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使用针对生物流体的特定电纺 MetaSAMPs 进行即时适用的代谢分型,这些 MetaSAMPs 直接适用于环境 LA-REIMS。

Point-of-care applicable metabotyping using biofluid-specific electrospun MetaSAMPs directly amenable to ambient LA-REIMS.

机构信息

Laboratory of Integrative Metabolomics, Department of Translational Physiology, Infectiology and Public Health, Ghent University, Ghent, Belgium.

Department of Materials, Textiles and Chemical Engineering, Faculty of Engineering and Architecture, Ghent University, Ghent, Belgium.

出版信息

Sci Adv. 2023 Jun 9;9(23):eade9933. doi: 10.1126/sciadv.ade9933.

Abstract

In recent years, ambient ionization mass spectrometry (AIMS) including laser ablation rapid evaporation IMS, has enabled direct biofluid metabolome analysis. AIMS procedures are, however, still hampered by both analytical, i.e., matrix effects, and practical, i.e., sample transport stability, drawbacks that impede metabolome coverage. In this study, we aimed at developing biofluid-specific metabolome sampling membranes (MetaSAMPs) that offer a directly applicable and stabilizing substrate for AIMS. Customized rectal, salivary, and urinary MetaSAMPs consisting of electrospun (nano)fibrous membranes of blended hydrophilic (polyvinylpyrrolidone and polyacrylonitrile) and lipophilic (polystyrene) polymers supported metabolite absorption, adsorption, and desorption. Moreover, MetaSAMP demonstrated superior metabolome coverage and transport stability compared to crude biofluid analysis and was successfully validated in two pediatric cohorts (MetaBEAse, = 234 and OPERA, = 101). By integrating anthropometric and (patho)physiological with MetaSAMP-AIMS metabolome data, we obtained substantial weight-driven predictions and clinical correlations. In conclusion, MetaSAMP holds great clinical application potential for on-the-spot metabolic health stratification.

摘要

近年来,包括激光烧蚀快速蒸发离子迁移谱在内的环境电离质谱(AIMS)技术已经实现了直接的生物流体代谢组学分析。然而,AIMS 程序仍然受到分析上的限制,例如基质效应,以及实际的限制,例如样品传输稳定性,这些限制阻碍了代谢组的覆盖范围。在这项研究中,我们旨在开发针对生物流体的代谢组采样膜(MetaSAMPs),为 AIMS 提供直接适用和稳定的基质。定制的直肠、唾液和尿液 MetaSAMPs 由混合亲水(聚乙烯吡咯烷酮和聚丙烯腈)和疏水性(聚苯乙烯)聚合物的电纺(纳米)纤维膜组成,支持代谢物的吸收、吸附和解吸。此外,与原始生物流体分析相比,MetaSAMP 具有更高的代谢组覆盖范围和传输稳定性,并在两个儿科队列(MetaBEAse,n = 234 和 OPERA,n = 101)中得到了成功验证。通过将人体测量学和(病理)生理学与 MetaSAMP-AIMS 代谢组数据相结合,我们获得了大量与体重相关的预测和临床相关性。总之,MetaSAMP 在现场代谢健康分层方面具有很大的临床应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2b4/10256167/37a7c5b2f8e2/sciadv.ade9933-f1.jpg

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