4.0 Article

The human hippocampus and its subfield volumes across age, sex and APOE e4 status

期刊

BRAIN COMMUNICATIONS
卷 3, 期 1, 页码 -

出版社

OXFORD UNIV PRESS
DOI: 10.1093/braincomms/fcaa219

关键词

hippocampus; Alzheimer's disease; ageing; subfields

资金

  1. Wellcome Trust
  2. Medical Research Council
  3. Oxford National Institute for Health Research Biomedical Research Centre
  4. Medical Research Council Doctoral Training Partnership Studentship
  5. Department of Psychiatry, University of Oxford
  6. MRC [MR/P00878X/1, MR/V036858/1] Funding Source: UKRI

向作者/读者索取更多资源

Research has shown that in healthy aging individuals, females and carriers of the apolipoprotein E e4 allele are at greater risk for specific hippocampal subfields volume loss. These findings suggest a selective vulnerability of the hippocampus and its subfields.
Female sex, age and carriage of the apolipoprotein E e4 allele are the greatest risk factors for sporadic Alzheimer's disease. The hippocampus has a selective vulnerability to atrophy in ageing that may be accelerated in Alzheimer's disease, including in those with increased genetic risk of the disease, years before onset. Within the hippocampal complex, subfields represent cytoarchitectonic and connectivity based divisions. Variation in global hippocampal and subfield volume associated with sex, age and apolipoprotein E e4 status has the potential to provide a sensitive biomarker of future vulnerability to Alzheimer's disease. Here, we examined non-linear age, sex and apolipoprotein E effects, and their interactions, on hippocampal and subfield volumes across several decades spanning mid-life to old age in 36 653 healthy ageing individuals. FMRIB Software Library derived estimates of total hippocampal volume and Freesurfer derived estimates hippocampal subfield volume were estimated. A model-free, sliding-window approach was implemented that does not assume a linear relationship between age and subfield volume. The annualized percentage of subfield volume change was calculated to investigate associations with age, sex and apolipoprotein E e4 homozygosity. Hippocampal volume showed a marked reduction in apolipoprotein E e4/e4 female carriers after age 65. Volume was lower in homozygous e4 individuals in specific subfields including the presubiculum, subiculum head, cornu ammonis 1 body, cornu ammonis 3 head and cornu ammonis 4. Nearby brain structures in medial temporal and subcortical regions did not show the same age, sex and apolipoprotein E interactions, suggesting selective vulnerability of the hippocampus and its subfields. The findings demonstrate that in healthy ageing, two factors-female sex and apolipoprotein E e4 status-confer selective vulnerability of specific hippocampal subfields to volume loss.

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