Key result
Accumulating evidence suggests that lowering triglyceride-rich lipoproteins via novel targets such as APOC3 and ANGPTL3 may reduce residual cardiovascular disease risk beyond LDL-cholesterol lowering.
Why the study?
Despite LDL-lowering therapies, residual cardiovascular disease persists due in part to elevated triglyceride-rich lipoproteins and reduced HDL, creating an unmet need for new approaches beyond fibrates and fish oils.
This review highlights the atherogenic role of triglyceride-rich lipoproteins and their remnants, and discusses emerging therapeutic targets such as APOC3 and ANGPTL3 for reducing residual cardiovascular risk beyond LDL-cholesterol lowering.
May inform target selection for residual risk trials; leaves open whether APOC3/ANGPTL3 inhibition improves outcomes.
Despite the success of LDL-lowering drugs in reducing cardiovascular disease (CVD), there remains a large burden of residual disease due in part to persistent dyslipidemia characterized by elevated levels of triglyceride-rich lipoproteins (TRLs) and reduced levels of HDL. This form of dyslipidemia is increasing globally as a result of the rising prevalence of obesity and metabolic syndrome. Accumulating evidence suggests that impaired hepatic clearance of cholesterol-rich TRL remnants leads to their accumulation in arteries, promoting foam cell formation and inflammation. Low levels of HDL may associate with reduced cholesterol efflux from foam cells, aggravating atherosclerosis. While fibrates and fish oils reduce TRL, they have not been uniformly successful in reducing CVD, and there is a large unmet need for new approaches to reduce remnants and CVD. Rare genetic variants that lower triglyceride levels via activation of lipolysis and associate with reduced CVD suggest new approaches to treating dyslipidemia. Apolipoprotein C3 (APOC3) and angiopoietin-like 3 (ANGPTL3) have emerged as targets for inhibition by antibody, antisense, or RNAi approaches. Inhibition of either molecule lowers TRL but respectively raises or lowers HDL levels. Large clinical trials of such agents in patients with high CVD risk and elevated levels of TRL will be required to demonstrate efficacy of these approaches.
No takes yet. Share an insight, caveat, or question.
A 2022 study conducted a review in Dyslipidemia and cardiovascular disease. Novel lipid-lowering therapies targeting APOC3 and ANGPTL3 was evaluated. Accumulating evidence suggests that lowering triglyceride-rich lipoproteins via novel targets such as APOC3 and ANGPTL3 may reduce residual cardiovascular disease risk beyond LDL-cholesterol lowering.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: