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首页> 外文期刊>Neuropediatrics >The Genetic Approach: Next-Generation Sequencing-Based Diagnosis of Congenital and Infantile Myopathies/Muscle Dystrophies
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The Genetic Approach: Next-Generation Sequencing-Based Diagnosis of Congenital and Infantile Myopathies/Muscle Dystrophies

机译:遗传方法:基于下一代测序的先天性和婴儿病变/肌营养不良的诊断

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摘要

The practical basis for massive parallel sequencing is described to help clinicians in choosing the most adequate diagnostic approach for childhood myopathies. The key quality feature for massive parallel sequencing is the sequence depth (coverage) as a prerequisite for variant identification and quantification of sequence copy numbers. Our experience with a next-generation sequencing gene panel for the analysis of muscular dystrophies/myopathies with infantile or juvenile onset resulted in the identification of pathogenic or likely pathogenic mutations in approximately 41% (of 141 patients), thus leading to a definitive diagnosis. A subset of patients shows an accumulation of excess heterozygous variants that may act as modifiers of the phenotype. Massive parallel sequencing has become a reliable and cost-effective method, but it requires exact clinical, bioptic, and/or radiologic information to evaluate the clinical relevance of possibly pathologic variants.
机译:描述了大规模平行测序的实际基础,以帮助临床医生选择儿童肌病的最适当的诊断方法。 大规模平行测序的关键质量特征是序列深度(覆盖率)作为序列拷贝数的变体识别和量化的先决条件。 我们对具有婴儿或青少年发病的肌营养不良/肌病分析的下一代测序基因面板的经验导致鉴定致病或可能的致病性突变在约41%(141名患者中),从而导致明确的诊断。 患者的一部分显示过量杂合变体的积累,其可以作为表型的改性剂。 巨大的平行测序已成为可靠且经济高效的方法,但它需要确切的临床,生物和/或放射学信息来评估可能的病理变异的临床相关性。

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