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动物整体间歇性低氧实验的变异性来源和程度。

CORP: Sources and degrees of variability in whole animal intermittent hypoxia experiments.

机构信息

Interdisciplinary Graduate Program in Molecular Medicine, University of Iowa, Iowa City, Iowa, United States.

Division of Hematology, Oncology, and Bone Marrow Transplantation, Department of Internal Medicine, University of Iowa, Iowa City, Iowa, United States.

出版信息

J Appl Physiol (1985). 2023 May 1;134(5):1207-1215. doi: 10.1152/japplphysiol.00643.2022. Epub 2023 Mar 23.

Abstract

Chamber exposures are commonly used to evaluate the physiological and pathophysiological consequences of intermittent hypoxia in animal models. Researchers in this field use both commercial and custom-built chambers in their experiments. The purpose of this Cores of Reproducibility in Physiology paper is to demonstrate potential sources of variability in these systems that researchers should consider. Evaluating the relationship between arterial oxygen saturation and inspired oxygen concentration, we found that there are important sex-dependent differences in the commonly used C57BL6/J mouse model. The time delay of the oxygen sensor that provides feedback to the system during the ramp-down and ramp-up phases was different, limiting the number of cycles per hour that can be conducted and the overall stability of the oxygen concentration. The time to reach the hypoxic and normoxic hold stages, and the overall oxygen concentration, were impacted by the cycle number. These variables were further impacted by whether there are animals present in the chamber, highlighting the importance of verifying the cycling frequency with animals in the chamber. At ≤14 cycles/h, instability in the chamber oxygen concentration did not impact arterial oxygen saturation but may be important at higher cycle numbers. Taken together, these data demonstrate the important sources of variability that justify reporting and verifying the target oxygen concentration, cycling frequency, and arterial oxygen concentration, particularly when comparing different animal models and chamber configurations. Intermittent hypoxia exposures are commonly used in physiology and many investigators use chamber systems to perform these studies. Because of the variety of chamber systems and protocols used, it is important to understand the sources of variability in intermittent hypoxia experiments that can impact reproducibility. We demonstrate sources of variability that come from the animal model, the intermittent hypoxia protocol, and the chamber system that can impact reproducibility.

摘要

腔室暴露通常用于评估动物模型间歇性低氧的生理和病理生理后果。该领域的研究人员在实验中既使用商业腔室也使用定制腔室。本生理学可重复性核心文件的目的是展示这些系统中可能存在的变异性来源,研究人员应考虑这些来源。在评估动脉血氧饱和度和吸入氧浓度之间的关系时,我们发现常用的 C57BL6/J 小鼠模型存在重要的性别依赖性差异。在斜坡下降和斜坡上升阶段为系统提供反馈的氧气传感器的时间延迟不同,限制了每小时可以进行的循环次数和氧气浓度的整体稳定性。达到低氧和常氧保持阶段的时间以及整体氧气浓度受到循环次数的影响。这些变量进一步受到腔室内是否有动物存在的影响,突出了在腔室内有动物的情况下验证循环频率的重要性。在≤14 次/小时时,腔室内氧气浓度的不稳定性不会影响动脉血氧饱和度,但在更高的循环次数下可能很重要。总之,这些数据表明存在重要的变异性来源,这证明了报告和验证目标氧气浓度、循环频率和动脉血氧饱和度的合理性,尤其是在比较不同动物模型和腔室配置时。间歇性低氧暴露在生理学中很常用,许多研究人员使用腔室系统来进行这些研究。由于使用的腔室系统和方案种类繁多,了解可能影响重现性的间歇性低氧实验中的变异性来源非常重要。我们展示了来自动物模型、间歇性低氧方案和腔室系统的变异性来源,这些来源可能会影响重现性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3246/10151045/ade8b070c849/jappl-00643-2022r01.jpg

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