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首页> 外文期刊>Analytical chemistry >High-Throughput Screening and Quantitation of Target Compounds in Biofluids by Coated Blade Spray-Mass Spectrometry
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High-Throughput Screening and Quantitation of Target Compounds in Biofluids by Coated Blade Spray-Mass Spectrometry

机译:通过涂布叶片喷涂质谱法测定生物流体中靶化合物的高通量筛选和定量

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Most contemporary methods of screening and quantitating controlled substances and therapeutic drugs in biofluids typically require laborious, time-consuming, and expensive analytical workflows. In recent years, our group has worked toward developing microextraction (mu e)-mass spectrometry (MS) technologies that merge all of the tedious steps of the classical methods into a simple, efficient, and low-cost methodology. Unquestionably, the automation of these technologies allows for faster sample throughput, greater reproducibility, and radically reduced analysis times. Coated blade spray (CBS) is a mu e technology engineered for extracting/enriching analytes of interest in complex matrices, and it can be directly coupled with MS instruments to achieve efficient screening and quantitative analysis. In this study, we introduced CBS as a technology that can be arranged to perform either rapid diagnostics (single-vial) or the high-throughput (96-well plate) analysis of biofluids. Furthermore, we demonstrate that performing 96-CBS extractions at the same time allows the total analysis time to be reduced to less than SS s per sample. Aiming to validate the versatility of CBS, substances comprising a broad range of molecular weights, moieties, protein binding, and polarities were selected. Thus, the high-throughput (HT)-CBS technology was used for the concomitant quantitation of 18 compounds (mixture of anabolics, beta-2 agonists, diuretics, stimulants, narcotics, and beta-blockers) spiked in human urine and plasma samples. Excellent precision (similar to 2.5%), accuracy (>= 90%), and linearity (R-2 >= 0.99) were attained for all the studied compounds, and the limits of quantitation (LOQs) were within the range of 0.1 to 10 ng.mL(-1) for plasma and 0.25 to 10 ng.mL(-1) for urine. The results reported in this paper confirm CBS's great potential for achieving subsixty-second analyses of target compounds in a broad range of fields such as those related to clinical diagnosis, food, the environment, and forensics.
机译:筛选和定量受控物质和生物流体中治疗药物的最具现代方法通常需要费力,耗时和昂贵的分析工作流程。近年来,我们的小组已经致力于开发微萃取(MU E)的微谱(MS)技术,将古典方法的所有繁琐步骤合并到简单,有效和低成本的方法。毫无疑问,这些技术的自动化允许更快的样本吞吐量,更高的再现性和从根本上减少分析时间。涂层刀片喷雾(CBS)是一种用于提取复杂矩阵中感兴趣的分析物的MU E技术,它可以与MS仪器直接耦合以实现有效的筛选和定量分析。在这项研究中,我们将CBS作为一种技术,可以被安排以执行生物流体的快速诊断(单瓶)或高通量(96孔板)分析。此外,我们证明了同时进行96-CBS提取允许总分析时间降低到每种样本的SS S。旨在验证CBS的多功能性,选择包含宽范围的分子量,部分,蛋白质结合和极性的物质。因此,高通量(HT)-CBS技术用于伴随18种化合物的定量(合成代谢物,β-2激动剂,利尿剂,刺激剂,毒细胞,毒细胞和β-阻滞剂的混合物)掺入人尿和血浆样品中。所有研究的化合物获得了优异的精度(类似于2.5%),精度(> = 90%)和线性度(R-2> = 0.99),并且定量限制(LOQs)在0.1至0.1的范围内10 Ng.ML(-1)血浆和0.25至10ng.ml(-1)尿液。本文报告的结果证实了CBS在广泛的领域中实现了目标化合物的次数分析的巨大潜力,例如与临床诊断,食品,环境和取证有关的那些。

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