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February 22, 2026SLEEP1 citationsOpen Access

Dim light at night impacts circadian rhythms and Alzheimer’s disease-like neuroinflammation and neuropathology in humanized APP SAA knock-in mice

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MDMarilyn J. DuncanMHMargaret R. HawkinsLBLeke Bytyqi

Key Points

  • This research aims to investigate how chronic exposure to dim light at night affects circadian rhythms and neuroinflammation related to Alzheimer's disease in humanized mouse models.
  • Used 12–13 month-old humanized APP knock-in mice for analysis.
  • Exposed mice to 8 lux of dim light during the dark phase for 8 weeks.
  • Assessed circadian rhythm changes and amyloid pathology in both humanized APP models.
  • Measured microglial and astrocyte responses under dLAN condition.
  • Circadian rhythm amplitude and stability decreased, increasing fragmentation in both mouse genotypes.
  • Increased hippocampal plaque burden and soluble neocortical amyloid-β observed in hAPPSAA KI mice.
  • Elevated microglial markers were noted in the cortex and hippocampus with dLAN exposure.
  • Distinct spatial responses in microglial markers suggested an antigen-presenting phenotype without increased cytokine levels.

Abstract

Abstract Artificial light at night (light pollution) is widespread but understudied in the context of Alzheimer’s disease (AD). Sleep and circadian disruption have been linked to amyloid-β (Aβ) accumulation and neuroinflammation, but whether dim light at night (dLAN) modifies these processes remains unclear. We tested whether chronic dLAN exposure (8 lux during the dark phase, 8 weeks) alters circadian rhythms, amyloid pathology, and neuroinflammation in 12–13 month-old humanized APP knock-in (KI) mice. hAPPSAA KI mice, which develop plaques, were compared with hAPPWT KI controls carrying only a humanized APP sequence. dLAN reduced circadian rhythm amplitude and stability while increasing fragmentation in both genotypes within two weeks. In hAPPSAA KI mice, dLAN modestly increased hippocampal plaque burden and soluble neocortical Aβ. Astrocyte reactivity was elevated by genotype but not altered by nighttime light exposure. In contrast, microglial markers (CD45, MHCII) were increased with dLAN with CD45+ area elevated in hippocampus, and MHCII+ cell counts greater in the cortex and hippocampus of hAPPSAA KI mice. There were also distinct spatial responses between the microglia markers suggesting that dLAN primes microglia toward an antigen-presenting phenotype (MHCII) in the presence of Aβ. Yet, the microglia/macrophage priming was not associated with amplified cytokine or chemokine levels at the 8-week dLAN exposure timepoint in the brain. These findings add to growing evidence that nighttime light exposure can disrupt circadian and immune regulation, and suggest that environmental light pollution should be further explored as a modifiable factor contributing to Alzheimer’s disease progression.

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Cite This Study

Duncan et al. (2026) studied this question.

synapsesocial.com/papers/699a9d8e482488d673cd373dhttps://doi.org/10.1093/sleep/zsag041
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