Jacobs M V, Walboomers J M, van Beek J, Voorhorst F J, Verheijen R H, Meijer C J, van den Brule A J, Helmerhorst T J, Snijders P J
Department of Pathology, University Hospital Vrije Universiteit, Amsterdam, The Netherlands.
Br J Cancer. 1999 Sep;81(1):114-21. doi: 10.1038/sj.bjc.6690659.
A quantitative polymerase chain reaction-enzyme immunoassay (Q-PCR-EIA) was developed to measure the amount of human papillomavirus (HPV) 16 DNA per genome equivalent in cervical scrapings. The quantitative approach was based on a combined competitive PCR for both HPV 16, using the general primer GP5+/6+ PCR, and beta-globin DNA. The two competitive PCRs involve co-amplification of target sequences and exogenously added DNA constructs carrying a rearranged 30 bp sequence in the probe-binding region. The accuracy of quantification by combining the two competitive PCR assays was validated on mixtures of HPV 16 containing cervical cancer cells of CaSki and SiHa cell lines. Comparison of this fully quantitative PCR assay with two semi-quantitative HPV PCR assays on a series of crude cell suspensions from HPV 16 containing cervical scrapings revealed remarkable differences in the calculated relative HPV load between samples. We found evidence that correction for both intertube variations in PCR efficiency and number of input cells/integrity of DNA significantly influence the outcome of studies on viral DNA load in crude cell suspensions of cervical scrapings. Therefore, accurate measurements on viral DNA load in cervical scrapings require corrections for these phenomena, which can be achieved by application of this fully quantitative approach.
开发了一种定量聚合酶链反应 - 酶免疫测定法(Q-PCR-EIA),用于测量宫颈刮片中每基因组当量的人乳头瘤病毒(HPV)16 DNA的量。该定量方法基于对HPV 16的联合竞争性PCR,使用通用引物GP5 + / 6 + PCR和β-珠蛋白DNA。这两种竞争性PCR涉及靶序列与在探针结合区域携带重排的30 bp序列的外源添加DNA构建体的共扩增。通过结合两种竞争性PCR测定法进行定量的准确性在含有CaSki和SiHa细胞系的宫颈癌细胞的HPV 16混合物上得到验证。将这种完全定量PCR测定法与两种半定量HPV PCR测定法在一系列来自含有HPV 16的宫颈刮片的粗细胞悬液上进行比较,发现在计算的样品间相对HPV载量上存在显著差异。我们发现有证据表明,对PCR效率的管间差异以及输入细胞数/ DNA完整性进行校正,会显著影响宫颈刮片粗细胞悬液中病毒DNA载量研究的结果。因此,对宫颈刮片中病毒DNA载量进行准确测量需要对这些现象进行校正,这可以通过应用这种完全定量方法来实现。