than or equal to 35% than in other patients, but the heart rate changes and the acceleration in the rate of isovolumic pressure fall were comparable in all subgroups. The dose-response curves to cumulative doses of xamoterol, a beta 1-adrenoceptor partial agonist, confirmed that the magnitude of the inotropic response was reduced during beta 1-stimulation in patients with an ejection fraction less than or equal to 35% when compared with patients with a greater ejection fraction. However, the dose of xamoterol necessary to produce 50% of the maximal inotropic response was not increased in patients with an ejection fraction less than or equal to 35% (range, 1.5-5.2 micrograms/kg; median 2.5 vs. median values of 2.3 and 3.3 micrograms/kg in the other subgroups; NS), and there was no shift to the right of the dose-response curve. It is concluded that in moderate ischemic heart failure, the magnitude of the inotropic response to isoproterenol or xamoterol is reduced. The absence of shift to the right of the dose-response curve to a beta 1-partial agonist suggests that this alteration in myocardial performance is not primarily caused by a decrease in beta-adrenoceptor responsiveness.

Aged↗

Left ventricular function during strength testing and resistance exercise in patients with left ventricular dysfunction.

PURPOSE: Deterioration in left ventricular function is a more sensitive marker of myocardial ischemia during exercise than ST segment depression. The current study was designed to evaluate left ventricular function during one-repetition-maximum (1-RM) strength testing and resistance exercise in cardiac patients with moderate left ventricular dysfunction. METHODS: Using echocardiographic methods, left ventricular function was evaluated in 15 patients with left ventricular dysfunction (age, 65 +/- 6.5 years; ejection fraction, 42.1 +/- 5.8). Measurements were performed during 1-RM testing and resistance exercise (20%, 40%, and 60% of 1-RM using 10 to 15 repetitions) on the one-arm biceps curl (BIC) and bilateral knee extension exercises and compared with measurements of left ventricular function during the symptom-limited graded exercise test (SL-GXT). RESULTS: During the knee extension exercise, there was a slight but significant reduction (P< or =.05) in ejection fraction values at the end of 60% 1-RM, as compared with rest and previous workloads. Significant increases in systolic blood pressure and left ventricular end-systolic volume ratio values (P< or =.05) from rest to exercise were observed across test modes and for all workloads. The prevalence of new wall motion abnormalities during knee extension and BIC 1-RM strength testing was comparable with that observed during SL-GXT. The greatest increase in new wall motion abnormalities was seen during 60% 1-RM of knee extension exercise, as compared with prior workloads, BIC exercises, and SL-GXT. CONCLUSIONS: Despite an increase in occurrence of ischemic changes during the highest resistance exercise workloads and with larger muscle mass, the findings are small in magnitude and do not suggest reduced cardiac performance.

Aged↗

Natriuretic peptides and cyclic guanosine 3',5'-monophosphate in asymptomatic and symptomatic left ventricular dysfunction.

BACKGROUND: Screening for patients with asymptomatic left ventricular dysfunction is of considerable importance because they may benefit from early treatment with angiotensin converting enzyme inhibitors. It has been suggested that atrial natriuretic peptide (ANP), brain natriuretic peptide (BNP), and cyclic guanosine 3',5'-monophosphate (cGMP) might be useful markers for screening. OBJECTIVE: To compare directly the power of the three immunoreactive forms of ANP (CT-ANP, beta-ANP, NT-ANP) and BNP and cGMP to detect asymptomatic left ventricular dysfunction. METHODS AND RESULTS: Radionuclide ventriculography was used to study left ventricular ejection fraction in 37 patients with asymptomatic left ventricular dysfunction, 32 patients with mild to moderate congestive heart failure, and 38 controls. CT-ANP, NT-ANP, beta-ANP, BNP, and cGMP were measured at rest and 3 minutes after exercise. Plasma BNP was the most sensitive marker for patients with asymptomatic left ventricular dysfunction but it reached only a sensitivity of 58% and a specificity of 76% at rest and a sensitivity of 65% and a specificity of 84% after exercise. Combined measurements of all natriuretic peptides and cGMP did not improve the power to detect asymptomatic left ventricular function above that of a single BNP measurement. CONCLUSIONS: Although natriuretic peptides and cGMP measured at rest and three minutes after ergometry may be useful for monitoring left ventricular dysfunction they are unlikely to be suitable for more general routine screening for completely asymptomatic left ventricular dysfunction.

Adult↗

Disruption of the relationship between renin and atrial natriuretic peptide early in the course of ventricular dysfunction.

BACKGROUND: Plasma renin activity is normal in left ventricular dysfunction in the absence of diuretic therapy. In health there is a reciprocal relationship between renin and atrial natriuretic peptide (ANP) but a positive correlation in advanced heart failure. The relationship between renin and ANP in mild left ventricular dysfunction is unknown. METHODS AND RESULTS: Patients with left ventricular dysfunction (n = 35, 18 without diuretic therapy) were compared to 20 age-matched healthy subjects. Plasma concentrations of active renin (PARC), ANP and norepinephrine were measured after 20 min rest and 45 min after an infusion of normal saline (10 ml/kg body wt.). Basal plasma ANP was increased in patients with left ventricular dysfunction compared to healthy subjects, whether or not they were receiving diuretics. PARC was similar in healthy controls and patients untreated with diuretics but was increased in diuretic treated patients. After saline loading in healthy subjects PARC fell while ANP rose. Patients with left ventricular dysfunction had a smaller decline in PARC, that did not achieve statistical significance, but had a greater increase in plasma ANP compared to healthy subjects (P<0.05). The close reciprocal relationship between PARC and ANP observed in healthy subjects before and after saline loading (r = 0.8, P<0.001 and r = 0.6, P<0.01) was weakened in those not receiving diuretics (r = 0.4, P<0.05 and r = 0.24, ns) and lost in those receiving diuretics (r = 0.1 and r = 0.08). CONCLUSIONS: Patients with left ventricular dysfunction have a disturbance of the normal reciprocal relationship between PARC and ANP which antedates diuretic treatment. This should be taken into account when interpreting plasma neuroendocrine measurements in patients with ventricular dysfunction.

Atrial Natriuretic Factor↗

Circulatory support for right ventricular dysfunction.

New modes of circulatory support for right ventricular dysfunction have recently been described. The present study compared the effectiveness of pulmonary artery balloon counterpulsation with a right ventricular assist device for support of surgically induced right ventricular dysfunction. Right ventricular hypertrophy was created in 16 neonatal lambs by pulmonary artery banding. Right ventricular dysfunction was produced in all animals by performing a right ventriculotomy and maintaining the pulmonary artery band. Four unassisted animals developed severe acute right heart failure and died. Six sheep had pulmonary artery balloon counterpulsation with a Dacron graft anastomosed to the proximal pulmonary artery as a reservoir for a 40 ml intra-aortic balloon after the onset of heart failure. The remaining six sheep had a pneumatically activated ventricular assist device inserted between the proximal pulmonary artery and the right ventricular apex. Periods of circulatory support with the balloon pump and the assist device on and off were compared. Decreases in right atrial pressure were observed with both balloon counterpulsation and right ventricular assistance: 14 +/- 1 to 11 +/- 1 mm Hg, p less than 0.0001, versus 19 +/- 2 to 12 +/- 2 mm Hg, p less than 0.0002, respectively. Cardiac output increased with both balloon counterpulsation and ventricular assistance: 1.45 +/- 0.16 to 2.03 +/- 0.13 L/min, p less than 0.001, versus 0.72 +/- 0.15 to 2.24 +/- 0.23 L/min, p less than 0.0002, respectively. Aortic systolic pressure increased in both support groups: 78 +/- 7 to 99 +/- 6 mm Hg, p less than 0.0004, versus 53 +/- 9 to 85 +/- 9 mm Hg, p less than 0.0001, respectively. Ventricular assistance produced greater changes in the right atrial pressure (39% +/- 6% versus 17% +/- 3%, p less than 0.01), cardiac output (153% +/- 39% versus 54% +/- 11%, p less than 0.05), and aortic systolic pressure (85% +/- 13% versus 39% +/- 9%, p less than 0.01). The insertion of a right ventricular assist device caused a significant increment in right ventricular dysfunction. These data, obtained with the devices in place but not operating, showed significantly increased right atrial and right ventricular end-diastolic pressures and approximately 50% less cardiac output than with the pulmonary artery balloon counterpulsation system. The results demonstrate that both modes of circulatory support were effective in reversing surgically induced right ventricular failure.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

A functional role for endogenous atrial natriuretic peptide in a canine model of early left ventricular dysfunction.

Asymptomatic or early left ventricular dysfunction in humans is characterized by increases in circulating atrial natriuretic peptide (ANP) without activation of the renin-angiotensin-aldosterone system (RAAS). We previously reported a canine model of early left ventricular dysfunction (ELVD) produced by rapid ventricular pacing and characterized by an identical neurohumoral profile and maintenance of the natriuretic response to volume expansion (VE). To test the hypothesis that elevated endogenous ANP suppresses the RAAS and maintains sodium excretion in ELVD, we assessed the effects of antagonism of ANP on cardiorenal and neurohumoral function in ELVD. Chronic ANP suppression was produced by bilateral atrial appendectomies before the production of ELVD by rapid ventricular pacing (ELVD-APPX, n = 5). This group was compared with a separate group with ELVD and intact atrial appendages (ELVD-INTACT, n = 8). ELVD-APPX was characterized by lower circulating ANP (50 +/- 11 vs. 158 +/- 37 pg/ml, P < 0.05), activation of plasma renin activity (PRA) (9.4 +/- 2.4 vs. 0.6 +/- 0.4 ng/ml per h, P < 0.05) and aldosterone (36.4 +/- 12.5 vs. 2.5 +/- 0.0 ng/dl, P < 0.05) when compared to ELVD-INTACT. In comparison to the ELVD-INTACT group, sodium excretion was decreased before and during VE in the ELVD-APPX group. Acute ANP antagonism was produced by administration of the particulate guanylate cyclase coupled natriuretic peptide receptor antagonist, HS-142-1, to seven conscious dogs with ELVD and intact atrial appendages (ELVD-INTACT). HS-142-1 decreased plasma concentrations and renal generation of the ANP second messenger, cGMP, and was associated with activation of PRA and sodium retention with enhanced tubular sodium reabsorption. These data support a significant role for elevated endogenous ANP in the maintenance of sodium excretion and regulation of the RAAS in experimental ELVD.

Aldosterone↗

Experimental model of chronic global left ventricular dysfunction secondary to left coronary microembolization.

A model of chronic left ventricular dysfunction characterized by left ventricular dilation, elevated filling pressures and histologic changes has been lacking. In this study the use of coronary microsphere embolization-induced ischemia was explored as a method of producing chronic left ventricular dysfunction. Acute ischemic left ventricular dysfunction was induced in 13 mongrel dogs with 50 microns plastic microspheres until the peak positive first derivative of left ventricular pressure (dP/dt) decreased by 25% and the left ventricular end-diastolic pressure increased to greater than or equal to 12 mm Hg. After 8 weeks of observation, hemodynamic and echocardiographic variables were measured in each dog. Acute left ventricular dysfunction resulted in a dilated left ventricle with systolic dysfunction (area ejection fraction 24 +/- 6% vs. 57 +/- 9% initially, p less than 0.01) and elevated left ventricular filling pressures. Isovolumetric relaxation was prolonged and the peak rapid filling/atrial filling velocity and integral ratios were reduced. Eight weeks after embolization, there was an increased left ventricular size (end-diastolic area 15.1 +/- 2.1 cm2 at 8 weeks vs. 13.5 +/- 1.4 cm2 early after microsphere injection, p less than 0.05), unchanged end-systolic area, improved area ejection fraction and increased left ventricular mass. Left ventricular end-diastolic pressure increased and, despite continued abnormal relaxation, the peak rapid filling/atrial filling velocity and integral ratios increased to above baseline values, demonstrating a "restrictive" pattern. Gross and histologic examination revealed diffuse, patchy scarring associated with perivascular fibrosis. Thus, coronary microsphere embolization resulted in a model of chronic moderate left ventricular systolic dysfunction and abnormal diastolic function characterized by a "restrictive" filling pattern.

Animals↗

Determinants of the pulmonary artery pressure rise in left ventricular dysfunction.

Pulmonary artery hypertension in patients with left ventricular dysfunction is related to poor outcome but the role of cardiac functional abnormalities in the genesis of pulmonary hypertension remains unknown. The aim of this prospective study was to identify the determinants of pulmonary hypertension in 102 consecutive patients with primary left ventricular dysfunction (ejection fraction < 50%). Systolic pulmonary artery pressure was measured by continuous wave Doppler. Left ventricular systolic and diastolic function, severity of functional mitral regurgitation, cardiac output, and left atrial volume were assessed using Doppler echocardiography. In patients with left ventricular dysfunction, systolic pulmonary artery pressure was increased (51 +/- 14 mmHg, range 23 to 87 mmHg). Mitral deceleration time (r = -0.61; p = 0.0001) and mitral effective regurgitant orifice (r = 0.50; p = 0.0001) were the strongest parameters related to systolic pulmonary artery pressure. Multivariate analysis identified these two variables as the strongest predictors of systolic pulmonary artery pressure in association with the mitral E/A ratio (p = 0.006) and age (p = 0.005). In conclusion, pulmonary hypertension is common and variable in patients with left ventricular dysfunction. It is closely related to diastolic dysfunction and severity of functional mitral regurgitation but not independently to the degree of left ventricular systolic dysfunction. These findings underline the importance of assessing diastolic function and quantifying mitral regurgitation in patients with left ventricular dysfunction.

Blood Pressure↗

Aortic valve surgery in patients with left ventricular dysfunction.

Patient with advanced left ventricular dysfunction and heart failure symptoms, either secondary to severe aortic stenosis and a low transvalvular gradient, or chronic aortic insufficiency are sometimes referred for cardiac transplantation. Now, with improvements in both myocardial protection and better valve prostheses, aortic valve surgery for patients with even the most advanced ventricular dysfunction can be performed with low risk.

Adult↗

Association of calcium channel blocker use with increased rate of acute myocardial infarction in patients with left ventricular dysfunction.

The Studies of Left Ventricular Dysfunction (SOLVD) assessed the effect of enalapril in patients with systolic left ventricular dysfunction (LVD). We performed retrospective analyses of the association between calcium channel blocker (CCB) use and fatal and nonfatal myocardial infarction (MI) in these patients. MI occurred in 11.5% of 845 patients receiving CCBs versus 7.5% of 2551 patients not receiving CCBs in the enalapril group and in 14.4% of 874 patients receiving CCBs versus 9.3% of 2527 patients not receiving CCBs in the placebo group. By multivariate Cox regression analysis, adjusting for comorbidity, cause and severity of LVD, heart failure, and concomitant drug use, CCB use was an independent predictor of MI (relative risk [RR] 1.37, confidence interval [CI] 1.14 to 1.63). The increase in MI risk was greater among patients with a higher heart rate (RR 1.46, CI 1.14 to 1.86) and lower blood pressure (RR 1.45, CI 1.14 to 1.86). The adjusted risk ratio for all-cause mortality associated with CCB use was 1.14 (CI 1.00 to 1.28; p = 0.0454). In this analysis of patients with LVD, CCB use was associated with significantly increased risk of fatal or nonfatal MI.

Angiotensin-Converting Enzyme Inhibitors↗

Influence of acute right ventricular dysfunction on cardiac tamponade.

Echocardiographic and hemodynamic data were measured in nine closed chest dogs during graded cardiac tamponade (pericardial pressure 5, 10, 15 mm Hg) before and after production of diffuse acute ischemic right ventricular dysfunction. Right ventricular dysfunction was produced by intracoronary injection of nonradioactive microspheres (mean diameter +/- SD 54 +/- 4 microns) and caused a significant increase in right atrial pressure (7.6 +/- 1.4 vs. 1.6 +/- 1 mm Hg, p less than 0.001) and cross-sectional areas of both the right atrium (8.3 +/- 0.3 vs. 5.6 +/- 0.2 cm2, p less than 0.001) and right ventricle (8.8 +/- 0.4 vs. 5.7 +/- 0.4 cm2, p less than 0.001). Right atrial and ventricular collapse required a significantly larger pericardial effusion and pericardial pressure after right ventricular infarction than before. Mean aortic pressure had fallen 1.9 +/- 2% and 6.5 +/- 6.9% at the time of right atrial collapse (p = NS before vs. after right ventricular dysfunction) and 3 +/- 4.1% and 20.1 +/- 20.8% at the time of right ventricular collapse (p less than 0.03) before and after right ventricular dysfunction, respectively. In the presence of ischemic right ventricular dysfunction, echocardiographic signs of cardiac tamponade are less sensitive and occur later in the hemodynamic progression of cardiac tamponade. Pulsus paradoxus with cardiac tamponade was not prevented by coexisting ischemic right ventricular dysfunction.

Animals↗