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High-Throughput Assay to Measure Oxygen Consumption in Digitonin-Permeabilized Cells of Patients with Mitochondrial Disorders

机译:高通量测定法测量线粒体疾病患者的洋地黄素透化细胞中的耗氧量

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摘要

Muscle biopsy analysis is regarded as the gold standard in diagnostic workups of patients with suspected mitochondrial disorders. Analysis of cultured fibroblasts can provide important additional diagnostic information. The measurement of individual OXPHOS complexes does not always provide sufficient information about the functional state of the complete mitochondrial energy-generating system. Thus, we optimized a high-throughput fluorescence-based methodology for oxygen consumption analysis in patient-derived cells. We analyzed mitochondrial respiration in digitonin-permeabilized cells in the presence of a substrate mix containing pyruvate and malate, using a phosphorescent probe, 96-well plates, and a fluorescence plate reader. In control fibroblasts, we observed clear stimulation by ADP of the pyruvate + malate- driven respiration. Known inhibitors of the OXPHOS system and the Krebs cycle significantly reduced respiration. In patient fibroblasts with different OXPHOS deficiencies, ADP-stimulated respiratory activity was decreased in comparison to control cells. In several patients with reduced ATP production rate in muscle tissue but with normal OXPHOS enzyme activities, the fibroblasts displayed reduced respiratory activity. Finally, we observed a clear difference between control and complex I- deficient transmitochondrial cybrid cells. These results confirm the validity of the assay as a high-throughput screening method for mitochondrial function in digitonin-permeabilized cells. The assay allows primary and secondary mitochondrial abnormalities in muscle to be differentiated, which is of great importance with respect to counseling, and also will facilitate the search for new genetic defects that lead to mitochondrial disease.
机译:肌肉活检分析被认为是诊断线粒体疾病患者诊断检查的金标准。培养的成纤维细胞的分析可以提供重要的附加诊断信息。单独的OXPHOS复合物的测量并不总是提供有关完整线粒体能量产生系统功能状态的足够信息。因此,我们优化了基于高通量荧光的方法,用于患者来源细胞的耗氧分析。我们使用磷光探针,96孔板和荧光板读数器,在含有丙酮酸和苹果酸的底物混合物存在的情况下,分析了在经过洋地黄酮渗透的细胞中的线粒体呼吸作用。在对照成纤维细胞中,我们观察到丙酮酸+苹果酸驱动的呼吸被ADP明显刺激。已知的OXPHOS系统抑制剂和克雷布斯循环抑制剂显着降低了呼吸。在具有不同OXPHOS缺陷的患者成纤维细胞中,与对照细胞相比,ADP刺激的呼吸活性降低。在几例肌肉组织中ATP产生速率降低但OXPHOS酶活性正常的患者中,成纤维细胞显示出呼吸活性降低。最后,我们观察到对照和复杂的I型缺陷型线粒体杂交细胞之间的明显差异。这些结果证实了该测定作为一种高通量筛选方法的有效性,该方法可用于线粒体通透性细胞的线粒体功能。该测定法可以区分肌肉的原发性和继发性线粒体异常,这在咨询方面非常重要,也将有助于寻找导致线粒体疾病的新遗传缺陷。

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    《Clinical Chemistry》 |2010年第3期|p.424-431|共8页
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    An I. Jonckheere,1 Merei Huigsloot,1 Antoon J.M. Janssen,1 Antonia J.H. Kappen,1 Jan A.M. Smeitink,1 and Richard J.T. Rodenburg1*1 Laboratory of Pediatrics and Neurology, Department of Pediatrics, Nijmegen Center for Mitochondrial Disorders, Radboud University Nijmegen Medical Center, Nijmegen, the Netherlands.* Address correspondence to this author at: Radboud University Nijmegen Medical Center, Nijmegen Center for Mitochondrial Disorders, Laboratory of Pediatrics and Neurology, PO Box 9101, 6500 GA Nijmegen, the Netherlands. Fax +31-24-361-8900, e-mail r.rodenburg@cukz.umcn.nl.Received June 8, 2009, accepted December 14, 2009.Previously published online at DOI: 10.1373/clinchem.2009.131441,;

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