超极化(物理学)
代谢组学
氢的自旋异构体
核磁共振波谱
化学
计算机科学
纳米技术
材料科学
色谱法
有机化学
氢
作者
Aurélien Bornet,Jean‐Nicolas Dumez,Jonas Milani,Basile Vuichoud,Julie Lalande-Martin,Illa Téa,Maxime Yon,Mickaël Maucourt,Catherine Deborde,Annick Moing,Lucio Frydman,Geoffrey Bodenhausen,Sami Jannin,Patrick Giraudeau
标识
DOI:10.1016/j.cbpa.2023.102307
摘要
Hyperpolarized NMR is a promising approach to address the sensitivity limits of conventional NMR metabolomics approaches, which currently fails to detect minute metabolite concentrations in biological samples. This review describes how tremendous signal enhancement offered by dissolution-dynamic nuclear polarization and parahydrogen-based techniques can be fully exploited for molecular omics sciences. Recent developments, including the combination of hyperpolarization techniques with fast multi-dimensional NMR implementation and quantitative workflows are described, and a comprehensive comparison of existing hyperpolarization techniques is proposed. High-throughput, sensitivity, resolution and other relevant challenges that should be tackled for a general application of hyperpolarized NMR in metabolomics are discussed.
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