Temporal trajectories of novel object recognition performance in mice exposed to intermittent hypoxia

David Gozal1, Abdelnaby Khalyfa2, Zhuanghong Qiao2

  • 1Section of Pediatric Sleep Medicine, Dept of Pediatrics, Pritzker School of Medicine, Biological Sciences Division, The University of Chicago, Chicago, IL, USA dgozal@uchicago.edu.

Insights

Intermittent hypoxia from sleep apnea impairs cognitive function over time. Recovery is possible for short exposures, but prolonged intermittent hypoxia leads to lasting neurocognitive deficits.

Area of Science:

  • Neuroscience
  • Sleep Medicine
  • Respiratory Physiology

Background:

  • Sleep-disordered breathing, particularly intermittent hypoxia, is linked to neurocognitive deficits.
  • The reversibility of these hypoxia-induced cognitive impairments remains largely unknown.

Purpose of the Study:

  • To investigate the time-dependent effects of intermittent hypoxia on neurocognitive function.
  • To determine the reversibility of these deficits following normoxic recovery.

Main Methods:

  • Male C57BL/6J mice were exposed to intermittent hypoxia or room air for 3-240 days.
  • Cognitive function was assessed using a novel object recognition (NOR) test.
  • Mice underwent normoxic recovery periods matched to their prior exposure duration.

Main Results:

  • Intermittent hypoxia progressively reduced NOR performance, stabilizing after 45 days.
  • Full cognitive recovery was observed after shorter exposures (<90 days).
  • Prolonged intermittent hypoxia resulted in significant residual cognitive deficits, with recovery diminishing over time.

Conclusions:

  • Intermittent hypoxia impairs neurocognitive function in a time-dependent manner.
  • Cognitive deficits from prolonged intermittent hypoxia are not fully reversible.
  • Early diagnosis and treatment of sleep apnea are crucial to prevent persistent cognitive impairment.

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