Current State of Method Development for PCR Sample Peparations

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Abstract

The sensitivity, specificity and reproducibility of molecular genetic methods of analysis largely depend on the quality of the preliminary preparation of the analyzed samples. During the sample preparation, the tasks of disinfecting pathogenic material, lysing cell membranes, removing compounds and impurities that inhibit the polymerase chain reaction (PCR), as well as concentrating nucleic acids are solved. The purpose of this work is to select modern approaches to sample preparation for the PCR. Among the variety of different methods of sample preparation, the most widespread are the methods based on chemical lysis of cell membranes using chaotropic compounds, followed by purification of nucleic acids by solid-phase extraction using magnetic particles. This approach is implemented both in commercial kits for manual sample preparation and in various automated systems for the isolation of nucleic acids. The analysis of commercially available stations for the isolation of nucleic acids shows that their technical characteristics are similar: the duration of one isolation cycle is 40–90 minutes; the volume of the analyzed samples is from 0.1 to 2.0 ml; the number of simultaneously processed samples max – 96, min – 8. The method of the nucleic acid isolation is the magnetic particles. The main differences are in the type of analyzed samples, and technologies for lysis of the test material and DNA extraction. Our experience in the use of magnetic particle kits for the isolation of nucleic acids, both in stationary and in field laboratories confirms the effectiveness and reliability of this technology. Further development and improvement of the hardware for such work will, obviously, be aimed at miniaturizing the equipment, developing field portable automatic nucleic acid extraction stations, as well as integrating the process of sample preparation and analysis by PCR in one device
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PCR样品制备方法发展现状
分子遗传学分析方法的灵敏度、特异性和重现性在很大程度上取决于分析样品的前期制备质量。在样品制备过程中,解决了病原物质消毒、裂解细胞膜、去除抑制聚合酶链反应(polymerase chain reaction, PCR)的化合物和杂质、浓缩核酸等任务。这项工作的目的是选择现代的方法来制备PCR的样品。在各种不同的样品制备方法中,最广泛的是利用朝向化合物对细胞膜进行化学裂解的方法,其次是利用磁颗粒固相萃取纯化核酸的方法。该方法既可用于手工样品制备的商业试剂盒,也可用于核酸分离的各种自动化系统。对市售核酸分离站的分析表明,它们的技术特征相似:一个分离周期的持续时间为40-90分钟;所分析样品的体积为0.1 ~ 2.0 ml;同时处理样品的数量最大- 96个,最小- 8个。核酸分离的方法是磁性颗粒。主要区别在于分析样品的类型,以及测试材料的裂解和DNA提取的技术。我们在固定实验室和现场实验室中使用磁粉试剂盒分离核酸的经验证实了该技术的有效性和可靠性。显然,硬件的进一步发展和改进将以设备小型化,开发现场便携式自动核酸提取站,以及将PCR样品制备和分析过程集成在一台设备上为目标
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