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首页> 外文期刊>Clinical chemistry and laboratory medicine: CCLM >Evaluation of the Roche Diagnostics LightCycler-Apo B 3500 Mutation Detection Kit.
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Evaluation of the Roche Diagnostics LightCycler-Apo B 3500 Mutation Detection Kit.

机译:罗氏诊断LightCycler-Apo B 3500突变检测试剂盒的评估。

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摘要

Familial defective apolipoprotein (apo) B-100 is an autosomal codominant disorder associated with hypercholesterolemia and an increased risk of coronary artery disease. Two independent mutations affecting the codon 3500 (Arg3500-->Gln and Arg3500-->Trp) have been shown to cause ligand-defective apo B-100. Identification of carriers of these mutations is an important step in the risk stratification of individuals and families with hypercholesterolemia. We evaluated a homogeneous assay for detection of mutations at codon 3500 that combines rapid-cycle PCR with allele-specific fluorescent probe melting profiles for product genotyping. This single-tube analysis is performed on the LightCycler, a microvolume fluorimeter integrated with a thermal cycler. Continuous acquisition of fluorescence data during a melting curve analysis at completion of PCR allows the detection of mutations, as loss of fluorescence occurs in an allele-specific manner. By plotting melting peaks, the three apo B-100 alleles were readily distinguishable. Using this method, genotyping of 32 samples is completed within 40 min without the need for any post-PCR sample manipulation, thereby eliminating the risks of end-product contamination and sample tracking errors. The specific detection of mutations at codon 3500 of the apo B gene on the LightCycler is a rapid and reliable method that is ideally suitable for typing both small and large numbers of samples.
机译:家族性缺陷型载脂蛋白(apo)B-100是与高胆固醇血症和冠心病风险增加相关的常染色体显性疾病。已显示出影响密码子3500的两个独立突变(Arg3500-> Gln和Arg3500-> Trp)引起配体缺陷性载脂蛋白B-100。识别这些突变的携带者是高胆固醇血症个人和家庭风险分层中的重要步骤。我们评估了用于检测密码子3500处突变的均相测定,该测定将快速循环PCR与等位基因特异性荧光探针解链谱相结合以进行产品基因分型。这种单管分析是在LightCycler(与热循环仪集成在一起的微量荧光计)上进行的。 PCR完成后,在熔解曲线分析过程中连续获取荧光数据可检测突变,因为荧光丢失是以等位基因特异性方式发生的。通过绘制熔解峰,可以容易地区分三个apo B-100等位基因。使用这种方法,无需进行任何PCR后样品操作即可在40分钟内完成32个样品的基因分型,从而消除了最终产物污染和样品跟踪错误的风险。在LightCycler上特异性检测apo B基因第3500位密码子处的突变是一种快速而可靠的方法,非常适合分批少量和大量样品。

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