Hendrickson E R, Truby T M, Joerger R D, Majarian W R, Ebersole R C
Central Research and Engineering Department, E.I. DuPont Company, Wilmington, DE 19880-0173.
Nucleic Acids Res. 1995 Feb 11;23(3):522-9. doi: 10.1093/nar/23.3.522.
A multianalyte immunoassay for simultaneous detection of three analytes (hTSH, hCG and beta-Gal) has been demonstrated using DNA-labeled antibodies and polymerase chain reaction (PCR) for amplification of assay response. The labeled antibodies were prepared by covalently coupling uniquely designed DNA oligonucleotides to each of the analyte-specific monoclonal antibodies. Each of the DNA oligonucleotide labels contained the same primer sequences to facilitate co-amplification by a single primer pair. Assays were performed using a two-antibody sandwich assay format and a mixture of the three DNA-labeled antibodies. Dose-response relationships for each analyte were demonstrated. Analytes were detected at sensitivities exceeding those of conventional enzyme immunoassays by approximately three orders of magnitude. Detection limits for hTSH, beta-Gal and hCG were respectively 1 x 10(-19), 1 x 10(-17) and 1 x 10(-17) mol. Given the enormous amplification afforded by PCR and the existing capability to differentiate DNA based on size or sequence differences, the use of DNA-labeled antibodies could provide the basis for the simultaneous detection of many analytes at sensitivities greater than those of existing antigen detection systems. These findings in concert with previous reports suggest this hybrid technology could provide a new generation of ultra-sensitive multianalyte immunoassays.
一种用于同时检测三种分析物(人促甲状腺激素、人绒毛膜促性腺激素和β-半乳糖苷酶)的多分析物免疫测定法已得到证实,该方法使用DNA标记抗体和聚合酶链反应(PCR)来放大测定反应。标记抗体是通过将独特设计的DNA寡核苷酸共价偶联到每种分析物特异性单克隆抗体上制备的。每个DNA寡核苷酸标记都包含相同的引物序列,以便于通过单一引物对进行共扩增。使用双抗体夹心测定形式和三种DNA标记抗体的混合物进行测定。展示了每种分析物的剂量反应关系。检测到的分析物灵敏度比传统酶免疫测定法高出约三个数量级。人促甲状腺激素、β-半乳糖苷酶和人绒毛膜促性腺激素的检测限分别为1×10^(-19)、1×10^(-17)和1×10^(-17)摩尔。鉴于PCR提供的巨大扩增作用以及基于大小或序列差异区分DNA的现有能力,使用DNA标记抗体可为同时检测多种分析物提供基础,其灵敏度高于现有抗原检测系统。这些发现与先前的报告一致,表明这种杂交技术可为新一代超灵敏多分析物免疫测定法提供基础。