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Genetic Influence on LDL-Cholesterol Levels: Role of Polygenic Risk Scores and Lp(a) Beyond Monogenic Hypercholesterolemia.

Genetic Influence on LDL-Cholesterol Levels: Role of Polygenic Risk Scores and Lp(a) Beyond Monogenic Hypercholesterolemia.

期刊: Genes 日期: 2026-06-21 PMID: 42353880 DOI: 10.3390/genes17060721 浏览: 38
作者: Ferrandino M, Cerrato Y, Iannuzzo G, Calcaterra IL, Di Minno MND, Fortunato G, Di Taranto MD
M, F., Y, C., G, I., IL, C., MND, D.M., G, F., & MD, D.T. (2026). Genetic Influence on LDL-Cholesterol Levels: Role of Polygenic Risk Scores and Lp(a) Beyond Monogenic Hypercholesterolemia.. Genes. https://doi.org/10.3390/genes17060721
M F, Y C, G I, IL C, MND DM, G F, et al. Genetic Influence on LDL-Cholesterol Levels: Role of Polygenic Risk Scores and Lp(a) Beyond Monogenic Hypercholesterolemia.. Genes. 2026; doi: 10.3390/genes17060721
M F, Y C, G I, et al. Genetic Influence on LDL-Cholesterol Levels: Role of Polygenic Risk Scores and Lp(a) Beyond Monogenic Hypercholesterolemia.[J]. Genes. 2026. DOI: 10.3390/genes17060721.
@article{m2026,
  author = {Ferrandino M and Cerrato Y and Iannuzzo G and Calcaterra IL and Di Minno MND and Fortunato G and Di Taranto MD},
  title = {Genetic Influence on LDL-Cholesterol Levels: Role of Polygenic Risk Scores and Lp(a) Beyond Monogenic Hypercholesterolemia.},
  journal = {Genes},
  year = {2026},
  doi = {10.3390/genes17060721},
  note = {PMID: 42353880},
}
TY  - JOUR
AU  - Ferrandino M
AU  - Cerrato Y
AU  - Iannuzzo G
AU  - Calcaterra IL
AU  - Di Minno MND
AU  - Fortunato G
AU  - Di Taranto MD
TI  - Genetic Influence on LDL-Cholesterol Levels: Role of Polygenic Risk Scores and Lp(a) Beyond Monogenic Hypercholesterolemia.
T2  - Genes
PY  - 2026
DO  - 10.3390/genes17060721
AN  - PMID:42353880
ER  - 

摘要

High levels of low-density lipoprotein cholesterol (LDL-c) have been recognized as the main causal factor of atherosclerotic cardiovascular disease (ASCVD) and are influenced by both genetic and environmental factors. Among genetic determinants, Familial Hypercholesterolemia (FH) is the most common monogenic disorder, caused by rare high-impact variants in genes involved in LDL uptake. Other monogenic causes of hypercholesterolemia include sitosterolemia, cerebrotendinous xanthomatosis and lysosomal acid lipase deficiency (LALD). However, monogenic disorders only account for a small proportion of inherited hypercholesterolemia. In many individuals, increased LDL-c levels are caused by the contemporary presence of different single-nucleotide polymorphisms (SNPs) with a moderate/low impact. These SNPs could be summarized through polygenic risk scores (PRS) that attribute relative weight to each of these. Another genetic determinant of hypercholesterolemic phenotypes is high levels of lipoprotein(a)-Lp(a). Lp(a) is an LDL particle modified by the binding of apolipoprotein(a)-apo(a)-which represents an independent risk factor for ASCVD. Lp(a) levels are mainly genetically determined by variation in the number of kringle IV type 2 (K-IV2) repeats, as well as by several SNPs, and remain stable throughout life. The aim of this narrative review is to report an updated overview of the genetic mechanisms underlying hypercholesterolemia, including monogenic disorders, PRS and Lp(a), focusing on their potential repercussion in clinical practice by the integration into cardiovascular risk stratification beyond traditional clinical assessment. This integration could lead to a more comprehensive and individualized approach to cardiovascular prevention, with emerging perspectives including the possible use of artificial intelligence (AI).

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