4.7 Article

Aircraft noise, like heat stress, causes cognitive impairments via similar mechanisms in male mice

Journal

CHEMOSPHERE
Volume 274, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2021.129739

Keywords

Heat; Aircraft noise; Cognition; Gut and blood-brain barrier; Neuroinflammation; Mice

Funding

  1. Logistics Research Program of PLA [CJN 13J004]
  2. Innovation Project in Military Medicine Research Project of PLA [19QNNP087]
  3. Foundation of the Director of the 960th hospital joint logistics support force of PLA [2018ZX03]
  4. Ministry of Science and Technology of the Republic of China [MOST 108-2314-B-715-001]
  5. Mackay Memorial Hospital [MMH-MM-10807]
  6. Mackay Medical College [1081A01]

Ask authors/readers for more resources

This study found that both aircraft noise and heat stress can impair cognitive function in male mice through similar mechanisms.
To our knowledge, little evidence is available about effects of aircraft noise (AN), a non-chemical stressor, on cognitive function. Again, it is unknown whether or not the heat stress (HS)-induced cognitive deficits can be exacerbated by AN. The adult male mice were assigned to four groups: group 1 mice exposed to non-HS (24-26 degrees C 2 h daily for 4 consecutive days) and white noise (WN) (2 h daily for 4 consecutive days), group 2 mice exposed to WN and HS (32-34 degrees C 2 h daily for 4 consecutive days), group 3 mice exposed to AN and non-HS (2 h daily for 4 consecutive days) and group 4 mice exposed to AN and HS (2 h daily for consecutive 4 days). Cognitive function were determined by passive avoidance, Y-maze, Morris water maze, and novel object recognition tests. Gut barrier and blood-brain-barrier (BBB) permeability, upload of lipopolysaccharide (LPS) translocation, systemic and central inflammation, and stress reactions were examined. Heat stressed mice displayed both increased stress reactions and learning and memory loss. Heat stress also caused gut barrier hyperpermeability, increased upload of LPS translocation, systemic inflammation, BBB disruption and hippocampal neuroinflammation. Aircraft noise stressed mice did not display systemic inflammation but caused gut barrier hyperpermeability, increased upload of LPS translocation, increased stress reactions, BBB disruption, hippocampal neuroinflammation and cognitive deficits. Aircraft noise exposure further exacerbated the heat stress-induced cognitive deficits and its complications. Our data suggest that AN, like HS, causes cognitive impairments via similar mechanisms in male mice. (C) 2021 The Authors. Published by Elsevier Ltd.

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