Honka Miikka-Juhani, Rebelos Eleni, Malaspina Simona, Nuutila Pirjo
Turku PET Centre, Turku University Hospital, 20520 Turku, Finland.
Turku PET Centre, University of Turku, 20520 Turku, Finland.
Metabolites. 2022 Apr 2;12(4):321. doi: 10.3390/metabo12040321.
Evaluating in vivo the metabolic rates of the human liver has been a challenge due to its unique perfusion system. Positron emission tomography (PET) represents the current gold standard for assessing non-invasively tissue metabolic rates in vivo. Here, we review the existing literature on the assessment of hepatic metabolism, haemodynamics and cancer with PET. The tracer mainly used in metabolic studies has been [F]2-fluoro-2-deoxy-D-glucose (F-FDG). Its application not only enables the evaluation of hepatic glucose uptake in a variety of metabolic conditions and interventions, but based on the kinetics of F-FDG, endogenous glucose production can also be assessed. 14(R,S)-[F]fluoro-6-thia-Heptadecanoic acid (F-FTHA), C-Palmitate and C-Acetate have also been applied for the assessment of hepatic fatty acid uptake rates (F-FTHA and C-Palmitate) and blood flow and oxidation (C-Acetate). Oxygen-15 labelled water (O-HO) has been used for the quantification of hepatic perfusion. F-FDG is also the most common tracer used for hepatic cancer diagnostics, whereas C-Acetate has also shown some promising applications in imaging liver malignancies. The modelling approaches used to analyse PET data and also the challenges in utilizing PET in the assessment of hepatic metabolism are presented.
由于人类肝脏独特的灌注系统,在体内评估其代谢率一直是一项挑战。正电子发射断层扫描(PET)是目前在体内非侵入性评估组织代谢率的金标准。在此,我们综述了有关利用PET评估肝脏代谢、血流动力学和癌症的现有文献。代谢研究中主要使用的示踪剂是[F]2-氟-2-脱氧-D-葡萄糖(F-FDG)。它的应用不仅能够在各种代谢条件和干预措施下评估肝脏对葡萄糖的摄取,而且基于F-FDG的动力学,还可以评估内源性葡萄糖生成。14(R,S)-[F]氟-6-硫代十七烷酸(F-FTHA)、C-棕榈酸酯和C-乙酸盐也已用于评估肝脏脂肪酸摄取率(F-FTHA和C-棕榈酸酯)以及血流和氧化(C-乙酸盐)。氧-15标记水(O-HO)已用于肝脏灌注的定量分析。F-FDG也是肝癌诊断中最常用的示踪剂,而C-乙酸盐在肝脏恶性肿瘤成像方面也显示出一些有前景的应用。本文介绍了用于分析PET数据的建模方法以及在利用PET评估肝脏代谢方面所面临的挑战。