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蛋白G微柱在色谱免疫分析中的应用:竞争性结合模式的比较。

Use of protein G microcolumns in chromatographic immunoassays: A comparison of competitive binding formats.

作者信息

Pfaunmiller Erika L, Anguizola Jeanethe A, Milanuk Mitchell L, Carter NaTasha, Hage David S

机构信息

Chemistry Department, University of Nebraska, Lincoln, NE, United States.

Chemistry Department, University of Nebraska, Lincoln, NE, United States.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2016 May 15;1021:91-100. doi: 10.1016/j.jchromb.2015.12.055. Epub 2016 Jan 2.

Abstract

Affinity microcolumns containing protein G were used as general platforms for creating chromatographic-based competitive binding immunoassays. Human serum albumin (HSA) was used as a model target for this work and HSA tagged with a near infrared fluorescent dye was utilized as the label. The protein G microcolumns were evaluated for use in several assay formats, including both solution-based and column-based competitive binding immunoassays and simultaneous or sequential injection formats. All of these methods were characterized by using the same amounts of labeled HSA and anti-HSA antibodies per sample, as chosen for the analysis of a protein target in the low-to-mid ng/mL range. The results were used to compare these formats in terms of their response, precision, limit of detection, and analysis time. All these methods gave detection limits in the range of 8-19ng/mL and precisions ranging from ±5% to ±10% when using an injection flow rate of 0.10mL/min. The column-based sequential injection immunoassay provided the best limit of detection and the greatest change in response at low target concentrations, while the solution-based simultaneous injection method had the broadest linear and dynamic ranges. These results provided valuable guidelines that can be employed to develop and extend the use of protein G microcolumns and these competitive binding formats to other protein biomarkers or biological agents of clinical or pharmaceutical interest.

摘要

含有蛋白G的亲和微柱被用作创建基于色谱的竞争性结合免疫分析的通用平台。人血清白蛋白(HSA)被用作这项工作的模型靶标,并用近红外荧光染料标记的HSA作为标记物。对蛋白G微柱在几种分析形式中的应用进行了评估,包括基于溶液和基于柱的竞争性结合免疫分析以及同时或顺序进样形式。所有这些方法的特征在于每个样品使用相同量的标记HSA和抗HSA抗体,这是为分析低至中ng/mL范围内的蛋白质靶标而选择的。结果用于比较这些形式在响应、精密度、检测限和分析时间方面的差异。当进样流速为0.10mL/min时,所有这些方法的检测限在8-19ng/mL范围内,精密度在±5%至±10%之间。基于柱的顺序进样免疫分析在低靶标浓度下提供了最佳的检测限和最大的响应变化,而基于溶液的同时进样方法具有最宽的线性和动态范围。这些结果提供了有价值的指导方针,可用于开发和扩展蛋白G微柱以及这些竞争性结合形式在其他临床或药学上感兴趣的蛋白质生物标志物或生物制剂中的应用。

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