Reagent Engineering, Protein Technology Group, Sysmex Corporation, Kobe 651-2271, Hyogo, Japan.
Bio-Reagent Material Development, Bio-Diagnostic Reagent Technology Center, Sysmex Corporation, Kobe 651-2271, Hyogo, Japan.
Int J Mol Sci. 2022 May 5;23(9):5165. doi: 10.3390/ijms23095165.
Aberrant glycosylation of IgA1 is involved in the development of IgA nephropathy (IgAN). There are many reports of IgAN markers focusing on the glycoform of IgA1. None have been clinically applied as a routine test. In this study, we established an automated sandwich immunoassay system for detecting aberrant glycosylated IgA1, using agglutinin (WFA) and anti-IgA1 monoclonal antibody. The diagnostic performance as an IgAN marker was evaluated. The usefulness of WFA for immunoassays was investigated by lectin microarray. A reliable standard for quantitative immunoassay measurements was designed by modifying a purified IgA1 substrate. A validation study using multiple serum specimens was performed using the established WFA-antibody sandwich automated immunoassay. Lectin microarray results showed that WFA specifically recognized -glycans of agglutinated IgA1 in IgAN patients. The constructed IgA1 standard exhibited a wide dynamic range and high reactivity. In the validation study, serum WFA-reactive IgA1 (WFA+-IgA1) differed significantly between healthy control subjects and IgAN patients. The findings indicate that WFA is a suitable lectin that specifically targets abnormal agglutinated IgA1 in serum. We also describe an automated immunoassay system for detecting WFA+-IgA1, focusing on N-glycans.
IgA1 的异常糖基化参与 IgA 肾病(IgAN)的发生发展。有许多关于 IgAN 标志物的报道集中在 IgA1 的糖型上。但没有一种标志物被临床常规检测所采用。本研究建立了一种采用凝集素(WFA)和抗 IgA1 单克隆抗体检测异常糖基化 IgA1 的自动化夹心免疫分析系统。评估了其作为 IgAN 标志物的诊断性能。通过凝集素微阵列研究了 WFA 用于免疫测定的实用性。通过修饰纯化的 IgA1 底物设计了一种用于定量免疫测定的可靠标准。使用建立的 WFA-抗体夹心自动化免疫分析对多份血清标本进行了验证研究。凝集素微阵列结果表明,WFA 特异性识别 IgAN 患者凝集的 IgA1 的 -糖基。构建的 IgA1 标准具有宽的动态范围和高反应性。在验证研究中,健康对照组和 IgAN 患者血清中的 WFA 反应性 IgA1(WFA+-IgA1)存在显著差异。这些结果表明,WFA 是一种合适的凝集素,可特异性靶向血清中异常凝集的 IgA1。我们还描述了一种自动化免疫分析系统,用于检测 WFA+-IgA1,重点是 N-糖基化。