Feng Li Rebekah, Nguyen Quang, Ross Alexander, Saligan Leorey N
National Institute of Nursing Research, National Institutes of Health.
National Institute of Nursing Research, National Institutes of Health;
J Vis Exp. 2018 May 17(135):57736. doi: 10.3791/57736.
Fatigue is a common and debilitating condition that affects most cancer patients. To date, fatigue remains poorly characterized with no diagnostic test to objectively measure the severity of this condition. Here we describe an optimized method for assessing mitochondrial function of PBMCs collected from fatigued cancer patients. Using a compact extracellular flux system and sequential injection of respiratory inhibitors, we examined PBMC mitochondrial functional status by measuring basal mitochondrial respiration, spare respiratory capacity, and energy phenotype, which describes the preferred energy pathway to respond to stress. Fresh PBMCs are readily available in the clinical setting using standard phlebotomy. The entire assay described in this protocol can be completed in less than 4 hours without the involvement of complex biochemical techniques. Additionally, we describe a normalization method that is necessary for obtaining reproducible data. The simple procedure and normalization methods presented allow for repeated sample collection from the same patient and generation of reproducible data that can be compared between time points to evaluate potential treatment effects.
疲劳是一种常见且使人衰弱的状况,影响着大多数癌症患者。迄今为止,疲劳的特征仍不明确,尚无客观测量该状况严重程度的诊断测试。在此,我们描述了一种优化方法,用于评估从疲劳癌症患者采集的外周血单个核细胞(PBMC)的线粒体功能。使用紧凑的细胞外通量系统并顺序注射呼吸抑制剂,我们通过测量基础线粒体呼吸、备用呼吸能力和能量表型来检查PBMC线粒体功能状态,能量表型描述了应对压力的首选能量途径。使用标准静脉穿刺术在临床环境中很容易获得新鲜的PBMC。本方案中描述的整个检测可在不到4小时内完成,无需复杂的生化技术。此外,我们描述了一种归一化方法,这对于获得可重复的数据是必要的。所呈现的简单程序和归一化方法允许从同一患者重复采集样本,并生成可在不同时间点进行比较以评估潜在治疗效果的可重复数据。