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使用正电子发射断层扫描技术评估骨骼肌葡萄糖代谢。

Use of positron emission tomography for the assessment of skeletal muscle glucose metabolism.

作者信息

Selberg Oliver, Müller Manfred James, van den Hoff Jörg, Burchert Wolfgang

机构信息

Abteilung für Transfusionsmedizin, Medizinische Hochschule Hannover, Hannover, Germany.

出版信息

Nutrition. 2002 Apr;18(4):323-8. doi: 10.1016/s0899-9007(01)00799-7.

DOI:10.1016/s0899-9007(01)00799-7
PMID:11934545
Abstract

Positron emission tomography (PET) is a unique tool for studying regional skeletal muscle glucose metabolism and blood flow in vivo. The application of PET in the assessment of skeletal muscle glucose metabolism depends on recent improvements in instrumentation, data analysis, and production of (18)F-fluorodeoxyglucose (FDG) and (15)O water. The data presented support the validity of the (15)O water model to measure blood flow and the FDG model for the determination of glucose uptake and glucose kinetic constants (influx, efflux, and phosphorylation) in skeletal muscle. However, quantification of absolute glucose transport and backflux rates should be applied with caution because those calculations are based on unproven assumptions such as validity of the lumped constant for these individual processes and constancy of the free and accessible intracellular glucose pool. It is evident that quantification of glucose fluxes using the triple tracer technology generates conflicting data that violate assumptions inherent in triple tracer or PET modeling. Further FDG-PET studies will have to solve those problems to provide more insight into the regulatory processes of glucose transport and phosphorylation of different insulin-resistant disease states. Promising new areas of PET research will include not only detailed study of glucose kinetics but also the measurement of muscle protein synthesis in vivo, which is of interest in a variety of conditions.

摘要

正电子发射断层扫描(PET)是一种用于在体内研究局部骨骼肌葡萄糖代谢和血流的独特工具。PET在评估骨骼肌葡萄糖代谢方面的应用取决于仪器设备、数据分析以及(18)F-氟脱氧葡萄糖(FDG)和(15)O水生产方面的近期进展。所呈现的数据支持(15)O水模型用于测量血流以及FDG模型用于测定骨骼肌中葡萄糖摄取和葡萄糖动力学常数(流入、流出和磷酸化)的有效性。然而,绝对葡萄糖转运和回流速率的量化应谨慎应用,因为这些计算基于未经证实的假设,例如这些个体过程的集总常数的有效性以及游离且可利用的细胞内葡萄糖池的恒定性。显然,使用三重示踪技术对葡萄糖通量进行量化会产生相互矛盾的数据,这些数据违背了三重示踪或PET建模所固有的假设。进一步的FDG-PET研究将必须解决这些问题,以便更深入地了解不同胰岛素抵抗疾病状态下葡萄糖转运和磷酸化的调节过程。PET研究有前景的新领域不仅将包括对葡萄糖动力学的详细研究,还将包括体内肌肉蛋白质合成的测量,这在多种情况下都备受关注。

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