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Noninvasive Prenatal Diagnosis of Duchenne Muscular Dystrophy: Comprehensive Genetic Diagnosis in Carrier, Proband, and Fetus
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- Authors
- Advisor
- 김기중
- Major
- 의과대학 의학과
- Issue Date
- 2017-08
- Publisher
- 서울대학교 대학원
- Keywords
- Noninvasive prenatal diagnosis ; Duchenne muscular dystrophy ; cell-free fetal DNA ; massively parallel sequencing
- Description
- 학위논문 (박사)-- 서울대학교 대학원 의과대학 의학과, 2017. 8. 김기중.
- Abstract
- BACKGROUND: Noninvasive prenatal diagnosis of monogenic disorders using maternal plasma and targeted massively parallel sequencing is being investigated actively. We demonstrated previously that comprehensive genetic diagnosis of a Duchenne muscular dystrophy (DMD) patient is feasible using a single targeted sequencing platform. In the present study, we demonstrate the applicability of this approach to carrier detection and noninvasive prenatal diagnosis.
METHODS: Custom solution-based target enrichment was designed to cover the entire DMD region. Targeted massively parallel sequencing was performed using genomic DNA from four mother and proband pairs to test whether carrier status could be detected reliably. Maternal plasma DNA at varying gestational weeks was collected from the same families and sequenced using the same targeted-platform to predict the inheritance of the DMD mutation by their fetus. Overrepresentation of an inherited allele was determined by comparing the allele fraction of two phased haplotypes after examining and correcting for the recombination event.
RESULTS: The carrier status of deletion/duplication and point mutations was detected reliably through using a single targeted massively parallel sequencing platform. Whether the fetus had inherited the DMD mutation was predicted correctly in all four families as early as 6 weeks and 5 days of gestation. In one of these, detection of the recombination event and reconstruction of the phased haplotype produced a correct diagnosis.
CONCLUSIONS: Noninvasive prenatal diagnosis of DMD is feasible using a single targeted massively parallel sequencing platform with tiling design.
- Language
- English
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