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Published on: September 15, 2018
Decoding Primary Hyperlipoproteinemias: A Focus on the Pathogenesis and Diagnosis of Familial Hypercholesterolemia
Iris Bararu-Bojan1, Maria Cristina Vladeanu1, Dan Iliescu-Halitchi2
1Department of Morpho Functional Sciences, Faculty of Medicine, Grigore T. Popa University of Medicine and Pharmacy, 16 Universitatii Street, 700115 Iasi, Romania.
Insights
Primary hyperlipoproteinemias are inherited lipid disorders increasing cardiovascular disease risk. Modern understanding integrates genetics and metabolism for personalized treatments, moving beyond traditional classifications.
Area of Science:
- Lipid Metabolism and Genetics
- Cardiovascular Disease Pathogenesis
Background:
- Primary hyperlipoproteinemias are inherited disorders of lipid metabolism.
- Characterized by abnormal plasma lipoproteins, they increase risk for atherosclerotic cardiovascular disease (ASCVD) and pancreatitis.
- Traditional Fredrickson classification is evolving with molecular genetics and metabolic regulation insights.
Purpose of the Study:
- To synthesize contemporary insights into primary hyperlipoproteinemias.
- To emphasize the shift from traditional classification to precision medicine.
- To highlight advances in understanding pathogenesis, diagnosis, and therapy.
Main Methods:
- Review of molecular genetics, intracellular lipid trafficking, and inflammatory signaling.
- Integration of data on monogenic and polygenic determinants.
- Analysis of emerging roles for novel regulators and pathways.
Main Results:
- Identified genetic determinants (LDLR, APOB, PCSK9, APOE, LPL) and polygenic contributions.
- Highlighted roles of ER stress, oxidative imbalance, and metabolic crosstalk.
- Recognized novel regulators (ANGPTLs, microRNAs) influencing heterogeneity.
Conclusions:
- Primary hyperlipoproteinemias require a multidimensional understanding beyond phenotypes.
- Advances in diagnostics (genetic testing, PRS) improve risk stratification.
- Innovative therapies (PCSK9 inhibitors, ANGPTL3 agents) are transforming patient management.
Abstract:
Primary hyperlipoproteinemias represent a heterogeneous group of inherited lipid metabolism disorders characterized by persistent abnormalities in plasma lipoproteins, a markedly increased risk of premature atherosclerotic cardiovascular disease (ASCVD) and, in selected phenotypes, acute pancreatitis. Traditionally classified according to the Fredrickson phenotypic system, these disorders are now increasingly understood through a multidimensional framework integrating molecular genetics, intracellular lipid trafficking, inflammatory signaling, and systemic metabolic regulation. Recent advances have identified both monogenic and polygenic determinants underlying disease expression, including pathogenic variants affecting LDLR, APOB, PCSK9, APOE, and lipoprotein lipase pathways, as well as the cumulative contribution of multiple common lipid-associated variants. Furthermore, emerging evidence highlights the role of endoplasmic reticulum stress, oxidative imbalance, adipose-hepatic crosstalk, intestinal lipid absorption, and inflammatory mediators in modulating lipoprotein metabolism and cardiovascular risk. Novel regulators such as angiopoietin-like proteins (ANGPTLs), microRNAs, and pathways involved in cholesterol efflux and remnant lipoprotein clearance have further refined our understanding of disease heterogeneity and therapeutic responsiveness. Familial hypercholesterolemia and familial combined hyperlipidemia exemplify the complex interplay between genetic susceptibility, metabolic dysfunction, and environmental influences that shape phenotype severity and long-term cardiovascular outcomes. Advances in diagnostic strategies, including genetic testing, polygenic risk scores, apolipoprotein profiling, and vascular imaging, have significantly improved risk stratification and personalized management. Simultaneously, innovative therapies-including PCSK9 inhibitors, ANGPTL3-targeted agents, antisense oligonucleotides, and RNA-silencing technologies-are reshaping treatment paradigms and expanding options for high-risk patients. This chapter synthesizes contemporary insights into the pathogenesis of primary hyperlipoproteinemias, emphasizing the transition from traditional lipid-based classification toward precision medicine approaches focused on lifetime cardiovascular risk, molecular characterization, and individualized therapeutic intervention.
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