Genetics
CETP I405V II genotype linked to gray matter diffusion abnormalities in healthy older adults (J Neural Transm 2015)
Original title: Genetic markers of cholesterol transport and gray matter diffusion: a preliminary study of the CETP I405V polymorphism
In 52 healthy adults aged 51 to 85, researchers used diffusion tensor imaging to test whether the CETP I405V polymorphism (rs5882), previously linked to neurodegeneration risk especially alongside the ApoE4 allele, affects gray matter microstructure. Compared with individuals carrying IV or VV genotypes, II homozygotes showed significantly higher mean diffusivity in bilateral temporal, parietal, and occipital gray matter. Secondary analyses found higher fractional anisotropy and axial diffusivity in the left temporal lobe of IV/VV carriers who also had an ApoE4 allele. The findings provide preliminary evidence that CETP II homozygosity is a risk factor for gray matter abnormalities in posterior brain regions in healthy older adults, independent of ApoE4.
Original abstract
Variations of the cholesteryl ester transfer protein polymorphism (CETP I405V/rs5882) have been associated with an increased risk for neurodegeneration, particularly when examined in conjunction with the epsilon 4 isoform of apolipoprotein E (ApoE4). Despite these identified relationships, the impact of I405V on gray matter microstructure remains unknown. The present study examined the impact of the CETP I405V polymorphism on gray matter integrity among 52 healthy adults between ages 51 and 85. Gray matter was measured bilaterally using diffusion tensor imaging (DTI) metrics of fractional anisotropy (FA), mean diffusivity (MD), axial diffusivity (AD), and radial diffusivity (RD). Participants were grouped according to a dominant statistical model (II genotype vs. IV/VV genotypes) and secondary analyses were completed to examine the interactive effects of CETP and ApoE4 on DTI metrics. Compared to individuals with the IV/VV genotypes, II homozygotes demonstrated significantly higher MD in bilateral temporal, parietal, and occipital gray matter. Secondary analyses revealed higher FA and AD in the left temporal lobe of IV/VV genotypes with an ApoE4 allele. Our results provide preliminary evidence that CETP II homozygosity is a predisposing risk factor for gray matter abnormalities in posterior brain regions in healthy older adults, independent of an ApoE4 allele.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.