Liu Lijuan, Xie Yuling, Dai Zhenxian, Zhuo Chuanshang, Wu Yushui
Clinical Laboratory, Fuzhou Infectious Disease Hospital, Fujian Medical University, Fuzhou, China.
Research Department, Fujian Hongcheng Biotechnology Co. Ltd, Putian, China.
J Clin Lab Anal. 2015 Nov;29(6):493-7. doi: 10.1002/jcla.21799. Epub 2014 Oct 2.
The serological detection of specific antibodies against Treponema pallidum is of particular importance in the diagnosis of syphilis. The chemiluminescence immunoassay (CLIA) has been widely used for clinical diagnosis because they remit no radical waste products, cause no enzyme precipitation, and exhibit an excellent sensitivity.
A one-step CLIA was established to detect T. pallidum IgG antibody based on microplate coated with a mixture of recombinant T. pallidum antigens TpN15, TpN17, and TpN47. The Chinese national reference substances standard panel for T. pallidum diagnosis was applied to test the accuracy, stability, interference, and cross-reactivity of the established CLIA. The validation of efficacy for clinical application was performed by comparing the established method with the marketed T. pallidum particle agglutination (TPPA) kit and the Abbott ARCHITEC Auto System.
The established method met the requirement of the Chinese national reference substances standard for T. pallidum diagnosis. When compared with TPPA (n = 1,052), the specificity, sensitivity, and overall concordance were 99.7%, 99.0%, and 98.8% respectively, showing a great agreement with a kappa value of 0.81. When compared with the Abbott ARCHITEC Auto System (n = 352), the results showed that the specificity, sensitivity, and overall concordance were 98.6.0%, 96.6% and 98.6% respectively, and a high-degree agreement was observed (kappa value = 0.95).
The established rapid, specific, sensitive, and stable microplate CLIA method to detect IgG antibody against T pallidum will provide an efficient alternative to the treponemal tests and wide application in clinical laboratory.
梅毒螺旋体特异性抗体的血清学检测在梅毒诊断中具有特别重要的意义。化学发光免疫分析法(CLIA)已广泛用于临床诊断,因为它们不产生自由基废物,不引起酶沉淀,并且具有出色的灵敏度。
建立了一种一步法CLIA,基于包被有重组梅毒螺旋体抗原TpN15、TpN17和TpN47混合物的微孔板检测梅毒螺旋体IgG抗体。应用中国国家梅毒诊断参考物质标准品对所建立的CLIA的准确性、稳定性、干扰性和交叉反应性进行检测。通过将所建立的方法与市售的梅毒螺旋体颗粒凝集试验(TPPA)试剂盒和雅培ARCHITEC自动系统进行比较,对临床应用的有效性进行验证。
所建立的方法符合中国国家梅毒诊断参考物质标准的要求。与TPPA(n = 1052)相比,特异性、灵敏度和总体一致性分别为99.7%、99.0%和98.8%,一致性良好,kappa值为0.81。与雅培ARCHITEC自动系统(n = 352)相比,结果显示特异性、灵敏度和总体一致性分别为98.6%、96.6%和98.6%,观察到高度一致性(kappa值 = 0.95)。
所建立的快速、特异、灵敏、稳定的微孔板CLIA法检测梅毒螺旋体IgG抗体,将为梅毒螺旋体检测提供一种有效的替代方法,并在临床实验室中广泛应用。