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Updated: Aug 14, 2026

Lipidomics and Transcriptomics in Neurological Diseases
Published on: March 18, 2022
Brain pro-resolving-to-pro-inflammatory lipids and cPLA2 activation associations with late-life cognitive
Anat Yaskolka Meir1, Xinhui Wang2, Boyang Li2
1Department of Epidemiology, Harvard T.H. Chan School of Public Health, Boston, MA, USA.
Background:
Lipidome alterations are linked to neurodegenerative disorders, but the association between calcium-dependent phospholipase A2 (cPLA2)-related lipid ratios, which reflect pro-resolving and pro-inflammatory lipid biology, and age-related cognitive decline remains unclear.
Methods:
In postmortem dorsolateral prefrontal cortex samples from participants in the Religious Orders Study and the Rush Memory and Aging Project (lipidomics n = 191; transcriptomics n = 411), we quantified three ratios of cPLA2-released fatty acid precursors (primary exposures), three indices of arachidonic acid (AA) metabolism, and two AA transcriptomic activation scores (secondary exposures). Global cognition (primary outcome) and five cognitive domains were derived from annual neuropsychological testing.
Findings:
In mixed-effect change point models (death-age, sex, education, and apolipoprotein E ε4 (APOEε4)-adjusted), higher brain eicosapentaenoic acid/AA was associated with better global cognition proximate-to-death (β = 0.254, 95% CI [0.064-0.455]) and a slower rate of cognitive decline (β = 0.045, 95%CI [0.005-0.081]). Separate models including an APOEε4 × cPLA2 lipid-ratio interaction showed that the association between lipoxin A4/AA and global cognition proximate-to-death differed significantly between APOEε4 carriers and non-carriers (β = 0.396, 95% CI [0.015-0.776]). A secondary analysis, repeating these models with three indices of AA metabolism-to-AA ratios and examining the association between the six cPLA2 lipid ratios and five cognition domains, yielded similar results. Higher AA transcriptomic activation scores, indicating greater cPLA2 activation, were associated with lower global cognition at death (β = -0.148, 95% CI [-0.266 to -0.028]) and with multiple cognitive domains.
Interpretation:
Modulation of brain lipid ratios warrants further investigation as a potential target related to cognitive decline.
Funding:
National Institute of Health, the Council for Higher Education-Zuckerman support program for outstanding postdoctoral female researchers.
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