Shibayama Sachie, Osumi Yukiko, Takatsu Akiko, Kato Megumi
National Metrology Institute of Japan (NMIJ), National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Ibaraki, Japan.
Anal Bioanal Chem. 2024 Sep;416(23):5049-5058. doi: 10.1007/s00216-024-05447-x. Epub 2024 Jul 24.
Reverse transcription-digital PCR (RT-dPCR) is attracting attention as a method that enables SI-traceable RNA quantification without calibration, but its accuracy and bias have not been thoroughly studied. In this study, the accurate quantification of RNA by the RT-dPCR method was investigated using NMIJ CRM 6204-b, an RNA certified reference material whose certified value was assigned by orthogonal chemical measurement methods. Moreover, a two-step RT-dPCR method was adopted to examine in detail the conditions for the RT reaction process, which was expected to be the major uncertainty component in the RT-dPCR measurement. Optimization experiments revealed that the type of reverse transcriptase, the concentration of template RNA, and the type and concentration of primers in the RT reaction affected the value quantified by RT-dPCR. Under the optimal conditions, the value quantified by RT-dPCR, 76.4 ng/μL ± 6.7 ng/μL (the quantified value ± expanded uncertainty (k = 2)), was consistent with the certified value, 68.2 ng/μL ± 5.8 ng/μL, of NMIJ CRM 6204-b RNA 1000-A within the expanded uncertainty. From the results of the uncertainty evaluation, the relative combined uncertainty of the RT-dPCR method was 4.42%, and the major uncertainty components in the RT-dPCR method were the preparation of RT solution (3.68%), the inter-day difference (1.80%), and the RT reaction (1.30%). Together, the results suggested that the contribution of the RT reaction process to the total uncertainty was greater than that of the dPCR process.
逆转录数字PCR(RT-dPCR)作为一种无需校准即可实现SI可溯源RNA定量的方法正受到关注,但其准确性和偏差尚未得到充分研究。在本研究中,使用NMIJ CRM 6204-b(一种通过正交化学测量方法指定认证值的RNA认证参考物质)研究了RT-dPCR方法对RNA的准确定量。此外,采用两步RT-dPCR方法详细研究了RT反应过程的条件,该过程预计是RT-dPCR测量中的主要不确定因素。优化实验表明,逆转录酶的类型、模板RNA的浓度以及RT反应中引物的类型和浓度会影响RT-dPCR定量的值。在最佳条件下,RT-dPCR定量的值为76.4 ng/μL±6.7 ng/μL(定量值±扩展不确定度(k=2)),与NMIJ CRM 6204-b RNA 1000-A的认证值68.2 ng/μL±5.8 ng/μL在扩展不确定度范围内一致。从不确定度评估结果来看,RT-dPCR方法的相对合成不确定度为4.42%,RT-dPCR方法中的主要不确定因素是RT溶液的制备(3.68%)、日间差异(1.80%)和RT反应(1.30%)。总之,结果表明RT反应过程对总不确定度的贡献大于dPCR过程。