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Microsphere-Based IgM and IgG Avidity Assays for Human Parvovirus B19, Human Cytomegalovirus, and Toxoplasma gondii

机译:基于微球的IgM和IgG Andility测定人Parvovirus B19,人巨细胞病毒和弓形虫

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Human parvovirus B19 (here B19), human cytomegalovirus (HCMV), and Toxoplasma gondii infections during pregnancy can lead to severe complications. While traditional diagnosis of infections is mostly confined to one pathogen at a time, a multiplex array is a feasible alternative to improve diagnostic management and cost-efficiency. In the present study, for these three pathogens, we developed microsphere-based suspension immunoassays (SIAs) in multiplex and monoplex formats for the detection of antimicrobial IgM antibodies as well as corresponding chaotrope-based IgG avidity SIAs. We determined the diagnostic performances of the SIAs versus in-house and commercial reference assays using a panel of 318 serum samples from well-characterized clinical cohorts. All the newly developed assays exhibited excellent performance compared to the corresponding high-quality reference methods. The positive and negative percent agreements of the IgM SIAs in comparison with reference methods were 95 to 100% and 98 to 100%, and those of the IgG avidity SIAs were 92 to 100% and 95 to 100%, respectively. Kappa efficiency values between the SIAs and the corresponding reference assays were 0.91 to 1. Furthermore, with another panel comprising 391 clinical samples from individuals with primary infection by B19, HCMV, or T. gondii , the IgM SIAs were highly sensitive for the detection of acute infections, and the IgG avidity SIAs were highly specific for the separation of primary infections from past immunity. Altogether, the strategy of IgM multiplex screening followed by IgG avidity reflex testing can provide high-throughput and accurate means for the detection and stage determination of B19, HCMV, and T. gondii infections. IMPORTANCE Human parvovirus B19, human cytomegalovirus, and Toxoplasma gondii are ubiquitous pathogens. Their infections are often asymptomatic or mild in the general population yet may be transmitted from mother to fetus during pregnancy. Maternal infections by these pathogens can cause severe complications to the fetus or congenital abnormalities. As a rule, the risk of maternal transmission is critically related to the infection time; hence, it is important to determine when a pregnant woman has acquired the infection. In this study, we developed new diagnostic approaches for the timing of infections by three pathogens. All the new assays appeared to be highly sensitive and specific, providing powerful tools for medical diagnosis.
机译:人parvovirus b19(这里b19),人巨细胞病毒(hcmv)和妊娠期间的弓形虫感染可能导致严重的并发症。虽然一次感染的传统诊断大部分时间一次被限制在一个病原体上,但多路复用阵列是一种可行的替代方案,可以提高诊断管理和成本效率。在本研究中,对于这三种病原体,我们开发了用于检测抗微生物IgM抗体的多重和单体形式的基于微球的悬浮免疫测定(SIAS)以及相应的杂交的IgG Andity Sias。我们确定了使用318个血清样品的均匀性和商业参考测定的诊断性能,从特征良好的临床队列。与相应的高质量参考方法相比,所有新开发的测定表现出优异的性能。与参考方法相比,IgM SAS的阳性和负数百分比为95至100%,98至100%,IgG亲身均为92%至100%,95%至100%。 kappa效率值均匀和相应的参考测定值为0.91至1.此外,另一个面板包含来自B19,HCMV或T.Gondii的初级感染的个体的391个临床样本,IgM SiAS对检测非常敏感急性感染,IgG亲爱的SAS是对过去免疫力分离原发性感染的高度特异性。总共,IGM多重筛选的策略随后是IgG Andity Reflex测试,可以为B19,HCMV和T.Gondii感染的检测和阶段测定提供高通量和准确的方法。重要性人对细胞病毒B19,人巨细胞病毒和弓形虫宫内节是普遍存在的病原体。他们的感染往往是一般人群中的无症状或轻度,但可能在怀孕期间从母亲传播胎儿。这些病原体的母体感染可能对胎儿或先天性异常引起严重的并发症。通常,母体传输的风险与感染时间有关;因此,重要的是确定孕妇何时已经获得感染。在这项研究中,我们开发了三种病原体对感染时序的新诊断方法。所有新的测定似乎都是高度敏感和特定的,为医学诊断提供了强大的工具。

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