# Lipoprotein(a) as a Risk Factor for Cardiovascular Diseases: Pathophysiology and Treatment Perspectives

**Authors:** Pierandrea Vinci, Filippo Giorgio Di Girolamo, Emiliano Panizon, Letizia Maria Tosoni, Carla Cerrato, Federica Pellicori, Nicola Altamura, Alessia Pirulli, Michele Zaccari, Chiara Biasinutto, Chiara Roni, Nicola Fiotti, Paolo Schincariol, Alessandro Mangogna, Gianni Biolo

PMC · DOI: 10.3390/ijerph20186721 · International Journal of Environmental Research and Public Health · 2023-09-06

## TL;DR

This paper reviews how high levels of lipoprotein(a) increase cardiovascular disease risk and explores current and emerging treatments to lower it.

## Contribution

The paper provides an updated review of Lp(a)'s role in cardiovascular disease and evaluates emerging therapies for reducing Lp(a) levels.

## Key findings

- High Lp(a) levels increase cardiovascular risk even with normal LDL cholesterol.
- Lifestyle changes and standard treatments are ineffective at reducing Lp(a).
- Emerging therapies like antisense oligonucleotides show promise for lowering Lp(a).

## Abstract

Cardiovascular disease (CVD) is still a leading cause of morbidity and mortality, despite all the progress achieved as regards to both prevention and treatment. Having high levels of lipoprotein(a) [Lp(a)] is a risk factor for cardiovascular disease that operates independently. It can increase the risk of developing cardiovascular disease even when LDL cholesterol (LDL-C) levels are within the recommended range, which is referred to as residual cardiovascular risk. Lp(a) is an LDL-like particle present in human plasma, in which a large plasminogen-like glycoprotein, apolipoprotein(a) [Apo(a)], is covalently bound to Apo B100 via one disulfide bridge. Apo(a) contains one plasminogen-like kringle V structure, a variable number of plasminogen-like kringle IV structures (types 1–10), and one inactive protease region. There is a large inter-individual variation of plasma concentrations of Lp(a), mainly ascribable to genetic variants in the Lp(a) gene: in the general po-pulation, Lp(a) levels can range from <1 mg/dL to >1000 mg/dL. Concentrations also vary between different ethnicities. Lp(a) has been established as one of the risk factors that play an important role in the development of atherosclerotic plaque. Indeed, high concentrations of Lp(a) have been related to a greater risk of ischemic CVD, aortic valve stenosis, and heart failure. The threshold value has been set at 50 mg/dL, but the risk may increase already at levels above 30 mg/dL. Although there is a well-established and strong link between high Lp(a) levels and coronary as well as cerebrovascular disease, the evidence regarding incident peripheral arterial disease and carotid atherosclerosis is not as conclusive. Because lifestyle changes and standard lipid-lowering treatments, such as statins, niacin, and cholesteryl ester transfer protein inhibitors, are not highly effective in reducing Lp(a) levels, there is increased interest in developing new drugs that can address this issue. PCSK9 inhibitors seem to be capable of reducing Lp(a) levels by 25–30%. Mipomersen decreases Lp(a) levels by 25–40%, but its use is burdened with important side effects. At the current time, the most effective and tolerated treatment for patients with a high Lp(a) plasma level is apheresis, while antisense oligonucleotides, small interfering RNAs, and microRNAs, which reduce Lp(a) levels by targeting RNA molecules and regulating gene expression as well as protein production levels, are the most widely explored and promising perspectives. The aim of this review is to provide an update on the current state of the art with regard to Lp(a) pathophysiological mechanisms, focusing on the most effective strategies for lowering Lp(a), including new emerging alternative therapies. The purpose of this manuscript is to improve the management of hyperlipoproteinemia(a) in order to achieve better control of the residual cardiovascular risk, which remains unacceptably high.

## Linked entities

- **Proteins:** APOA1 (apolipoprotein A1), APOB (apolipoprotein B)
- **Diseases:** cardiovascular disease (MONDO:0004995), aortic valve stenosis (MONDO:0042981), heart failure (MONDO:0005252)

## Full-text entities

- **Genes:** ENPP2 (ectonucleotide pyrophosphatase/phosphodiesterase 2) [NCBI Gene 5168] {aka ATX, ATX-X, AUTOTAXIN, LysoPLD, NPP2, PD-IALPHA}, CETP (cholesteryl ester transfer protein) [NCBI Gene 1071] {aka BPIFF, HDLCQ10}, APOB (apolipoprotein B) [NCBI Gene 338] {aka FCHL2, FLDB, LDLCQ4, apoB-100, apoB-48}, GH1 (growth hormone 1) [NCBI Gene 2688] {aka GH, GH-N, GHB5, GHN, IGHD1A, IGHD1B}, LRP2 (LDL receptor related protein 2) [NCBI Gene 4036] {aka DBS, GP330, LRP-2}, PLG (plasminogen) [NCBI Gene 5340] {aka HAE4}, CXCL8 (C-X-C motif chemokine ligand 8) [NCBI Gene 3576] {aka GCP-1, GCP1, IL8, LECT, LUCT, LYNAP}, SERPINA1 (serpin family A member 1) [NCBI Gene 5265] {aka A1A, A1AT, AAT, PI, PI1, PRO2275}, NFKB1 (nuclear factor kappa B subunit 1) [NCBI Gene 4790] {aka CVID12, EBP-1, KBF1, NF-kB, NF-kB1, NF-kappa-B1}, IL6 (interleukin 6) [NCBI Gene 3569] {aka BSF-2, BSF2, CDF, HGF, HSF, IFN-beta-2}, CRP (C-reactive protein) [NCBI Gene 1401] {aka PTX1}, PLAT (plasminogen activator, tissue type) [NCBI Gene 5327] {aka T-PA, TPA}, FN1 (fibronectin 1) [NCBI Gene 2335] {aka CIG, ED-B, FINC, FN, FNZ, GFND}, PLA2G7 (phospholipase A2 group VII) [NCBI Gene 7941] {aka LDL-PLA2, LP-PLA2, PAFAD, PAFAH}, ASGR1 (asialoglycoprotein receptor 1) [NCBI Gene 432] {aka ASGPR, ASGPR1, CLEC4H1, HL-1}, LDLR (low density lipoprotein receptor) [NCBI Gene 3949] {aka LDLCQ2}, LPA (lipoprotein(a)) [NCBI Gene 4018] {aka AK38, APOA, LP}, PCSK9 (proprotein convertase subtilisin/kexin type 9) [NCBI Gene 255738] {aka FH3, FHCL3, HCHOLA3, LDLCQ1, NARC-1, NARC1}
- **Diseases:** sepsis (MESH:D018805), femoral stenosis (MESH:D003251), calcium (MESH:D002128), Aortic Valve Stenosis (MESH:D001024), Carotid Atherosclerosis (MESH:D002340), aortic valve disease (MESH:D000082862), stable angina (MESH:D060050), cerebrovascular disease (MESH:D002561), ischemic stroke (MESH:D002544), vascular damage (MESH:D057772), carotid (MESH:D016893), plaques (MESH:D003773), sudden cardiac death (MESH:D016757), hypercholesterolemia (MESH:D006937), claudication (MESH:D007383), thromboembolic (MESH:D013923), hemorrhagic stroke (MESH:D000083302), diabetes (MESH:D003920), ESRD (MESH:D007676), lacunar stroke (MESH:D059409), inflammation (MESH:D007249), ischemic (MESH:D002545), calcification (MESH:D002114), atherogenic lipoprotein (MESH:D050197), type 2 diabetes (MESH:D003924), CAVD (OMIM:109730), HF (MESH:D006333), hot flashes (MESH:D019584), clots (MESH:D013927), gallbladder fistula (MESH:D005705), arterial stiffness (MESH:C566112), Lp(a) hyperlipoproteinemia (MESH:C563617), pre-eclampsia (MESH:D011225), unstable angina (MESH:D000789), left-atrium thrombosis (MESH:D003310), hyperlipidemia (MESH:D006949), Stroke (MESH:D020521), heart disease (MESH:D006331), kidney disease (MESH:D007674), MI (MESH:D009203), atherosclerotic plaque (MESH:D058226), coagulation (MESH:D001778), injury (MESH:D014947), FH (MESH:D006938), cardioembolic stroke (MESH:D000083262), hypertension (MESH:D006973), AF (MESH:D001281), death (MESH:D003643), Cardiovascular Diseases (MESH:D002318), CAD (MESH:D003324), Hyperlipoproteinemia (MESH:D006951), Valve calcification (MESH:C562942), CHD (MESH:D003327), obesity (MESH:D009765), restenosis (MESH:D023903), hyperhomocysteinemia (MESH:D020138), Vascular Diseases (MESH:D014652), plaque rupture (MESH:D012421), chronic kidney disease (MESH:D051436), abdominal pain (MESH:D015746)
- **Chemicals:** alirocumab (MESH:C571059), torcetrapib (MESH:C483909), carbohydrate (MESH:D002241), ASO (MESH:D016376), TRG (MESH:D014280), Pelacarsen (MESH:C000657224), cholesterol esters (MESH:D002788), Niacin (MESH:D009525), glycosaminoglycans (MESH:D006025), anacetrapib (MESH:C530884), oligonucleotide (MESH:D009841), evolocumab (MESH:C577155), lysophosphatidic acid (MESH:C032881), lomitapide (MESH:C473731), OxPLs (MESH:C017607), Cholesterol (MESH:D002784), dalcetrapib (MESH:C411602), testosterone (MESH:D013739), atorvastatin (MESH:D000069059), IONIS-APO(a)Rx (-), Mipomersen (MESH:C524142), phospholipids (MESH:D010743), laropiprant (MESH:C518174), pitavastatin (MESH:C108475), pravastatin (MESH:D017035), disulfide (MESH:D004220), Rosuvastatin (MESH:D000068718), LPC (MESH:D008244), lipid (MESH:D008055), glycemia (MESH:D001786), ethanol (MESH:D000431), simvastatin/ezetimibe (MESH:D000069499), calcium (MESH:D002118), ezetimibe (MESH:D000069438), evacetrapib (MESH:C568301), fibrates (MESH:D058607)
- **Species:** Homo sapiens (human, species) [taxon 9606], Nicotiana tabacum (American tobacco, species) [taxon 4097], Oryctolagus cuniculus (domestic rabbit, species) [taxon 9986]
- **Mutations:** rs10455872, I through V, rs3798220

## Full text

_Full body text omitted from this summary view._ Fetch the complete paper as Markdown: https://tomesphere.com/paper/PMC10531345/full.md

## Figures

2 figures with captions in the complete paper: https://tomesphere.com/paper/PMC10531345/full.md

## References

198 references — full list in the complete paper: https://tomesphere.com/paper/PMC10531345/full.md

---
Source: https://tomesphere.com/paper/PMC10531345