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Use of carvedilol in hypertension: an update
Gastone Leonetti1, Colin G Egan
1Istituto Auxologico Italiano, Ospedale San Luca, Milan, Italy.
Insights
Third-generation beta-blockers like carvedilol offer cardiovascular benefits beyond blood pressure reduction. Unlike older agents, carvedilol shows improved metabolic profiles and can be a cardioprotective option for hypertension management.
Area of Science:
- Pharmacology
- Cardiology
- Internal Medicine
Background:
- Older beta-blockers (atenolol, metoprolol) show controversial cardiovascular benefits in hypertension.
- Recent meta-analyses question the efficacy of atenolol and propranolol compared to placebo or other drug classes.
- Heterogeneity exists among beta-blockers, particularly between older and newer generations.
Purpose of the Study:
- To provide an overview of clinical studies on carvedilol in hypertension.
- To focus on carvedilol's benefits beyond blood pressure reduction.
- To evaluate carvedilol as a cardioprotective agent.
Main Methods:
- Review of clinical studies on carvedilol monotherapy or combination therapy.
- Analysis of pharmacokinetic, pharmacological, and physicochemical properties of beta-blockers.
- Comparison of carvedilol with conventional beta-blockers and other antihypertensive agents.
Main Results:
- Carvedilol, a third-generation beta-blocker, reduces blood pressure by decreasing vascular resistance.
- It maintains cardiac output and has less impact on heart rate compared to traditional beta-blockers.
- Carvedilol demonstrates favorable effects on glycemic control, insulin sensitivity, and lipid metabolism.
Conclusions:
- Carvedilol offers advantages over older beta-blockers, including improved hemodynamic and metabolic profiles.
- Its cardioprotective properties and favorable metabolic effects make it suitable for patients with metabolic syndrome or diabetes.
- Carvedilol represents a valuable therapeutic option for hypertension, providing benefits beyond mere blood pressure lowering.
Abstract:
β-blockers are effective antihypertensive agents and, together with diuretics, have been the cornerstone of pioneering studies showing their benefits on cardiovascular morbidity and mortality as a consequence of blood pressure reduction in patients with hypertension. However, evidence from recent meta-analyses have demonstrated no benefit afforded by atenolol compared with placebo in risk of mortality, myocardial infarction, or stroke, and a higher risk of mortality and stroke with atenolol/propranolol compared with other antihypertensive drug classes. Thus, the effect of these agents on cardiovascular morbidity and mortality in hypertensive patients, especially their use in uncomplicated hypertension, has remained largely controversial. However, it is recognized that the clinical studies used in these meta-analyses were mainly based on the older second-generation β-blockers, such as atenolol and metoprolol. Actually, considerable heterogeneity in, eg, pharmacokinetic, pharmacological, and physicochemical properties exists across the different classes of β-blockers, particularly between the second-generation and newer third-generation agents. Carvedilol is a vasodilating noncardioselective third-generation β-blocker, without the negative hemodynamic and metabolic effects of traditional β-blockers, which can be used as a cardioprotective agent. Compared with conventional β-blockers, carvedilol maintains cardiac output, has a reduced prolonged effect on heart rate, and reduces blood pressure by decreasing vascular resistance. Studies have also shown that carvedilol exhibits favorable effects on metabolic parameters, eg, glycemic control, insulin sensitivity, and lipid metabolism, suggesting that it could be considered in the treatment of patients with metabolic syndrome or diabetes. The present report provides an overview of the main clinical studies concerning carvedilol administered as either monotherapy or in combination with another antihypertensive or more frequently a diuretic agent, with particular focus on the additional benefits beyond blood pressure reduction.
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