无细胞胎儿DNA血浆提取和实时聚合酶链反应定量。

Jill L Maron, Kirby L Johnson, Diana W Bianchi
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引用次数: 5

摘要

循环血浆DNA的分离、定量和遗传分析在产前诊断、肿瘤学、器官移植、创伤后监测和传染病等方面具有临床应用价值。最近的技术已经允许从全血、血浆、血清、灰褐色被毛、组织、粪便和尿液中快速分离和纯化DNA。随着实时聚合酶链反应(PCR)扩增技术的出现,提取的DNA不仅可以很容易地识别以帮助临床诊断,而且可以很容易地量化以分析正在进行的临床动态并帮助患者的医学预后。从历史上看,鉴定独特的无细胞胎儿DNA序列依赖于父系特异性Y染色体序列的检测,因为它们相对容易鉴定。然而,任何胎儿独有的DNA序列都有可能被实时PCR扩增和定量。我们的实验室专门从母体血浆中提取胎儿DNA,随后用实时PCR对父系遗传序列(如Y染色体基因SRY)进行定量。从血浆中成功分离和定量该DNA依赖于三种不同的方案:从全血中收集血浆,从无细胞血浆中提取DNA,以及实时PCR扩增和定量SRY序列。
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Cell-free fetal DNA plasma extraction and real-time polymerase chain reaction quantification.

Isolation, quantification, and genetic analysis of circulating plasma DNA have clinical applications in prenatal diagnosis, oncology, organ transplantation, posttrauma monitoring, and infectious disease. Recent technology has allowed the rapid isolation and purification of DNA from whole blood, plasma, serum, buffy coat, tissues, stool, and urine. With the advent of real-time polymerase chain reaction (PCR) amplification, extracted DNA not only can be easily identified to aid in clinical diagnoses, but also can be readily quantified to analyze ongoing clinical dynamics and aid in the medical prognoses of patients. Historically, identification of unique cell-free fetal DNA sequences has relied on the detection of paternally specific Y chromosome sequences owing to their relative ease in identification. However, any DNA sequence that is unique to the fetus has the potential to be amplified and quantified using real-time PCR. Our laboratory specializes in extraction of fetal DNA from maternal plasma with subsequent quantification with real-time PCR of paternally inherited sequences, such as the Y chromosome gene, SRY. The successful isolation and quantification of this DNA from plasma is dependent on three distinct protocols: plasma harvesting from whole blood, DNA extraction from cell-free plasma, and real-time PCR amplification and quantification of the SRY sequence.

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