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Accurate Dystrophin Quantification in Mouse Tissue; Identification of New and Evaluation of Existing Methods

机译:精确的营养不良蛋白在小鼠组织中定量; 鉴定现有方法的新和评价

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摘要

Duchenne muscular dystrophy (DMD) is a progressive muscle-wasting disorder primarily affecting males. This disorder is caused by mutations in the DMD gene that abolish dystrophin protein function. Many therapeutic approaches for DMD aim at recovery of the dystrophin protein in muscle fibers of affected patients, rendering accurate dystrophin quantification important. Several methods have been reported to detect and quantify dystrophin restoration in preclinical and clinical trials. We here evaluated the applicability of dystrophin specific enzyme-linked immunosorbent assays (ELISA) and a TaqMan protein assay, benchmarking them against Western blotting analysis. Despite numerous optimization attempts, in our hands the background signals in the ELISA and TaqMan protein assays were too high to allow dystrophin quantification. By contrast, the Western blot approach was able to detect dystrophin levels as low as 0.2% in a reproducible manner. We provide a Western blot protocol that allows sensitive and accurate dystrophin quantification in preclinical studies.
机译:Duchenne肌肉营养不良(DMD)是一种主要影响男性的进步肌肉浪费疾病。这种疾病是由DMD基因中的突变引起的,所述DMD基因在废除营养不良蛋白蛋白质功能。 DMD的许多治疗方法旨在恢复受影响患者的肌肉纤维中的肌纤维蛋白质,呈现准确的营养不良素量化重要。据报道,几种方法是在临床前和临床试验中检测和量化肌营素恢复。我们在这里评估了肌营养蛋白特异性酶联免疫吸附测定(ELISA)和Taqman蛋白质测定的适用性,以反对Western Blotting分析。尽管尝试了许多优化尝试,但在我们手中,ELISA和Taqman蛋白质测定中的背景信号太高而不能允许营养不良蛋白定量。相比之下,蛋白质印迹方法能够以可重复的方式检测低至0.2%的营养不良素水平。我们提供一种免疫印迹协议,可在临床前研究中允许敏感和准确的营养蛋白定量。

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