Prada-Dacasa Patricia, Urpi Andrea, Sánchez-Benito Laura, Bianchi Patrizia, Quintana Albert
Department of Cell Biology, Physiology and Immunology, Universitat Autònoma de Barcelona, Bellaterra, Spain.
Institut de Neurociències, Universitat Autònoma de Barcelona, Bellaterra, Spain.
Bio Protoc. 2020 Sep 5;10(17):e3741. doi: 10.21769/BioProtoc.3741.
Respiratory dysfunction is among the main cause of severe and fatal pathologies worldwide. The use of effective experimental models and methodologies for the study of the pulmonary pathophysiology is necessary to prevent, control and cure these diseases. Plethysmography, a technique for the assessment of lung function, has been widely applied in mice for the characterization of respiratory physiology. However, classical plethysmography methods present technical limitations such as the use of anesthesia and animal immobilization. Whole-body plethysmography (WBP) avoids these issues providing a non-invasive approach for the assessment of the respiratory function in conscious animals. WBP relies on the recording of pressure changes that are produced by the spontaneous breathing activity of an animal placed inside an airtight chamber. During normal respiration, pressure variation is directly proportional to the respiratory pattern of the animal allowing the measurement of the respiratory rate and tidal volume. These parameters are commonly used to evaluate pulmonary function in different physiological and disease models. In contrast to classical plethysmography methods, WBP technique allows reproducible serial measurements as it avoids animal restraint or the use of anesthesia. These key features rend WBP a suitable approach for longitudinal studies allowing the assessment of progressive respiratory alterations in physiological and pathological conditions. This protocol describes the procedures for the measurement of the breathing patterns in mice using the WBP method, the data analysis and results interpretation.
呼吸功能障碍是全球范围内严重和致命疾病的主要原因之一。为预防、控制和治愈这些疾病,有必要使用有效的实验模型和方法来研究肺病理生理学。体积描记法是一种评估肺功能的技术,已广泛应用于小鼠以表征呼吸生理学。然而,传统的体积描记法存在技术局限性,如使用麻醉和固定动物。全身体积描记法(WBP)避免了这些问题,为评估清醒动物的呼吸功能提供了一种非侵入性方法。WBP依赖于记录放置在气密箱内的动物自发呼吸活动产生的压力变化。在正常呼吸过程中,压力变化与动物的呼吸模式成正比,从而可以测量呼吸频率和潮气量。这些参数通常用于评估不同生理和疾病模型中的肺功能。与传统的体积描记法不同,WBP技术允许进行可重复的系列测量,因为它避免了动物束缚或使用麻醉。这些关键特性使WBP成为纵向研究的合适方法,可用于评估生理和病理条件下的进行性呼吸改变。本方案描述了使用WBP方法测量小鼠呼吸模式、数据分析和结果解释的程序。