基础医学与临床 ›› 2018, Vol. 38 ›› Issue (11): 1577-1582.

• 技术与方法 • 上一篇    下一篇

无创性免核酸提取的多重SNP基因分型技术

赵烨1,赵亚玲1,周军1,郑直2   

  1. 1. 北京协和医学院基础所
    2. 中国医学科学院
  • 收稿日期:2018-07-11 修回日期:2018-09-20 出版日期:2018-11-05 发布日期:2018-11-22
  • 通讯作者: 郑直 E-mail:zhizheng100@126.com
  • 基金资助:
    国家自然科学基金

Multiplex SNP genotyping technology without nucleic acid extraction for noninvasive samples

  • Received:2018-07-11 Revised:2018-09-20 Online:2018-11-05 Published:2018-11-22

摘要: 目的 介绍一种适用于无创性样品免核酸提取的样品前处理方法,结合高通量基因分型技术,为大规模流行病学监测及遗传学分析提供新的技术手段。方法 无需核酸提取,将唾液、拭子等无创性样品直接裂解后置于预先包被了捕获探针的孔内,通过杂交洗涤捕获靶 DNA后进行多重SNP分型检测,以G6PD基因23个SNP为应用对象,探索反应条件,并对其分型结果的准确性,重复性及可靠性进行评价。结果 建立了适用于高通量基因分型技术的特殊样品处理方法,其检测结果的准确度优于传统的以血液为样品的iPLEX方法,重复性较好、可靠性高。40 μl唾液或1个口腔拭子样本足够进行2个检测。36小时内(手工操作时间约2小时)可完成384个样品检测分析。结论 该方法在MALDI-TOF基因分型技术的分析前样品选择和处理方面进行了核心技术创新,简便高效且节约成本,为大规模基因分型筛查提供了可靠、准确、灵敏的技术方向。

关键词: 无创性样品, 核酸提取, SNP基因分型

Abstract: Objective To introduce a nucleic acid extraction-free processing method for non-invasive samples, combining with high throughput genotyping technology, for large-scale epidemiological monitoring and genetic analysis. Methods Instead of nucleic acid extraction, we lysed saliva/ buccal swabs and captured the target DNA directly to 96-well plate by sandwich hybridization using multiple oligo probes with universal tail sequences. We tested the feasibility of the new assay for saliva and buccal swabs, and evaluated the accuracy,repeatability and reliability by comparing with commercial multiplex SNP assay (iPLEX), for the detection of 23G6PD gene variants known to be at risk for primaquine-induced hemolysis in antimalarial therapy Results In this study, the treatment of non invasive samples was applied to high throughput genotyping, The accuracy of the results was 100% concordant with sequencing ,and better than that of the traditional iPLEX method with blood samples. The results also show that the repeatability and reliability is good. A typical 40 μl saliva or one buccal swab sample is sufficient for running 2 assays. A 384-samples can be processed from sample to result in a 36-hour workflow, with a hands-on time of 2 hours. Conclusions This study represents an efficient and cost-effective approach to multiplex SNP genotyping at population level. It’s among the first to demonstrate saliva and buccal swab’s role for accurate, sensitive and high-throughput DNA analysis, providing a more feasible solution for large scale, preemptive genotyping.

Key words: noninvasive samples, nucleic acid extraction , SNP genotyping

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