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临床代谢组学分析平台用于鉴定先天性代谢缺陷的精准度。

Precision of a Clinical Metabolomics Profiling Platform for Use in the Identification of Inborn Errors of Metabolism.

机构信息

Metabolon Inc., Morrisville, NC.

Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX.

出版信息

J Appl Lab Med. 2020 Mar 1;5(2):342-356. doi: 10.1093/jalm/jfz026.

Abstract

BACKGROUND

The application of whole-exome sequencing for the diagnosis of genetic disease has paved the way for systems-based approaches in the clinical laboratory. Here, we describe a clinical metabolomics method for the screening of metabolic diseases through the analysis of a multi-pronged mass spectrometry platform. By simultaneously measuring hundreds of metabolites in a single sample, clinical metabolomics offers a comprehensive approach to identify metabolic perturbations across multiple biochemical pathways.

METHODS

We conducted a single- and multi-day precision study on hundreds of metabolites in human plasma on 4, multi-arm, high-throughput metabolomics platforms.

RESULTS

The average laboratory coefficient of variation (CV) on the 4 platforms was between 9.3 and 11.5% (median, 6.5-8.4%), average inter-assay CV on the 4 platforms ranged from 9.9 to 12.6% (median, 7.0-8.3%) and average intra-assay CV on the 4 platforms ranged from 5.7 to 6.9% (median, 3.5-4.4%). In relation to patient sample testing, the precision of multiple biomarkers associated with IEM disorders showed CVs that ranged from 0.2 to 11.0% across 4 analytical batches.

CONCLUSIONS

This evaluation describes single and multi-day precision across 4 identical metabolomics platforms, comprised each of 4 independent method arms, and reproducibility of the method for the measurement of key IEM metabolites in patient samples across multiple analytical batches, providing evidence that the method is robust and reproducible for the screening of patients with inborn errors of metabolism.

摘要

背景

全外显子测序在遗传病诊断中的应用为临床实验室的系统方法铺平了道路。在这里,我们描述了一种通过分析多靶向质谱平台进行代谢疾病筛查的临床代谢组学方法。通过在单个样本中同时测量数百种代谢物,临床代谢组学提供了一种全面的方法来识别多个生化途径中的代谢扰动。

方法

我们在 4 个多臂高通量代谢组学平台上对数百种人血浆代谢物进行了单日和多日精密度研究。

结果

4 个平台的平均实验室变异系数(CV)在 9.3%至 11.5%之间(中位数为 6.5%至 8.4%),4 个平台的平均批间 CV 范围在 9.9%至 12.6%之间(中位数为 7.0%至 8.3%),4 个平台的平均批内 CV 范围在 5.7%至 6.9%之间(中位数为 3.5%至 4.4%)。就患者样本检测而言,与 IEM 疾病相关的多个生物标志物的精密度在 4 个分析批次中 CV 范围为 0.2%至 11.0%。

结论

本评价描述了 4 个相同代谢组学平台的单日和多日精密度,每个平台由 4 个独立的方法臂组成,以及该方法在多个分析批次中测量关键 IEM 代谢物的重现性,为该方法用于筛查患有先天性代谢缺陷的患者提供了证据,证明该方法具有稳健性和重现性。

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