Non-invasive prenatal diagnosis of paternally inherited disorders from maternal plasma: detection of NF1 and CFTR mutations using droplet digital PCR

数字聚合酶链反应 产前诊断 胎儿游离DNA 基因型 等位基因 突变 生物 遗传学 点突变 胎儿 聚合酶链反应 医学 生物信息学 怀孕 基因
作者
Aurélia Gruber,Mathilde Pacault,Laïla El Khattabi,Nicolas Vaucouleur,Lucie Orhant,Thierry Bienvenu,Emmanuelle Girodon,Dominique Vidaud,France Leturcq,Cathérine Costa,Franck Letourneur,O. Anselem,Vassilis Tsatsaris,François Goffinet,Géraldine Viot,Michel Vidaud,Juliette Nectoux
出处
期刊:Clinical Chemistry and Laboratory Medicine [De Gruyter]
卷期号:56 (5): 728-738 被引量:31
标识
DOI:10.1515/cclm-2017-0689
摘要

Abstract Background: To limit risks of miscarriages associated with invasive procedures of current prenatal diagnosis practice, we aim to develop a personalized medicine-based protocol for non-invasive prenatal diagnosis (NIPD) of monogenic disorders relying on the detection of paternally inherited mutations in maternal blood using droplet digital PCR (ddPCR). Methods: This study included four couples at risk of transmitting paternal neurofibromatosis type 1 ( NF1 ) mutations and four couples at risk of transmitting compound heterozygous CFTR mutations. NIPD was performed between 8 and 15 weeks of gestation, in parallel to conventional invasive diagnosis. We designed specific hydrolysis probes to detect the paternal mutation and to assess the presence of cell-free fetal DNA by ddPCR. Analytical performances of each assay were determined from paternal sample, an then fetal genotype was inferred from maternal plasma sample. Results: Presence or absence of the paternal mutant allele was correctly determined in all the studied plasma DNA samples. Conclusions: We report an NIPD protocol suitable for implementation in an experienced laboratory of molecular genetics. Our proof-of-principle results point out a high accuracy for early detection of paternal NF1 and CFTR mutations in cell-free DNA, and open new perspectives for extending the technology to NIPD of many other monogenic diseases.
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