Sun Lei, Fan Zuqian, Long Ju, Weng Xunjin, Tang Weijun, Pang Wanrong
Laboratory of Medical Genetics, Qinzhou Maternal and Child Health Hospital, Guangxi 535005, PR China.
Laboratory of Medical Genetics, Qinzhou Maternal and Child Health Hospital, Guangxi 535099, PR China.
Gene. 2017 Sep 5;627:72-78. doi: 10.1016/j.gene.2017.06.014. Epub 2017 Jun 9.
In our previous studies, the rapid diagnosis of aneuploidy has been achieved using the segmental duplication molecular markers-based SD-QF-PCR technique. However, it is also insufficient due to the drawbacks including less detection loci and incompetence in single-tube detection.
In this paper, we developed 13 new segmental duplications as molecular markers, as well as designed 13 pairs of primers and 1 fluorescence-labeled universal primer, which could detect chromosome aneuploidies in one PCR tube.
Two hundred and thirty samples were detected using SD-QF-PCR, the samples were collected from individuals with trisomy 21 (n=16); trisomy 18 (n=4); trisomy 13 (n=3); 45,X (n=3); 47,XXY (n=2); 47,XYY (n=2); suspected mosaic 46,XX/46,XY (n=2); and unaffected controls (n=198).
The detection results of SD-QF-PCR were consistent with those of conventional karyotype analysis. SD-QF-PCR based on the newly developed segmental duplications enables the single-tube and multi-locus simultaneous detection on the number of chromosomes 13, 18, 21, X and Y. Therefore, this technique offers a new alternative for the diagnosis of chromosome aneuploidies.
在我们之前的研究中,已利用基于节段性重复分子标记的SD-QF-PCR技术实现了非整倍体的快速诊断。然而,由于检测位点较少和单管检测能力不足等缺点,该技术也存在局限性。
在本文中,我们开发了13个新的节段性重复作为分子标记,并设计了13对引物和1个荧光标记通用引物,可在一个PCR管中检测染色体非整倍体。
使用SD-QF-PCR检测了230个样本,这些样本来自21三体(n=16)、18三体(n=4)、13三体(n=3)患者,45,X(n=3)、47,XXY(n=2)、47,XYY(n=2)个体,疑似46,XX/46,XY嵌合体(n=2)以及未受影响的对照(n=198)。
SD-QF-PCR的检测结果与传统核型分析结果一致。基于新开发的节段性重复的SD-QF-PCR能够在单管中对13、18、21、X和Y染色体数目进行多位点同时检测。因此,该技术为染色体非整倍体的诊断提供了一种新的选择。