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首页> 外文期刊>Prenatal Diagnosis >Noninvasive prenatal diagnosis of cobalamin C (cblC) deficiency through target region sequencing of cell‐free DNA in maternal plasma
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Noninvasive prenatal diagnosis of cobalamin C (cblC) deficiency through target region sequencing of cell‐free DNA in maternal plasma

机译:通过母体血浆中无细胞DNA靶区测序的钴胺蛋白C(CBLC)缺乏的非侵入性产前诊断

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摘要

Abstract Objective This study aimed to validate the feasibility of haplotype‐based noninvasive prenatal diagnosis (NIPD) of cobalamin C (cblC) deficiency. Method This method includes three steps: First, targeted sequencing was performed on 21 families affected by cblC deficiency (including the couples and probands). Second, parental haplotypes linked with the pathogenic variant were determined using the genotypes of trios. Then, the fetal haplotypes were inferred through a parental haplotype assisted hidden Markov model (HMM). The NIPD results were confirmed by using the invasive procedures. Results Twenty‐one fetal genotypes were successfully inferred by NIPD including three compound heterozygotes with cblC deficiency, nine heterozygote carriers of cblC deficiency, and nine normal fetuses. The NIPD results were confirmed using the invasive procedures with 100% concordant rate. Conclusion This result has shown that haplotype‐based NIPD of cblC deficiency has high concordant rate and indicated potential clinical utility as a pregnancy diagnosis method for high‐risk carrier couples.
机译:摘要目的本研究旨在验证钴胺蛋白C(CBLC)缺乏的单倍型非侵入性产前诊断(NIPD)的可行性。方法该方法包括三个步骤:首先,对受CBLC缺乏影响的21个家族进行靶向测序(包括夫妇和兼容的夫妇)。其次,使用TRIOS的基因型测定与致病变体连接的亲本单倍型。然后,通过父母单倍型辅助隐藏的隐马尔可夫模型(HMM)推断胎儿单倍型。通过使用侵入性程序确认NIPD结果。结果NIPD成功推断出二十一种胎儿基因型,包括具有CBLC缺乏的三种化合物杂合子,CBLC缺乏的九个杂合子载体和九个正常胎儿。使用100%齐升率的侵入手术确认NIPD结果。结论该结果表明,CBLC缺乏的单倍型NIPD具有高度协调率,并指出潜在的临床效用作为高风险载体耦合的妊娠诊断方法。

著录项

  • 来源
    《Prenatal Diagnosis》 |2020年第3期|共9页
  • 作者单位

    Xinhua Hospital Shanghai Institute for Pediatric ResearchShanghai Jiao Tong University School of;

    Tianjin Medical LaboratoryBGI‐Tianjin BGI‐ShenzhenTianjin China;

    Tianjin Medical LaboratoryBGI‐Tianjin BGI‐ShenzhenTianjin China;

    Xinhua Hospital Shanghai Institute for Pediatric ResearchShanghai Jiao Tong University School of;

    BGI GenomicsBGI‐ShenzhenShenzhen China;

    Xinhua Hospital Shanghai Institute for Pediatric ResearchShanghai Jiao Tong University School of;

    Tianjin Medical LaboratoryBGI‐Tianjin BGI‐ShenzhenTianjin China;

    BGI GenomicsBGI‐ShenzhenShenzhen China;

    Xinhua Hospital Shanghai Institute for Pediatric ResearchShanghai Jiao Tong University School of;

    Xinhua Hospital Shanghai Institute for Pediatric ResearchShanghai Jiao Tong University School of;

    Xinhua Hospital Shanghai Institute for Pediatric ResearchShanghai Jiao Tong University School of;

    Xinhua Hospital Shanghai Institute for Pediatric ResearchShanghai Jiao Tong University School of;

    Xinhua Hospital Shanghai Institute for Pediatric ResearchShanghai Jiao Tong University School of;

    Tianjin Medical LaboratoryBGI‐Tianjin BGI‐ShenzhenTianjin China;

    Xinhua Hospital Shanghai Institute for Pediatric ResearchShanghai Jiao Tong University School of;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 妇科学;
  • 关键词

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