Javascript must be enabled to continue!
Carvedilol Produces Sustained Long‐Term Benefits: Follow‐Up at 12 Years
View through CrossRef
The authors measured long‐term outcomes of patients who initiated carvedilol between 1990 and 1992 to test the hypothesis that carvedilol produces sustained benefits in heart failure patients. The study population consisted of 57 patients who completed a carvedilol placebo‐controlled phase II trial. Patients were given open‐label carvedilol and were titrated to the maximum dose. Patients were assessed by serial multigated acquisition, echocardiography, and symptom scores. Survival was assessed for all patients and censored as of January 1, 2004. Survival for ischemic vs nonischemic patients was compared using the log‐rank test and further compared using Cox regression, controlling for covariates. Etiology of heart failure was ischemic in 15 patients and nonischemic in 42 patients. Median follow‐up was 12.9 years. Resting left ventricular ejection fraction (LVEF) and heart failure symptom scores improved at 4 months of treatment and were sustained at 24 months. Left ventricular internal diameter in systole (LVIDS) and left ventricular internal diameter in diastole decreased significantly at 4 and 8 months, respectively, and LVIDS continued to improve at 24 months. Overall mortality was 43% in nonischemic patients and 73% in ischemic patients. In a multivariate analysis, ischemic etiology and baseline LVEF were significant predictors of mortality. Carvedilol produces sustained improvements in left ventricular remodeling and symptoms. Long‐term survival is good, particularly in nonischemic patients.
Title: Carvedilol Produces Sustained Long‐Term Benefits: Follow‐Up at 12 Years
Description:
The authors measured long‐term outcomes of patients who initiated carvedilol between 1990 and 1992 to test the hypothesis that carvedilol produces sustained benefits in heart failure patients.
The study population consisted of 57 patients who completed a carvedilol placebo‐controlled phase II trial.
Patients were given open‐label carvedilol and were titrated to the maximum dose.
Patients were assessed by serial multigated acquisition, echocardiography, and symptom scores.
Survival was assessed for all patients and censored as of January 1, 2004.
Survival for ischemic vs nonischemic patients was compared using the log‐rank test and further compared using Cox regression, controlling for covariates.
Etiology of heart failure was ischemic in 15 patients and nonischemic in 42 patients.
Median follow‐up was 12.
9 years.
Resting left ventricular ejection fraction (LVEF) and heart failure symptom scores improved at 4 months of treatment and were sustained at 24 months.
Left ventricular internal diameter in systole (LVIDS) and left ventricular internal diameter in diastole decreased significantly at 4 and 8 months, respectively, and LVIDS continued to improve at 24 months.
Overall mortality was 43% in nonischemic patients and 73% in ischemic patients.
In a multivariate analysis, ischemic etiology and baseline LVEF were significant predictors of mortality.
Carvedilol produces sustained improvements in left ventricular remodeling and symptoms.
Long‐term survival is good, particularly in nonischemic patients.
Related Results
A simple LC-MS/MS method for pharmacokinetic study of carvedilol and 4/-hydroxyphenyl carvedilol at a low dose
A simple LC-MS/MS method for pharmacokinetic study of carvedilol and 4/-hydroxyphenyl carvedilol at a low dose
Background and purpose:
The study was aimed at validating a simple, rapid, and low-cost LC-MS/MS method for carvedilol and 4
...
Comparing Beta-Blocking Effects of Bisoprolol, Carvedilol and Nebivolol
Comparing Beta-Blocking Effects of Bisoprolol, Carvedilol and Nebivolol
<i>Objective:</i> Bisoprolol, carvedilol and nebivolol have been shown to be effective in the treatment of heart failure. However, the beta-blocking effects of these dr...
Carvedilol ameliorates experimental atherosclerosis by inhibiting the NLRP3 inflammasome
Carvedilol ameliorates experimental atherosclerosis by inhibiting the NLRP3 inflammasome
Abstract
Objective: To investigate the protective effect of carvedilol against atherosclerosis by inhibiting the NLRP3 inflammasome.
Methods:In vitro experiments, human umb...
Differing Beta-Blocking Effects of Carvedilol and Metoprolol
Differing Beta-Blocking Effects of Carvedilol and Metoprolol
Abstract
Background
Metoprolol is a beta1-selective beta-adrenergic antagonist while carvedilol is a non-selective beta-b...
Preventive role of carvedilol in adriamycin-induced cardiomyopathy
Preventive role of carvedilol in adriamycin-induced cardiomyopathy
Background & objectives:
Adriamycin though considered as an effective anticancer drug, leads to irreversible cardiomyopathy (CMP) and congestive heart failure (CHF)...
The dose dependency of the alpha‐ and beta‐adrenoceptor antagonist activity of carvedilol in man.
The dose dependency of the alpha‐ and beta‐adrenoceptor antagonist activity of carvedilol in man.
1. The alpha‐ and beta‐adrenoceptor antagonist activity of carvedilol, a beta‐adrenoceptor antagonist with vasodilating properties, and labetalol were investigated in 10 healthy ma...
Carvedilol versus propranolol in the prevention of variceal rebleeding in hepatosplenic schistosomiasis: Efficacy and safety
Carvedilol versus propranolol in the prevention of variceal rebleeding in hepatosplenic schistosomiasis: Efficacy and safety
AbstractBackground and AimBeta blockers combined with endoscopic variceal band ligation (EVL) is the most effective means for the prevention of variceal rebleeding. No data are ava...
Effect of Lercanidipine on the Pharmacokinetics‐Pharmacodynamics of Carvedilol Enantiomers in Patients With Chronic Kidney Disease
Effect of Lercanidipine on the Pharmacokinetics‐Pharmacodynamics of Carvedilol Enantiomers in Patients With Chronic Kidney Disease
AbstractThis study evaluates the carvedilol‐lercanidipine drug interaction, and the influence of chronic kidney disease (CKD) on both drugs. Patients with high blood pressure (8 wi...

