Hyojin Kim, Won Suk Yang, Dongheui An, Sang-Guk Lee, Je-Hyun Baek
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The assay was simplified by using sodium deoxycholate and trypsin/lys-C without reduction and alkylation steps.</p><p><strong>Results: </strong>Simple sample preparation reduced turnaround time by 1.5 h and neat goat serum was chosen as an optimal calibration matrix for accurate protein quantification. Assay precision, linearity, correlation, accuracy, limit of detection (LOD), limit of quantitation (LOQ), and carryover were validated according to CLSI guidelines over 41 days using more than 100 human serum samples. Good correlation compared with turbidimetric immunoassay (TIA) was observed by Deming regression for all analytes.</p><p><strong>Conclusions and clinical relevance: </strong>A high-throughput LC-MS/MS and BRAVO assay for simultaneous apolipoprotein analysis was validated using a simple preparation method with a human serum calibrator in goat serum matrix. 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引用次数: 0
摘要
目的:载脂蛋白监测有助于心血管疾病的诊断,因为载脂蛋白是动脉硬化和其他中性脂肪相关疾病的危险因素。液相色谱-串联质谱(LC-MS/MS)有利于同时定量、分化和标准化载脂蛋白,包括其异构体。然而,在临床MS中,保持定量准确性的快速和直接的样品制备仍然具有挑战性。实验设计:我们使用高通量LC-MS/MS平台与BRAVO系统结合开发了血清载脂蛋白a - i (ApoA-I),载脂蛋白B100家族和载脂蛋白C-III (ApoC-III)的同时检测。采用脱氧胆酸钠和胰蛋白酶/赖氨酸- c进行简化,无需还原和烷基化步骤。结果:简单的样品制备缩短了1.5 h的周转时间,选择干净的山羊血清作为准确定量蛋白质的最佳校准基质。根据CLSI指南,使用超过100份人血清样本,在41天内验证了检测精度、线性度、相关性、准确性、检出限(LOD)、定量限(LOQ)和携带性。与浊度免疫分析法(TIA)相比,所有分析物的Deming回归均具有良好的相关性。结论及临床意义:在山羊血清基质中,采用人血清校准器,采用简单的制备方法,验证了高通量LC-MS/MS和BRAVO同时分析载脂蛋白的方法。该分析易于扩展,以包括其他目标血清蛋白和/或其同种异构体。
Fast and straightforward simultaneous quantification of multiple apolipoproteins in human serum on a high-throughput LC-MS/MS platform.
Purpose: Apolipoprotein monitoring is useful for diagnosing cardiovascular diseases, as they are risk factors of arteriosclerosis and other neutral fat-related diseases. Liquid chromatography-tandem mass spectrometry (LC-MS/MS) is advantageous for simultaneous apolipoprotein quantification, differentiation, and standardization including their isoforms. However, fast and straightforward sample preparation that retains quantification accuracy remains challenging in clinical MS.
Experimental design: We developed a simultaneous assay for serum apolipoprotein A-I (ApoA-I), apolipoprotein B100 family, and apolipoprotein C-III (ApoC-III) using a high-throughput LC-MS/MS platform coupled with a BRAVO system. The assay was simplified by using sodium deoxycholate and trypsin/lys-C without reduction and alkylation steps.
Results: Simple sample preparation reduced turnaround time by 1.5 h and neat goat serum was chosen as an optimal calibration matrix for accurate protein quantification. Assay precision, linearity, correlation, accuracy, limit of detection (LOD), limit of quantitation (LOQ), and carryover were validated according to CLSI guidelines over 41 days using more than 100 human serum samples. Good correlation compared with turbidimetric immunoassay (TIA) was observed by Deming regression for all analytes.
Conclusions and clinical relevance: A high-throughput LC-MS/MS and BRAVO assay for simultaneous apolipoprotein analysis was validated using a simple preparation method with a human serum calibrator in goat serum matrix. The assay is readily expandable to include other target serum proteins and/or their isoforms.