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A novel high-throughput molecular counting method with single base-pair resolution enables accurate single-gene NIPT

机译:具有单碱基对分辨率的新型高通量分子计数方法可实现准确的单基因NIPT

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摘要

Next-generation DNA sequencing is currently limited by an inability to accurately count the number of input DNA molecules. Molecular counting is particularly needed when accurate quantification is required for diagnostic purposes, such as in single gene non-invasive prenatal testing (sgNIPT) and liquid biopsy. We developed Quantitative Counting Template (QCT) molecular counting to reconstruct the number of input DNA molecules using sequencing data. We then used QCT molecular counting to develop sgNIPTs of sickle cell disease, cystic fibrosis, spinal muscular atrophy, alpha-thalassemia, and beta-thalassemia. The analytical sensitivity and specificity of sgNIPT was >98% and >99%, respectively. Validation of sgNIPTs was further performed with maternal blood samples collected during pregnancy, and sgNIPTs were 100% concordant with newborn follow-up.
机译:当前,下一代DNA测序受到无法准确计算输入DNA分子数量的限制。当出于诊断目的需要准确定量时,例如在单基因非侵入性产前检测(sgNIPT)和液体活检中,特别需要分子计数。我们开发了定量计数模板(QCT)分子计数,以使用测序数据重建输入DNA分子的数量。然后,我们使用QCT分子计数来开发镰状细胞病,囊性纤维化,脊髓性肌萎缩症,α地中海贫血和β地中海贫血的sgNIPT。 sgNIPT的分析灵敏度和特异性分别> 98%和> 99%。 sgNIPTs的验证进一步用怀孕期间收集的母亲血样进行,并且sgNIPTs与新生儿随访100%一致。

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