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在使用大肠杆菌衍生重组抗原的多重微珠免疫测定中,利用大肠杆菌裂解物增强靶标特异性信号检测。

Enhanced target-specific signal detection using an Escherichia coli lysate in multiplex microbead immunoassays with E. coli-derived recombinant antigens.

作者信息

Crestani Sandra, Leitolis Amanda, Lima Lucianna Freitas Oliveira, Krieger Marco A, Foti Leonardo

机构信息

Instituto de Biologia Molecular do Paraná, Rua Professor Algacyr Munhoz Mader, 3775. Bloco C, CIC Curitiba, PR. Brazil. 81350-010.

Instituto Carlos Chagas-FIOCRUZ, Rua Professor Algacyr Munhoz Mader, 3775. Bloco B, CIC Curitiba, PR. Brazil. 81350-010; Instituto de Tecnologia do Paraná, Rua Professor Algacyr Munhoz Mader, 3775. Bloco A, CIC Curitiba, PR. Brazil. 81350-010.

出版信息

J Immunol Methods. 2016 Aug;435:17-26. doi: 10.1016/j.jim.2016.05.002. Epub 2016 May 5.

Abstract

Diverse techniques have been developed to analyze antibody-mediated responses to infections. However, the most common tests, i.e., enzyme-linked immunosorbent assays, require separate reactions for each antigen and consequently necessitate large sample volumes. Luminex technology allows the detection of multiple antibodies in a single experiment, but nonspecific binding can impair the results. Therefore, we examined the use of Escherichia coli lysates to reduce nonspecific binding and improve the results of liquid microarrays based on Luminex technology. Anti-bacteria antibodies were detected in human serum samples, as evidenced by high median fluorescence intensity (MFI) in assays performed with paramagnetic microspheres coupled with E. coli lysates. Moreover, the addition of an E. coli lysate as a blocker reduced the nonspecific binding of antigens produced by E. coli in a concentration-dependent manner. Tris-HCl reduced MFI values in negative samples, but did not affect MFI for positive samples. For microspheres coupled with different antigens, an E. coli lysate blocker significantly improved the fluorescence signals from positive samples. The addition of Tris-HCl and the E. coli lysate induced antigen-specific differences in MFI. This combination of the E. coli lysate blocker and Tris-HCl yielded a statistically significant improvement in MFI in the assays for Chagas disease and hepatitis C virus samples. However, for the Treponema pallidum p47 antigen improvement in MFI was only observed for the preparation with the E. coli blocker at a concentration of 3%. In conclusion, the addition of an E. coli lysate and Tris-HCl to the microarray assay reduced the nonspecific binding of human anti-bacteria antibodies and, therefore, increased the specific MFI.

摘要

已开发出多种技术来分析抗体介导的感染反应。然而,最常见的检测方法,即酶联免疫吸附测定法,每种抗原都需要单独反应,因此需要大量样本。Luminex技术可在单个实验中检测多种抗体,但非特异性结合会影响结果。因此,我们研究了使用大肠杆菌裂解物来减少非特异性结合并改善基于Luminex技术的液体微阵列的结果。在人血清样本中检测到了抗细菌抗体,这在使用与大肠杆菌裂解物偶联的顺磁性微球进行的检测中表现为高的中位荧光强度(MFI)。此外,添加大肠杆菌裂解物作为封闭剂以浓度依赖的方式减少了大肠杆菌产生的抗原的非特异性结合。Tris-HCl降低了阴性样本中的MFI值,但不影响阳性样本的MFI。对于与不同抗原偶联的微球,大肠杆菌裂解物封闭剂显著改善了阳性样本的荧光信号。添加Tris-HCl和大肠杆菌裂解物诱导了MFI的抗原特异性差异。在恰加斯病和丙型肝炎病毒样本的检测中,大肠杆菌裂解物封闭剂和Tris-HCl的这种组合使MFI有统计学上的显著提高。然而,对于梅毒螺旋体p47抗原,仅在浓度为3%的大肠杆菌封闭剂制剂中观察到MFI的改善。总之,在微阵列检测中添加大肠杆菌裂解物和Tris-HCl减少了人抗细菌抗体的非特异性结合,因此增加了特异性MFI。

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