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用于血浆和血清中脂蛋白和代谢物测量的定量体外诊断 NMR 光谱学:针对分析伪影最小化的建议,特别针对 COVID-19/SARS-CoV-2 样本。

Quantitative In-Vitro Diagnostic NMR Spectroscopy for Lipoprotein and Metabolite Measurements in Plasma and Serum: Recommendations for Analytical Artifact Minimization with Special Reference to COVID-19/SARS-CoV-2 Samples.

机构信息

Australian National Phenome Centre, Health Futures Institute, Murdoch University, Harry Perkins Building, Perth, WA 6150, Australia.

Center for Computational and Systems Medicine, Health Futures Institute, Murdoch University, Murdoch, Perth, WA 6150, Australia.

出版信息

J Proteome Res. 2020 Nov 6;19(11):4428-4441. doi: 10.1021/acs.jproteome.0c00537. Epub 2020 Oct 16.

Abstract

Quantitative nuclear magnetic resonance (NMR) spectroscopy of blood plasma is widely used to investigate perturbed metabolic processes in human diseases. The reliability of biochemical data derived from these measurements is dependent on the quality of the sample collection and exact preparation and analysis protocols. Here, we describe systematically, the impact of variations in sample collection and preparation on information recovery from quantitative proton (H) NMR spectroscopy of human blood plasma and serum. The effects of variation of blood collection tube sizes and preservatives, successive freeze-thaw cycles, sample storage at -80 °C, and short-term storage at 4 and 20 °C on the quantitative lipoprotein and metabolite patterns were investigated. Storage of plasma samples at 4 °C for up to 48 h, freezing at -80 °C and blood sample collection tube choice have few and minor effects on quantitative lipoprotein profiles, and even storage at 4 °C for up to 168 h caused little information loss. In contrast, the impact of heat-treatment (56 °C for 30 min), which has been used for inactivation of SARS-CoV-2 and other viruses, that may be required prior to analytical measurements in low level biosecurity facilities induced marked changes in both lipoprotein and low molecular weight metabolite profiles. It was conclusively demonstrated that this heat inactivation procedure degrades lipoproteins and changes metabolic information in complex ways. Plasma from control individuals and SARS-CoV-2 infected patients are differentially altered resulting in the creation of artifactual pseudo-biomarkers and destruction of real biomarkers to the extent that data from heat-treated samples are largely uninterpretable. We also present several simple blood sample handling recommendations for optimal NMR-based biomarker discovery investigations in SARS CoV-2 studies and general clinical biomarker research.

摘要

定量磁共振波谱(NMR)广泛用于研究人类疾病中代谢过程的变化。这些测量所得生化数据的可靠性取决于样本采集的质量以及准确的制备和分析方案。在这里,我们系统地描述了样本采集和制备的变化对人血浆质子(H)NMR 定量光谱信息恢复的影响。我们研究了不同的采血管尺寸和防腐剂、连续的冻融循环、-80°C 下的样品储存、4°C 和 20°C 下的短期储存对定量脂蛋白和代谢物图谱的影响。在 4°C 下储存血浆样品长达 48 小时、在-80°C 下冷冻以及采血管的选择对定量脂蛋白图谱几乎没有影响,即使在 4°C 下储存长达 168 小时也几乎不会导致信息丢失。相比之下,热疗(56°C 30 分钟)可能会对低生物安全设施中的分析测量产生影响,用于灭活 SARS-CoV-2 和其他病毒,这种处理会引起脂蛋白和低分子量代谢物图谱的显著变化。结果明确表明,这种热失活处理会降解脂蛋白并以复杂的方式改变代谢信息。对照个体和 SARS-CoV-2 感染患者的血浆发生变化,导致人为的假性生物标志物的产生和真实生物标志物的破坏,以至于经过热处理的样本数据几乎无法解释。我们还为 SARS-CoV-2 研究和一般临床生物标志物研究中的基于 NMR 的生物标志物发现研究提供了一些简单的血液样本处理建议。

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