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首页> 外文期刊>Molecular and Cellular Probes: The Location, Diagnosis and Monitoring of Disease by Specific Molecules and Cell Lines >TotalPlex gene amplification using bulging primers for pharmacogenetic analysis of acute lymphoblastic leukemia.
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TotalPlex gene amplification using bulging primers for pharmacogenetic analysis of acute lymphoblastic leukemia.

机译:使用凸起引物扩增TotalPlex基因,用于急性淋巴细胞白血病的药物遗传学分析。

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Genetic polymorphism among patients with acute lymphoblastic leukemia (ALL) is an important factor in the effectiveness and toxicity of anti-leukemic drugs. Genotyping of various polymorphisms that impact the outcome of anti-leukemic drug therapy (pharmacogenetics) presents an attractive approach for developing individualized therapy. We developed an easy and accurate method of analyzing multiple genes using a small amount of DNA, which we termed TotalPlex amplification. We used 16 pairs of specific bulging specific primers (SBS primers) for simultaneous amplification of 16 loci in a single PCR tube. Sixteen single nucleotide polymorphisms (SNPs) (CYP3A4*1B A>G, CYP3A5*3 G>A, GSTP1 313 A>G, GSTM1 deletion, GSTT1 deletion, MDR1 exon 21 G>T/A, MDR1 exon 26 C>T, MTHFR 677 C>T, MTHFR 1298 A>C, NR3C1 1088 A>G, RFC 80 G>A, TPMT 238 G>C, TPMT 460 G>A, TPMT 719 A>G, VDR intron 8 G>A, VDR FokI T>C) that have been implicated in the pharmacogenetics of ALL therapy were analyzed by TotalPlex amplification and SNP genotyping. We successfully amplified specific gene fragments using 16 pairs of primers in one PCR reaction tube with minimal spurious amplification products using TotalPlex amplification coupled to a multiplexed bead array detection system. The genotypes of 16 loci from 34 different genomic DNA (gDNA) samples derived using the TotalPlex system were consistent with the results of several standard genotyping methods, including automatic sequencing, PCR restriction fragment length polymorphism (RFLP) analysis, PCR, and allele-specific PCR (AS-PCR). Thus, the TotalPlex system represents a useful method of amplification that can improve the time, cost, and sample size required for high-throughput pharmacogenetic analysis of SNPs.
机译:急性淋巴细胞白血病(ALL)患者的基因多态性是抗白血病药物有效性和毒性的重要因素。影响抗白血病药物治疗(药物遗传学)结果的各种多态性的基因分型为开发个体化治疗提供了一种有吸引力的方法。我们开发了一种使用少量DNA来分析多个基因的简便准确的方法,我们称之为TotalPlex扩增。我们在单个PCR管中使用16对特异性凸出特异性引物(SBS引物)同时扩增16个基因座。十六个单核苷酸多态性(SNPs)(CYP3A4 * 1B A> G,CYP3A5 * 3 G> A,GSTP1 313 A> G,GSTM1缺失,GSTT1缺失,MDR1外显子21 G> T / A,MDR1外显子26 C> T, MTHFR 677 C> T,MTHFR 1298 A> C,NR3C1 1088 A> G,RFC 80 G> A,TPMT 238 G> C,TPMT 460 G> A,TPMT 719 A> G,VDR内含子8 G> A,VDR通过TotalPlex扩增和SNP基因分型来分析与ALL治疗的药物遗传学有关的FokITT> C)。我们在一个PCR反应管中使用16对引物成功地扩增了特定的基因片段,并使用TotalPlex扩增与多重磁珠阵列检测系统偶联了最少的杂散扩增产物。使用TotalPlex系统从34个不同基因组DNA(gDNA)样品中提取的16个基因座的基因型与几种标准基因分型方法的结果一致,包括自动测序,PCR限制性片段长度多态性(RFLP)分析,PCR和等位基因特异性PCR(AS-PCR)。因此,TotalPlex系统代表了一种有用的扩增方法,可以改善SNP高通量药物遗传学分析所需的时间,成本和样本量。

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