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Published on: November 10, 2017
The effects of beta-adrenergic blocking agents on blood lipid levels
1Department of Medicine, Mt. Sinai School of Medicine, New York, New York.
Insights
Beta blockers can negatively impact blood lipids, increasing coronary heart disease risk. Some agents, like bevantolol, show potential for favorable lipid profiles and improved cardiovascular outcomes.
Area of Science:
- Cardiovascular Pharmacology
- Lipid Metabolism
Background:
- Beta-adrenergic blocking agents are crucial for treating angina, hypertension, and reducing recurrent ischemic cardiac events.
- Many beta blockers adversely affect blood lipids, decreasing high-density lipoprotein (HDL) cholesterol and increasing triglycerides, which negatively impacts the cholesterol ratio and coronary heart disease (CHD) risk.
Purpose of the Study:
- To review the impact of beta-adrenergic blocking agents on blood lipids.
- To explore how these lipid alterations may influence the effectiveness of antihypertensive therapy on coronary heart disease incidence.
Main Methods:
- Review of existing studies on beta blockers and their effects on lipid profiles.
- Analysis of pharmacological properties of specific beta blockers, including those with peripheral alpha blockade or intrinsic sympathomimetic activity (ISA).
Main Results:
- Many beta blockers reduce HDL cholesterol and increase triglycerides, worsening the cholesterol ratio and potentially counteracting benefits in CHD risk reduction.
- Agents with ISA or alpha blockade may mitigate some adverse lipid effects.
- Bevantolol, an investigational beta blocker, demonstrated LDL cholesterol reduction without adverse HDL effects, favorably influencing the lipoprotein profile.
Conclusions:
- The adverse effects of some beta blockers on blood lipids may explain why antihypertensive therapy has not always reduced CHD incidence as effectively as cerebrovascular disease.
- Pharmacological modifications in beta blockers, such as those in bevantolol, offer potential for improved cardiovascular risk management by favorably altering lipid profiles.
Abstract:
This review examines the effects of beta-adrenergic blocking agents on blood lipids. These agents have been effective in the treatment of angina and hypertension and in the reduction of recurrence of ischemic cardiac disease, such as myocardial infarction. Many beta blockers, however, have an adverse effect on blood lipids, especially by reducing high-density lipoprotein (HDL) cholesterol and increasing triglycerides. One result is an unfavorable influence on the cholesterol ratio (expressed either as low-density lipoprotein [LDL]/HDL or total cholesterol/HDL). These cholesterol parameters have been shown to have a strong influence on coronary heart disease (CHD) risk. Studies have shown that antihypertensive therapy has reduced the incidence of cerebrovascular disease but, in many instances, has not reduced the incidence of CHD. A hypothesis for this lesser effect on coronary disease is that antihypertensive agents may be adversely affecting blood lipids. Thus, while one major risk factor for CHD is reduced, another may be somewhat enhanced. Pharmacologic properties of some beta blockers such as peripheral alpha blockade (e.g., with labetalol) or intrinsic sympathomimetic activity (ISA) (e.g., with pindolol) may counteract some of these negative lipid effects. An investigational beta blocker, bevantolol, which will be marketed shortly in the United States, has been effective in antihypertensive therapy. Bevantolol has been shown to lower LDL cholesterol and not adversely affect HDL cholesterol; in this way, bevantolol favorably influences the serum lipoprotein profile. Whether this effect will have clinical significance remains to be seen.
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