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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >A Fluorescence Sensing Method with Reduced DNA Typing and Low-Cost Instrumentation for Detection of Sample Tampering Cases in Urinalysis
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A Fluorescence Sensing Method with Reduced DNA Typing and Low-Cost Instrumentation for Detection of Sample Tampering Cases in Urinalysis

机译:一种荧光传感方法,具有降低DNA键入和低成本仪器,用于检测尿液分析中的样品篡改案例

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摘要

This work presents a method to unequivocally detect urine sample tampering in cases where integrity of the sample needs to be verified prior to urinalysis. The technique involves the detection of distinct patterns of a triplex short tandem repeats system in DNA extracted from human urine. The analysis is realized with single-dye fluorescence detection and using a regular smartphone camera. The experimental results had demonstrated the efficacy of the analytical approach to obtaining distinct profiles of amplicons in urine from different sample providers. Reproducibility tests with fresh and stored urine have revealed a maximum variation in the profiles within an interval of 5 to 9%. Cases of urine sample tampering via mixture were simulated in the study, and the experiments have identified patterns of mixed genotypes from dual mixtures of urine samples. Moreover, sample adulteration by mixing a non-human fluid with urine in a volume ratio over 25% can be detected. The low cost of the approach is accompanied by the compatibility of the technique to use with different DNA sample preparation protocols and PCR instrumentation. Furthermore, the possibility of realizing the method in an integrated microchip system open great perspectives to conducting sample integrity tests at the site of urine sample reception and/or at resource-limited settings.
机译:该作品提出了一种方法,以便在尿液分析之前需要验证样品的完整性的情况下占用的尿样篡改。该技术涉及检测从人尿中提取的DNA中的三链短串联重复系统的不同模式。通过单染料荧光检测和使用常规智能手机相机来实现分析。实验结果表明了分析方法从不同样品提供商中获得尿液中扩增子明显曲线的功效。新鲜和储存尿液的再现性试验揭示了曲线在5至9%的间隔内的最大变化。在研究中模拟了通过混合物篡改尿液样品的病例,实验已经确定了来自尿液样品的双重混合物的混合基因型模式。此外,可以检测通过将非人流体与体积比中的尿液混合超过25%的尿液中的样品掺杂。该方法的低成本伴随着该技术与不同DNA样品制备方案和PCR仪器一起使用的兼容性。此外,在集成的微芯片系统中实现方法的可能性在尿液样本接收点和/或资源限制的环境下进行样本完整性测试,打开很大的观点。

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