CRISPR therapy for dyslipidemia

PURPOSE OF REVIEW: Several lipid and lipoprotein risk factors play an important role in the causality of atherosclerotic cardiovascular disease. Many therapies are limited by suboptimal long-term adherence. This narrative review summarizes the potential for gene editing and epigenetic therapy for the management of dyslipidemia. RECENT FINDINGS: Recent advances in genomic engineering permit the ability to develop gene editing, base editing and epigenomic editing of specific regions of DNA in humans. These therapies have advanced to early phase clinical evaluation with initial reports demonstrating favorable reductions in ANGPTL3 and proprotein convertase subtilisin kexin type 9, with consequent decreases in levels of low-density lipoprotein cholesterol and triglycerides. Apart from mild-moderate infusion reactions, the early experience with these therapies appears to be well tolerated. SUMMARY: Advances in genomic engineering have developed a number of agents with the potential for robust and durable changes to atherosclerotic lipid and lipoprotein risk factors. How these agents will enter clinical practice will require further evaluation in clinical trials.

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Publication Details

Journal
Current Opinion in Lipidology
Published
2026-09-18
DOI
https://doi.org/10.1097/mol.0000000000001062
Primary Topic
Lipid metabolism and disorders
Type
article
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article

CRISPR therapy for dyslipidemia

Stephen J. Nicholls
Current Opinion in Lipidology
Lipid metabolism and disorders
article

CRISPR therapy for dyslipidemia

Stephen J. Nicholls
article en

Abstract

PURPOSE OF REVIEW: Several lipid and lipoprotein risk factors play an important role in the causality of atherosclerotic cardiovascular disease. Many therapies are limited by suboptimal long-term adherence. This narrative review summarizes the potential for gene editing and epigenetic therapy for the management of dyslipidemia. RECENT FINDINGS: Recent advances in genomic engineering permit the ability to develop gene editing, base editing and epigenomic editing of specific regions of DNA in humans. These therapies have advanced to early phase clinical evaluation with initial reports demonstrating favorable reductions in ANGPTL3 and proprotein convertase subtilisin kexin type 9, with consequent decreases in levels of low-density lipoprotein cholesterol and triglycerides. Apart from mild-moderate infusion reactions, the early experience with these therapies appears to be well tolerated. SUMMARY: Advances in genomic engineering have developed a number of agents with the potential for robust and durable changes to atherosclerotic lipid and lipoprotein risk factors. How these agents will enter clinical practice will require further evaluation in clinical trials.

Current Opinion in Lipidology
Monash University (AU)
Openalex Percentile: Top 11%
Lipid metabolism and disorders
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CRISPR therapy for dyslipidemia — Stephen J. Nicholls · Current Opinion in Lipidology (2026) | TGRS Research Map | TGRS