体内
动力学(音乐)
核磁共振波谱
化学
细胞代谢
新陈代谢
光谱学
核磁共振
生物化学
生物物理学
生物
物理
声学
生物技术
量子力学
作者
Laurie J. Rich,Puneet Bagga,Neil Wilson,Mitchell D. Schnall,John A. Detre,Mohammad Haris,Ravinder Reddy
标识
DOI:10.1038/s41551-019-0499-8
摘要
Quantitative mapping of the in vivo dynamics of cellular metabolism via non-invasive imaging contributes to our understanding of the initiation and progression of diseases associated with dysregulated metabolic processes. Current methods for imaging cellular metabolism are limited by low sensitivities, costs or the use of specialized hardware. Here, we introduce a method that captures the turnover of cellular metabolites by quantifying signal reductions in proton magnetic resonance spectroscopy (MRS) resulting from the replacement of 1H with 2H. The method, which we termed quantitative exchanged-label turnover MRS, only requires deuterium-labelled glucose and standard magnetic resonance imaging scanners, and with a single acquisition provides steady-state information and metabolic rates for several metabolites. We used the method to monitor glutamate, glutamine, γ-aminobutyric acid and lactate in the brains of unaffected and glioma-bearing rats following the administration of 2H2-labelled glucose and 2H3-labelled acetate. Quantitative exchanged-label turnover MRS should broaden the applications of routine 1H MRS. A method that quantifies signal reductions in proton magnetic resonance spectroscopy resulting from the replacement of 1H with 2H after the administration of a deuterated substrate can be used to monitor the turnover of cellular metabolites in vivo.
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