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A new method for ABO genotyping using fluorescence melting curve analysis based on peptide nucleic acid probes

机译:基于肽核酸探针的荧光解链曲线分析ABO基因分型的新方法

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ABO genotyping has been routinely used to identify suspects or unknown remains in crime investigations. Probe-based fluorescence melting curve analysis (FMCA) is a powerful tool for mutation detection and is based on melting temperature shifts due to thermal denaturation. In the present study, we developed a new method for ABO genotyping using peptide nucleic acid (PNA) probe-based FMCA. This method allowed for the simultaneous detection of three single nucleotide polymorphism (SNP) sites in the ABO gene (nucleotide positions 261, 526, and 803) and the determination of 14 ABO genotypes (A/A, A/O01 or A/O02, A/O03, B/B, B/O01 or B/O02, B/O03, O01/O01 or O01/O02 or O02/O02, O01/O03 or O02/O03, O03/O03, A/B, cis-AB01/A, cis-AB01/B, cis-AB01/O01 or cis-AB01/O02, and cis-AB01/cis-AB01). Using this method, we analyzed 80 samples and successfully identified ABO genotypes (A/A [n = 5], A/O01 or A/O02 [n = 23], B/B [n = 3], B/O01 or B/O02 [n = 18], A/B [n = 9], O01/O01 or O01/O02 or O02/O02 [n = 20], cis-AB01/A [n = 1], and cis-AB01/O01 or cis-AB01/O02 [n = 1]). In addition, all steps in the method, including polymerase chain reaction, PNA probe hybridization, and FMCA, could be performed in one single closed tube in less than 3 h. Since no processing or separation steps were required during analysis, this method was more convenient and rapid than traditional methods and reduced the risk of contamination. Thus, this method may be an effective and helpful tool in forensic investigations. (C) 2015 Elsevier Ireland Ltd. All rights reserved.
机译:ABO基因分型通常用于在犯罪调查中识别嫌疑犯或未知遗骸。基于探针的荧光熔解曲线分析(FMCA)是用于突变检测的强大工具,其基于热变性导致的熔解温度变化。在本研究中,我们开发了一种基于肽核酸(PNA)探针的FMCA进行ABO基因分型的新方法。这种方法可以同时检测ABO基因中的三个单核苷酸多态性(SNP)位点(核苷酸分别位于261、526和803位),并可以确定14种ABO基因型(A / A,A / O01或A / O02, A / O03,B / B,B / O01或B / O02,B / O03,O01 / O01或O01 / O02或O02 / O02,O01 / O03或O02 / O03,O03 / O03,A / B,顺式AB01 / A,顺式AB01 / B,顺式AB01 / O01或顺式AB01 / O02和顺式AB01 /顺式AB01)。使用这种方法,我们分析了80个样本并成功识别了ABO基因型(A / A [n = 5],A / O01或A / O02 [n = 23],B / B [n = 3],B / O01或B / O02 [n = 18],A / B [n = 9],O01 / O01或O01 / O02或O02 / O02 [n = 20],顺式AB01 / A [n = 1]和顺式AB01 / O01或顺式AB01 / O02 [n = 1])。此外,该方法的所有步骤,包括聚合酶链反应,PNA探针杂交和FMCA,都可以在一个封闭的管中进行,时间少于3小时。由于在分析过程中不需要处理或分离步骤,因此该方法比传统方法更方便,更快捷,并减少了污染的风险。因此,该方法可能是法医调查的有效和有用的工具。 (C)2015 Elsevier Ireland Ltd.保留所有权利。

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