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Published on: October 12, 2017
Lipoprotein(a) and its Significance in Cardiovascular Disease: A Review
Freddy Duarte Lau1, Robert P Giugliano2
1Department of Medicine, Yale New Haven Health, Bridgeport, Connecticut.
Insights
High Lipoprotein(a) (Lp[a]) levels increase cardiovascular disease risk. Novel nucleic acid therapies show promise for lowering Lp[a] and reducing this risk.
Area of Science:
- Cardiovascular Medicine
- Genetics
- Pharmacology
Background:
- Lipoprotein(a) (Lp[a]) is a particle linked to cardiovascular disease, promoting inflammation, atherosclerosis, calcification, and thrombosis.
- Elevated Lp(a) levels, affecting 20-25% of the global population, are associated with increased cardiovascular risk and residual risk despite optimized traditional factors.
- A causal link between high Lp(a) and atherosclerotic cardiovascular disease/aortic valve stenosis is supported by extensive evidence.
Purpose of the Study:
- To explore the role of Lipoprotein(a) (Lp[a]) as a cardiovascular disease marker.
- To review current challenges and emerging therapies for lowering Lp(a) levels.
- To highlight the potential of novel nucleic acid-based therapies in managing cardiovascular risk associated with Lp(a).
Main Methods:
- Review of pathophysiological, observational, and genetic studies on Lp(a).
- Analysis of existing and emerging therapeutic strategies for Lp(a) reduction.
- Evaluation of the effectiveness and safety profiles of various Lp(a)-lowering treatments.
Main Results:
- High Lp(a) levels are causally associated with atherosclerotic cardiovascular disease and calcific aortic valve stenosis.
- Traditional therapies (lifestyle, statins, ezetimibe) are ineffective for Lp(a) reduction.
- Emerging nucleic acid-based therapies (e.g., pelacarsen, olpasiran) demonstrate potent Lp(a)-lowering effects.
- Some emerging therapies show potential safety, but cardiovascular outcome data from Phase 3 trials are pending.
Conclusions:
- Elevated Lp(a) is a significant, potentially causal risk factor for atherosclerotic cardiovascular disease and aortic valve stenosis.
- Existing therapies have limitations in effectively lowering Lp(a).
- Nucleic acid-based therapies represent a promising new avenue for Lp(a) reduction and cardiovascular risk management, pending further clinical validation.
Importance:
Lipoprotein(a) (Lp[a]) is a low-density lipoprotein (LDL) cholesterol-like particle bound to apolipoprotein(a). This novel marker of cardiovascular disease acts through induction of vascular inflammation, atherogenesis, calcification, and thrombosis. While an absolute risk threshold remains to be universally accepted, an estimated 20% to 25% of the global population have Lp(a) levels of 50 mg/dL or higher, a level noted by the European Atherosclerosis Society to confer increased cardiovascular risk.
Observations:
Compelling evidence from pathophysiological, observational, and genetic studies suggest a potentially causal association between high Lp(a) levels, atherosclerotic cardiovascular disease, and calcific aortic valve stenosis. Additional evidence has demonstrated that elevated Lp(a) levels are associated with a residual cardiovascular risk despite traditional risk factor optimization, including LDL cholesterol reduction. These findings have led to the formulation of the Lp(a) hypothesis, namely that Lp(a) lowering leads to cardiovascular risk reduction, intensifying the search for Lp(a)-reducing therapies. The ineffectiveness of lifestyle modification, statins, and ezetimibe to lower Lp(a); the modest Lp(a) reduction with proprotein convertase subtilisin/kexin type 9 inhibitors; the adverse effect profile and unclear cardiovascular benefit of pharmacotherapies such as niacin and mipomersen; and the impracticality of regular lipoprotein apheresis represent major challenges to currently available therapies. Nevertheless, emerging nucleic acid-based therapies, such as the antisense oligonucleotide pelacarsen and the small interfering RNA olpasiran, are generating interest because of their potent Lp(a)-lowering effects. Assessment of new-onset diabetes in patients achieving very low Lp(a) levels will be important in future trials.
Conclusions And Relevance:
Epidemiologic and genetic studies suggest a potentially causal association between elevated Lp(a) levels, atherosclerotic cardiovascular disease, and aortic valve stenosis. Emerging nucleic acid-based therapies have potent Lp(a)-lowering effects and appear safe; phase 3 trials will establish whether they improve cardiovascular outcomes.
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