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In vivo online magnetic resonance quantification of absolute metabolite concentrations in microdialysate

机译:体内在线磁共振定量分析微透析液中绝对代谢物的浓度

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摘要

In order to study metabolic processes in animal models of diseases and in patients, microdialysis probes have evolved as powerful tools that are minimally invasive. However, analyses of microdialysate, performed remotely, do not provide real-time monitoring of microdialysate composition. Microdialysate solutions can theoretically be analyzed online inside a preclicinal or clinical MRI scanner using MRS techniques. Due to low NMR sensitivity, acquisitions of real-time NMR spectra on very small solution volumes (μL) with low metabolite concentrations (mM range) represent a major issue. To address this challenge we introduce the approach of combining a microdialysis probe with a custom-built magnetic resonance microprobe that allows for online metabolic analysis (1H and 13C) with high sensitivity under continuous flow conditions. This system is mounted inside an MRI scanner and allows performing simultaneously MRI experiments and rapid MRS metabolic analysis of the microdialysate. The feasibility of this approach is demonstrated by analyzing extracellular brain cancer cells (glioma) in vitro and brain metabolites in an animal model in vivo. We expect that our approach is readily translatable into clinical settings and can be used for a better and precise understanding of diseases linked to metabolic dysfunction.
机译:为了研究疾病的动物模型和患者中的代谢过程,微透析探针已经发展成为微创的强大工具。但是,远程进行的微透析液分析无法提供对微透析液成分的实时监控。理论上,微透析液可以使用MRS技术在临床前或临床MRI扫描仪中在线分析。由于NMR灵敏度低,在代谢物浓度(mM范围)低的极小溶液体积(μL)上获取实时NMR光谱是一个主要问题。为解决这一挑战,我们介绍了将微透析探针与定制的磁共振微探针结合使用的方法,该探针可进行在线代谢分析( 1 H和 13 C)连续流动条件下的灵敏度。该系统安装在MRI扫描仪内部,可以同时执行MRI实验和微量透析液的快速MRS代谢分析。通过体外分析细胞外脑癌细胞(胶质瘤)和体内动物模型中的脑代谢物,证明了这种方法的可行性。我们希望我们的方法可以很容易地转化为临床应用,并且可以用于更好,更准确地了解与代谢功能障碍有关的疾病。

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