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将阻塞性睡眠呼吸暂停患者的氧合特征模拟到周期性间歇性缺氧小鼠模型中。

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

作者信息

Lim Diane C, Brady Daniel C, Po Pengse, Chuang Li Pang, Marcondes Laise, Kim Emily Y, Keenan Brendan T, Guo Xiaofeng, Maislin Greg, Galante Raymond J, Pack Allan I

机构信息

Division of Sleep Medicine, Department of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania; Center for Sleep and Circadian Neurobiology, University of Pennsylvania, Philadelphia, Pennsylvania;

Center for Sleep and Circadian Neurobiology, University of Pennsylvania, Philadelphia, Pennsylvania;

出版信息

J Appl Physiol (1985). 2015 Mar 1;118(5):544-57. doi: 10.1152/japplphysiol.00629.2014. Epub 2014 Nov 26.

Abstract

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 (∼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-iPF2α-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-iPF2α-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.

摘要

周期性间歇性缺氧(CIH)小鼠模型用于研究阻塞性睡眠呼吸暂停(OSA)中缺氧和氧化应激的后果。模拟OSA患者氧合特征的CIH小鼠模型能否转化为改善患者护理仍未得到解答。首先,我们利用阻塞性睡眠呼吸暂停队列(MSOSA)中47名OSA受试者的去饱和和再饱和时间确定了氧合特征。我们观察到间歇性缺氧的周期不是正弦曲线;具体而言,去饱和时间与缺氧程度(最低点)几乎呈线性增加,而无论最低点如何,再饱和时间都有些恒定(约15秒)。其次,我们对CIH的Hycon小鼠模型进行了修改,以适应15秒的再饱和时间。使用这种修改后的CIH模型,我们探讨了包含OSA患者特征的短再饱和时间表(15秒)与假手术和长再饱和时间表(90秒,这在CIH啮齿动物模型中并不少见)相比,对氧化应激水平(即尿8,12-异前列腺素F2α-VI水平)是否有不同影响。结果表明,与长再饱和或假手术条件相比,较短的再饱和时间可能导致8,12-异前列腺素F2α-VI水平更高。因此,模拟CIH啮齿动物模型以反映这一特征及其他OSA患者的氧合特征,可能值得考虑,以便更好地理解缺氧、氧化应激及其相互作用的影响。

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