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Updated: Jun 12, 2026

A Phenotyping Regimen for Genetically Modified Mice Used to Study Genes Implicated in Human Diseases of Aging
Published on: July 14, 2016
APOE4 Increases Systemic Inflammation and Alters Metabolic and Neuroprotective Pathways following Multiagent
Aisha Naeem1, Michaela McCormack2, Ryan Lein2
1Research and Graduate Studies, QU Health, Qatar University, Doha, Qatar; Department of Oncology, Lombardi Comprehensive Cancer Center, Washington, DC.
Abstract:
The median age at breast cancer diagnosis is approximately 62 years, with 50% to 70% of women experiencing postchemotherapy cognitive impairment, particularly those with the APOE4 allele. Preclinical studies, primarily using young mice and single-agent treatments, have shown the role of APOE4 in postchemotherapy cognitive function. Using 14- to 16-month-old APOE3 and APOE4 C57Bl/6 mice, the effects of doxorubicin + docetaxel or doxorubicin + cyclophosphamide were examined before and 2 weeks after treatment. At baseline, APOE4 mice had significantly higher plasma levels of interferon-γ, tumor necrosis factor-α, and regulated on activation normal T cell expressed and secreted than APOE3 mice. Regulated on activation normal T cell expressed and secreted and tumor necrosis factor-α decreased in the APOE4 mice with both treatment regimens. IL-1β decreased significantly after doxorubicin + docetaxel, and interferon-γ decreased after doxorubicin + cyclophosphamide treatment. No significant APOE3-specific changes were seen. Magnetic resonance spectroscopy identified modest APOE-specific brain metabolite differences. No significant changes in senescence-associated β-galactosidase were observed in either model. Spatial transcriptomics suggested that the synaptic, inflammatory, and lipid-metabolic pathways were increased in the APOE3 hippocampus and suppressed in APOE4 mice, and the APOE4 cortex showed increased protein biosynthetic, G protein-coupled signaling, and stress/aging-related pathways. Overall, aged APOE4 mice exhibited chronic systemic inflammation and compromised repair-associated responses following chemotherapy, suggesting vulnerability to treatment-induced neurotoxicity.