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Differential effects of exposure to toxic or nontoxic mold spores on brain inflammation and Morris water maze performance

Cheryl F. Harding, David Liao, Ramona Persaud +7 more2023Behavioural Brain ResearchJournal Article
10.1016/j.bbr.2023.114294PubMedFree full text
Immune/InnateNeurological
Indoor Mold (Stachybotrys, Aspergillus, etc.)

Abstract

People who live or work in moldy buildings often complain of "brain fog" that interferes with cognitive performance. Until recently, there was no published research on the effects of controlled exposure to mold stimuli on cognitive function or an obvious mechanism of action, fueling controversy over these claims. The constellation of health problems reported by mold-exposed individuals (respiratory issues, fatigue, pain, anxiety, depression, and cognitive deficits) correspond to those caused by innate immune activation following exposure to bacterial or viral stimuli. To determine if mold-induced innate immune activation might cause cognitive issues, we quantified the effects of both toxic and nontoxic mold on brain immune activation and spatial memory in the Morris water maze. We intranasally administered either 1) intact, toxic Stachybotrys chartarum spores; 2) ethanol-extracted, nontoxic Stachybotrys chartarum spores; or 3) control saline vehicle to mice. Inhalation of nontoxic spores caused significant deficits in the test of long-term memory of platform location, while not affecting short-term memory. Inhalation of toxic spores increased motivation to reach the platform. Interestingly, in both groups of mold-exposed males, numbers of interleukin-1β-immunoreactive cells in many areas of the hippocampus significantly correlated with latency to find the platform, path length, and swimming speed during training, but not during testing for long-term memory. These data add to our prior evidence that mold inhalation can interfere with cognitive processing in different ways depending on the task, and that brain inflammation is significantly correlated with changes in behavior.

Cited By (4)

  • Onset characteristics and breadth of occupants’ long-lasting building-related symptoms attributed to living in damp housing conditions in Australia: Qualitative insightsBuilding and Environment · 2024
  • Association of mold exposure and solid household fuel use with depression and anxiety among older adults in ChinaEnvironmental Health · 2025
  • Airborne Fungal Communities: Diversity, Health Impacts, and Potential AI Applications in AeromycologyAerobiology · 2025
  • Bayesian network analysis of cognitive impairment in empty-nest older adults: the role of living environmentFrontiers in Public Health · 2025

References (16)

  • Fungal Fragments as Indoor Air BiocontaminantsApplied and Environmental Microbiology · 2002
  • Satratoxin G from the Black Mold Stachybotrys chartarum Evokes Olfactory Sensory Neuron Loss and Inflammation in the Murine Noseand BrainEnvironmental Health Perspectives · 2006

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