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May 1, 2016Annals of Neurology155 citationsOpen Access

Obstructive sleep apnea decreases central nervous system–derived proteins in the cerebrospinal fluid

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YJYo‐El S. JuMFMary Beth FinnCSCourtney L. Sutphen

Key Points

  • To investigate the mechanism linking obstructive sleep apnea with Alzheimer's disease through changes in cerebrospinal fluid proteins.
  • Polysomnography and lumbar puncture performed in obstructive sleep apnea and control groups.
  • Comparison of slow wave activity and cerebrospinal fluid protein levels between groups.
  • Slow wave activity negatively correlated with amyloid-β-40 in controls; decreased in the obstructive sleep apnea group.
  • A significant reduction in amyloid-β-40 was noted in the obstructive sleep apnea group.
  • Other neuronally derived proteins were also decreased in the obstructive sleep apnea group, suggesting an impact on fluid interaction.

Abstract

We hypothesized that one mechanism underlying the association between obstructive sleep apnea (OSA) and Alzheimer's disease is OSA leading to decreased slow wave activity (SWA), increased synaptic activity, decreased glymphatic clearance, and increased amyloid-β. Polysomnography and lumbar puncture were performed in OSA and control groups. SWA negatively correlated with cerebrospinal fluid (CSF) amyloid-β-40 among controls and was decreased in the OSA group. Unexpectedly, amyloid-β-40 was decreased in the OSA group. Other neuronally derived proteins, but not total protein, were also decreased in the OSA group, suggesting that OSA may affect the interaction between interstitial and cerebrospinal fluid. Ann Neurol 2016;80:154-159.

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Cite This Study

Ju et al. (2016) studied this question.

synapsesocial.com/papers/6a1035d8d8c5cf602efddcabhttps://doi.org/10.1002/ana.24672
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