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Development and Application of Ultra-Performance Liquid Chromatography-TOF MS for Precision Large Scale Urinary Metabolic Phenotyping

机译:超高效液相色谱-TOF MS在精密大规模尿液代谢表型研究中的开发与应用

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摘要

To better understand the molecular mechanisms underpinning physiological variation in human populations, metabolic phenotyping approaches are increasingly being applied to studies involving hundreds and thousands of biofluid samples. Hyphenated ultra-performance liquid chromatography-mass spectrometry (UPLC-MS) has become a fundamental tool for this purpose. However, the seemingly inevitable need to analyze large studies in multiple analytical batches for. UPLC-MS analysis poses a challenge to. data quality which has been recognized in the field. Herein., we describe in detail a fit-for-purpose UPLC-MS platform:: method set, and sample analysis workflow, capable of sustained analysis on an industrial scale and allowing batch-free operation for large studies. Using complementary reversed-phase chromatography (RPC) and hydrophilic interaction liquid chromatography (HILT() together with high resolution orthogonal acceleration time-of-flight mass spectrometry (oaTOF-MS), exceptional measurement precision is exemplified with independent,epidemiological sample sets of approximately 650 and 1000 participant samples. Evaluation of molecular reference targets in repeated injections of pooled quality control (QC) samples distributed throughout each experiment demonstrates a mean retention time relative standard deviation (RSD) of <0.3% across all assays in both studies and a mean peak area RSD of <15% in the raw data. To more globally assess quality of the profiling data, untargeted feature extraction was performed followed by data filtration according to feature intensity response to QC sample dilution. Analysis of the remaining, features within the-repeated QC sample measurements demonstrated median peak area RSD values of <20% for the RPC assays and <25% for the HILIC assays. These values represent the quality of the raw data, as no normalization or feature-specific intensity correction was applied: While the data in each experiment was acquired in a single continuous' batch, instances of minor time-dependent intensity drift were observed, highlighting the utility of data correction technique's despite reducing the dependency on them for generating high quality data. These results demonstrate that the platform and methodology presented herein is fit-for-use in large scale metabolic phenotyping studies, challenging the assertion that such screening is inherently limited by batch effects. Details of the pipeline used to generate high quality raw data and mitigate the need for batch correction are provided.
机译:为了更好地理解支持人类生理变异的分子机制,代谢表型方法越来越多地用于涉及成千上万个生物流体样品的研究中。联用超高效液相色谱-质谱(UPLC-MS)已成为实现此目的的基本工具。但是,似乎不可避免地需要分析多个分析批次中的大型研究。 UPLC-MS分析提出了挑战。数据质量已在现场得到认可。本文中,我们详细描述了适合用途的UPLC-MS平台::方法集和样品分析工作流程,能够在工业规模上进行持续分析,并允许无批次操作进行大型研究。使用互补反相色谱(RPC)和亲水性相互作用液相色谱(HILT()以及高分辨率正交加速飞行时间质谱(oaTOF-MS),可通过独立的流行病学样本组(约650个和1000个参与者样本在每个实验中重复注入的合并质量控制(QC)样本的分子参比靶标评估表明,两项研究中所有测定的平均保留时间相对标准偏差(RSD)均<0.3%,原始数据的峰面积RSD小于15%。为了更全面地评估分析数据的质量,进行了无目标特征提取,然后根据对QC样品稀释的特征强度响应进行了数据过滤。重复的QC样品测量结果表明,RPC分析的峰面积RSD中值小于20%对于HILIC分析,<25%。这些值表示原始数据的质量,因为未应用归一化或特定于功能的强度校正:虽然每个实验中的数据是在一个连续的批次中获取的,但观察到较小的时间依赖性强度漂移的情况,突出了尽管减少了对数据校正技术生成高质量数据的依赖性,但仍具有数据校正技术的实用性。这些结果表明,本文提出的平台和方法适合在大规模代谢表型研究中使用,挑战了这种筛选固有地受批次效应限制的主张。提供了用于生成高质量原始数据并减轻批量校正需求的管道的详细信息。

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