Chemical Sciences Division, Material Measurement Laboratory, National Institute of Standards and Technology, 100 Bureau Drive, Stop 8390, Gaithersburg, MD, 20899-8390, USA.
Biomolecular Measurement Division, Material Measurement Laboratory, National Institute of Standards and Technology, 100 Bureau Drive, Stop 8314, Gaithersburg, MD, 20899-8314, USA.
Anal Bioanal Chem. 2018 May;410(12):2879-2887. doi: 10.1007/s00216-018-0982-1. Epub 2018 Mar 19.
The highly multiplexed polymerase chain reaction (PCR) assays used for forensic human identification perform best when used with an accurately determined quantity of input DNA. To help ensure the reliable performance of these assays, we are developing a certified reference material (CRM) for calibrating human genomic DNA working standards. To enable sharing information over time and place, CRMs must provide accurate and stable values that are metrologically traceable to a common reference. We have shown that droplet digital PCR (ddPCR) limiting dilution end-point measurements of the concentration of DNA copies per volume of sample can be traceably linked to the International System of Units (SI). Unlike values assigned using conventional relationships between ultraviolet absorbance and DNA mass concentration, entity-based ddPCR measurements are expected to be stable over time. However, the forensic community expects DNA quantity to be stated in terms of mass concentration rather than entity concentration. The transformation can be accomplished given SI-traceable values and uncertainties for the number of nucleotide bases per human haploid genome equivalent (HHGE) and the average molar mass of a nucleotide monomer in the DNA polymer. This report presents the considerations required to establish the metrological traceability of ddPCR-based mass concentration estimates of human nuclear DNA. Graphical abstract The roots of metrological traceability for human nuclear DNA mass concentration results. Values for the factors in blue must be established experimentally. Values for the factors in red have been established from authoritative source materials. HHGE stands for "haploid human genome equivalent"; there are two HHGE per diploid human genome.
用于法医人类鉴定的高度多重聚合酶链反应 (PCR) 分析在使用准确确定数量的输入 DNA 时效果最佳。为了帮助确保这些分析的可靠性能,我们正在开发一种用于校准人类基因组 DNA 工作标准的认证参考材料 (CRM)。为了能够在时间和地点上共享信息,CRM 必须提供准确且稳定的值,这些值与共同参考标准具有可追溯性。我们已经证明,液滴数字 PCR (ddPCR) 对样品体积中 DNA 拷贝浓度的限制稀释终点测量可以与国际单位制 (SI) 可追溯地联系起来。与使用紫外线吸光度和 DNA 质量浓度之间的常规关系分配的值不同,基于实体的 ddPCR 测量预计会随着时间的推移而稳定。然而,法医界希望以质量浓度而不是实体浓度来表示 DNA 数量。如果有 SI 可追溯的值以及每个人类单倍体基因组当量 (HHGE) 的核苷酸基数和 DNA 聚合体中单核苷酸单体的平均摩尔质量的不确定度,就可以完成转换。本报告介绍了建立基于 ddPCR 的人类核 DNA 质量浓度估计值的计量可追溯性所需的考虑因素。 图形摘要 人类核 DNA 质量浓度结果计量可追溯性的根源。蓝色因素的值必须通过实验确定。红色因素的值已从权威来源材料中确定。HHGE 代表“单倍体人类基因组当量”;每个二倍体人类基因组有两个 HHGE。