HDL biology
Neovascular age-related macular degeneration is linked to more HDL and IDL particles, an association unaffected by the CETP D442G mutation (J Lipid Res 2017)
Original title: Plasma lipoprotein subfraction concentrations are associated with lipid metabolism and age-related macular degeneration
In a case-control study examining lipoprotein profile and neovascular age-related macular degeneration (nAMD), patients with nAMD had significantly higher HDL and IDL concentrations than controls, with the HDL increase driven by an excess of medium-sized particles, and lower apolipoprotein A-1, VLDL, and chylomicron lipoprotein, with many associations showing a dose-dependent pattern across controls, early AMD, and nAMD. Adjustment for the presence of the cholesteryl ester transfer protein (CETP) D442G mutation did not significantly alter the increased AMD risk associated with HDL particle concentration. These data suggest widespread systemic disturbance in lipid metabolism, including altered lipoprotein carrier capacity, in the pathogenesis of AMD.
Original abstract
Disturbance in lipid metabolism has been suggested as a major pathogenic factor for age-related macular degeneration (AMD). Conventional lipid measures have been inconsistently associated with AMD. Other factors that can alter lipid metabolism include lipoprotein phenotype and genetic mutations. We performed a case-control study to examine the association between lipoprotein profile and neovascular AMD (nAMD) and whether the cholesterylester transfer protein (CETP) D442G mutation modulates these associations. Patients with nAMD had significantly higher concentrations of HDL and IDL compared with controls. The increase in HDL particles in nAMD patients was driven by an excess of medium-sized particles. Concurrently, patients with nAMD also had lower Apo A-1, lower VLDL and chylomicron lipoprotein. Many of these associations showed a dose-dependent association between controls, early AMD cases, and nAMD cases. Adjustment for the presence of the D442G mutation at the CETP locus did not significantly alter the increased AMD risk associated with HDL particle concentration. AMD is associated with variation in many lipoprotein subclasses, including increased HDL and IDL particles and decreased Apo A-1, VLDL, and chylomicron particles. These data suggest widespread systemic disturbance in lipid metabolism in the pathogenesis of AMD, including possible alterations in lipoprotein carrier capacity.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.