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Label-Free Fluorescent Copper Nanoclusters for Genotyping of Deletion and Duplication of Duchenne Muscular Dystrophy

机译:用于杜兴肌营养不良的缺失和重复基因分型的无标记荧光铜纳米簇

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摘要

Real applications in clinical diagnosis of label-free fluorescent copper nanoclusters (CuNCs) are demonstrated. Double-strand DNA (dsDNA) can act as an effective template for the formation of CuNCs, which can be used to distinguish the deletion or duplication genotypes of Duchenne muscular dystrophy (DMD) due to different fluorescent intensities. After PCR, the DMD amplicons reacted with copper ion by reduction of ascorbic acid and generated fluorescence. The exons of the DMD gene were taken as the model analytes for genetic diagnosis. In this sensing system, the deletion type does not show fluorescence; on the other hand, the duplication type emits higher fluorescence than normal type. Parameters of this sensing system were optimized, including PCR conditions, levels of copper ion and ascorbate, and reaction time. The DMD-dominated exons 45, 46, and 47 were detected, and the method was applied to six samples of DMD patients. The results were consistent with those of the multiplex ligation-dependent probe amplification method. This strategy was feasible to detect all exons of this disease.
机译:证明了在无标记荧光铜纳米簇(CuNCs)的临床诊断中的实际应用。双链DNA(dsDNA)可以充当CuNCs形成的有效模板,由于荧光强度不同,可用于区分Duchenne肌营养不良(DMD)的缺失或重复基因型。 PCR之后,DMD扩增子通过抗坏血酸的还原与铜离子反应并产生荧光。将DMD基因的外显子作为用于遗传诊断的模型分析物。在该传感系统中,缺失类型不显示荧光;另一方面,复制型发出的荧光要比普通型高。优化了该传感系统的参数,包括PCR条件,铜离子和抗坏血酸的含量以及反应时间。检测到DMD为主的外显子45、46和47,并将该方法应用于六个DMD患者样品。结果与多重连接依赖性探针扩增方法的结果一致。该策略对于检测该疾病的所有外显子是可行的。

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