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Rapid Prenatal Diagnosis of Common Numerical Chromosomal Abnormalities by High-Resolution Melting Analysis of Segmental Duplications

机译:通过节段重复的高分辨率融解分析快速进行产前诊断常见的染色体异常

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摘要

Background: Rapid aneuploidy detection (RAD) methods constitute important complements to karyotyping in prenatal diagnosis. We evaluated the effectiveness of a method called high-resolution melting analysis of segmental duplications (SD-HRM) to serve as an alternative RAD method in prenatal diagnosis of common numerical chromosomal abnormalities (NCAs). Methods: We designed eight primary SD-HRM assays for the detection of chromosomes 13, 18, 21, X, and Y; 50 chorionic villus, 1105 amniotic fluid, and 395 cord blood samples were examined using these eight assays. For diagnosing samples that could not be diagnosed using primary assays, additional assays were designed for each target chromosome. Results: The success rate of eight primary SD-HRM assays ranged from 99.7% to 100%. For the distinguishable analyses, these eight assays attained high diagnostic sensitivities (100%) and specificities (99.9-100%). We differentiated 53 cases of NCAs from 1550 clinical samples; subsequent reference tests revealed that these assays attained 100% clinical sensitivity and specificity. The mosaic ratio of a 45,X/46,XX sample was also precisely calculated. Conclusions: The SD-HRM method was able to effectively detect common NCAs in 1550 prenatal samples. We propose that SD-HRM could serve as an effective alternative option to the currently used prenatal RAD methods.
机译:背景:快速非整倍性检测(RAD)方法是产前诊断中核型分析的重要补充。我们评估了一种称为节段重复的高分辨率熔解分析(SD-HRM)的方法的有效性,该方法可作为常见数字染色体异常(NCA)产前诊断中的替代RAD方法。方法:我们设计了八种主要的SD-HRM检测方法,用于检测13、18、21,X和Y染色体。使用这八种检测方法检查了50个绒毛膜绒毛,1105个羊水和395个脐带血样品。为了诊断无法使用主要检测方法诊断的样品,针对每个目标染色体设计了其他检测方法。结果:八种主要SD-HRM分析的成功率在99.7%至100%之间。对于可区分的分析,这八种分析均获得了较高的诊断灵敏度(100%)和特异性(99.9-100%)。我们从1550份临床样本中区分出53例NCA。随后的参考测试表明,这些测定达到了100%的临床敏感性和特异性。还精确计算了45,X / 46,XX样品的镶嵌比。结论:SD-HRM方法能够有效检测1550个产前样本中的常见NCAs。我们建议SD-HRM可以作为当前使用的产前RAD方法的有效替代方案。

著录项

  • 来源
    《Genetic testing and molecular biomarkers》 |2014年第3期|141-148|共8页
  • 作者单位

    Molecular Diagnostics Laboratory, Department of Medical Genetics, Prenatal Diagnosis Center of Xiamen, Maternal and Child Health Hospital, Xiamen, China;

    Molecular Diagnostics Laboratory, Department of Medical Genetics, Prenatal Diagnosis Center of Xiamen, Maternal and Child Health Hospital, Xiamen, China;

    Department of Obstetrics and Gynecology, Prenatal Diagnosis Center of Xiamen, Maternal and Child Health Hospital, Xiamen, China;

    Department of Obstetrics and Gynecology, Prenatal Diagnosis Center of Xiamen, Maternal and Child Health Hospital, Xiamen, China;

    Molecular Diagnostics Laboratory Department of Medical Genetics Prenatal Diagnosis Center of Xiamen Maternal and Child Health Hospital Xiamen 361003 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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