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一种用于通过抗体对猴血浆样本中总蛋白药物浓度进行液相色谱-串联质谱分析的样本制备方法。

A sample preparation process for LC-MS/MS analysis of total protein drug concentrations in monkey plasma samples with antibody.

作者信息

Ji Qin C, Rodila Ramona, El-Shourbagy Tawakol A

机构信息

Department of Drug Analysis, Abbott Laboratories, Abbott Park, IL 66048, United States.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2007 Mar 1;847(2):133-41. doi: 10.1016/j.jchromb.2006.09.039. Epub 2006 Oct 18.

Abstract

The determination of protein concentrations in plasma samples often provides essential information in biomedical research, clinical diagnostics, and pharmaceutical discovery and development. Binding assays such as ELISA determine meaningful free analyte concentrations by using specific antigen or antibody reagents. Concurrently, mass spectrometric technology is becoming a promising complementary method to traditional binding assays. Mass spectrometric assays generally provide measurements of the total protein analyte concentration. However, it was found that antibodies may bind strongly with the protein analyte such that total concentrations cannot be determined. Thus, a sample preparation process was developed which included a novel "denaturing" step to dissociate binding between antibodies and the protein analyte prior to solid phase extraction of plasma samples and LC-MS/MS analysis. In so doing, the total protein analyte concentrations can be obtained. This sample preparation process was further studied by LC-MS analysis with a full mass range scan. It was found that the protein of interest and other plasma peptides were pre-concentrated, while plasma albumin was depleted in the extracts. This capability of the sample preparation process could provide additional advantages in proteomic research for biomarker discovery and validation. The performance of the assay with the novel denaturing step was further evaluated. The linear dynamic range was between 100.9ng/mL and 53920.0ng/mL with a coefficient of determination (r(2)) ranging from 0.9979 and 0.9997. For LLOQ and ULOQ samples, the inter-assay CV was 12.6% and 2.7% and inter-assay mean accuracies were 103.7% and 99.5% of theoretical concentrations, respectively. For QC samples, the inter-assay CV was between 2.1% and 4.9%, and inter-assay mean accuracies were between 104.1% and 110.0% of theoretical concentrations.

摘要

血浆样本中蛋白质浓度的测定在生物医学研究、临床诊断以及药物发现与开发中常常能提供重要信息。诸如酶联免疫吸附测定(ELISA)之类的结合测定法,通过使用特定的抗原或抗体试剂来确定有意义的游离分析物浓度。与此同时,质谱技术正成为传统结合测定法一种很有前景的补充方法。质谱测定法通常能提供蛋白质分析物总浓度的测量值。然而,人们发现抗体可能会与蛋白质分析物强烈结合,以至于无法确定总浓度。因此,开发了一种样品制备流程,其中包括一个新颖的“变性”步骤,以便在血浆样本进行固相萃取和液相色谱 - 串联质谱(LC - MS/MS)分析之前,使抗体与蛋白质分析物之间的结合解离。这样一来,就能获得蛋白质分析物的总浓度。通过全质量范围扫描的液相色谱 - 质谱(LC - MS)分析对该样品制备流程进行了进一步研究。结果发现,感兴趣的蛋白质和其他血浆肽在提取物中得到了预浓缩,而血浆白蛋白在提取物中被耗尽。这种样品制备流程的能力在蛋白质组学研究中用于生物标志物的发现和验证方面可能会提供额外的优势。对具有新颖变性步骤的测定法的性能进行了进一步评估。线性动态范围在100.9纳克/毫升至53920.0纳克/毫升之间,决定系数(r²)在0.9979至0.9997之间。对于定量下限(LLOQ)和定量上限(ULOQ)样品,批间变异系数(CV)分别为12.6%和2.7%,批间平均准确度分别为理论浓度的103.7%和99.5%。对于质量控制(QC)样品,批间CV在2.1%至4.9%之间,批间平均准确度在理论浓度的104.1%至110.0%之间。

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