4.5 Article

Simulating obstructive sleep apnea patients' oxygenation characteristics into a mouse model of cyclical intermittent hypoxia

期刊

JOURNAL OF APPLIED PHYSIOLOGY
卷 118, 期 5, 页码 544-557

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/japplphysiol.00629.2014

关键词

obstructive sleep apnea; cyclical intermittent hypoxia; oxidative stress; 8,12-iso-iPF(2 alpha)-VI

资金

  1. National Heart, Lung, and Blood Institute [P01-HL-094307, K12-HL-090021]
  2. American Academy of Sleep Medicine Foundation [56-PA-10]
  3. National Center for Advancing Translational Sciences [UL1TR000003]
  4. Science Without Borders Program-Coordination for the Improvement of Higher Education Personnel, Ministry of Education, Brazil

向作者/读者索取更多资源

Mouse models of cyclical intermittent hypoxia (CIH) are used to study the consequences of both hypoxia and oxidative stress in obstructive sleep apnea (OSA). Whether or not a mouse model of CIH that simulates OSA patients' oxygenation characteristics would translate into improved patient care remains unanswered. First we identified oxygenation characteristics using the desaturation and resaturation time in 47 OSA subjects from the Molecular Signatures of Obstructive Sleep Apnea Cohort (MSOSA). We observe that a cycle of intermittent hypoxia is not sinusoidal; specifically, desaturation time increases in an almost linear relationship to the degree of hypoxia (nadir), whereas resaturation time is somewhat constant (similar to 15 s), irrespective of the nadir. Second, we modified the Hycon mouse model of CIH to accommodate a 15-s resaturation time. Using this modified CIH model, we explored whether a short resaturation schedule (15 s), which includes the characteristics of OSA patients, had a different effect on levels of oxidative stress (i.e., urinary 8,12-iso-iPF(2 alpha)-VI levels) compared with sham and a long resaturation schedule (90 s), a schedule that is not uncommon in rodent models of CIH. Results suggest that shorter resaturation time may result in a higher level of 8,12-iso-iPF(2 alpha)-VI compared with long resaturation or sham conditions. Therefore, simulating the rodent model of CIH to reflect this and other OSA patients' oxygenation characteristics may be worthy of consideration to better understand the effects of hypoxia, oxidative stress, and their interactions.

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