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Published on: October 12, 2017
Lipoprotein(a) and Its Role in Peripheral Arterial Disease: A Narrative Review
Bibombe Patrice Mwipatayi1,2,3, James Evan Dodd3, Amirul Hakim Ahmad Bazlee3
1School of Surgery, University of Western Australia, Perth, WA, Australia.
Insights
Elevated Lipoprotein (a) (Lp[a]) levels are linked to increased peripheral arterial disease (PAD) risk and restenosis after revascularization. Understanding Lp(a) in PAD pathogenesis is crucial for targeted therapies.
Area of Science:
- Cardiovascular Science
- Lipid Metabolism
- Vascular Biology
Background:
- Lipoprotein (a) [Lp(a)] is an independent risk factor for cardiovascular disease (CVD).
- Lp(a) shares structural similarities with low-density lipoprotein but has a unique apolipoprotein(a) component.
- While its physiological roles are debated, Lp(a) has proatherogenic and prothrombotic properties.
Purpose of the Study:
- To review the role of Lp(a) in peripheral arterial disease (PAD) pathogenesis.
- To examine the association between elevated Lp(a) and PAD incidence and outcomes.
- To identify knowledge gaps in PAD-specific Lp(a) research.
Main Methods:
- Narrative review of current evidence.
- Synthesis of epidemiological data.
- Examination of pathophysiological mechanisms.
Main Results:
- Elevated Lp(a) levels are associated with increased PAD incidence.
- Higher Lp(a) levels correlate with a greater risk of restenosis following revascularization procedures.
- Lp(a) contributes to PAD through proatherogenic and prothrombotic activities.
Conclusions:
- Understanding Lp(a)'s role in PAD pathogenesis is vital.
- Targeted therapeutic strategies for elevated Lp(a) may improve PAD management.
- Further research is needed to address knowledge gaps in PAD-specific outcomes.
Abstract:
Lipoprotein (a) (Lp[a]) is an independent risk factor for cardiovascular disease (CVD). Structurally like low-density lipoprotein, Lp(a) is distinguished by the covalent attachment of apolipoprotein(a) to apolipoprotein B-100. Although its physiological role remains incompletely understood, evidence suggests that Lp(a) may facilitate wound healing and inhibit cancer growth and metastasis. In contrast, Lp(a) exhibits proatherogenic properties; it transports proinflammatory oxidized phospholipids, induces the secretion of proinflammatory cytokines, increases endothelial permeability, promotes smooth muscle cell migration and proliferation, and upregulates adhesion molecules that facilitate monocyte recruitment and retention. In addition, Lp(a) exerts prothrombotic activity by enhancing platelet aggregation, suppressing plasminogen activation, and inhibiting fibrinolysis. Although its clinical relevance in CVD is well established, the role of Lp(a) in peripheral arterial disease (PAD) remains unclear. This narrative review aimed to synthesize and critically examine the current evidence on the biological role of Lp(a) in PAD pathogenesis and identify knowledge gaps in PAD-specific outcomes. This review summarizes the epidemiology, pathophysiology, and management of elevated Lp(a) levels in patients with PAD and examines their association with post-treatment clinical outcomes. Elevated Lp(a) levels are associated with an increased PAD incidence and a higher risk of restenosis post-revascularization. Understanding the mechanisms by which Lp(a) contributes to PAD pathogenesis is essential for developing effective targeted therapeutic approaches and improving the identification and management of high-risk patients.
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