Dubois F, Depresseux J C, Bontemps L, Demaison L, Keriel C, Mathieu J P, Pernin C, Marti-Batlle D, Vidal M, Cuchet P
Eur J Nucl Med. 1986;11(11):453-8. doi: 10.1007/BF00261009.
The aim of the present study was to demonstrate that it is possible to estimate the intracellular metabolism of a fatty acid labelled with iodine using external radioactivity measurements. 123I-16-iodo-9-hexadecenoic acid (IHA) was injected close to the coronary arteries of isolated rat hearts perfused according to the Langendorff technique. The time course of the cardiac radioactivity was measured using an INa crystal coupled to an analyser. The obtained curves were analysed using a four-compartment mathematical model, with the compartments corresponding to the vascular-IHA (O), intramyocardial free-IHA (1), esterified-IHA (2) and iodide (3) pools. Curve analysis using this model demonstrated that, as compared to substrate-free perfusion, the presence of glucose (11 mM) increased IHA storage and decreased its oxidation. These changes were enhanced by the presence of insulin. A comparison of these results with measurements of the radioactivity levels within the various cellular fractions validated our proposed mathematical model. Thus, using only a mathematical analysis of a cardiac time-activity curve, it is possible to obtain quantitative information about IHA distribution in the different intracellular metabolic pathways. This technique is potentially useful for the study of metabolic effects of ischaemia or anoxia, as well as for the study of the influence of various substrates or drugs on IHA metabolism in isolated rat hearts.
本研究的目的是证明通过外部放射性测量来估计用碘标记的脂肪酸的细胞内代谢是可行的。将123I-16-碘-9-十六碳烯酸(IHA)注射到按照Langendorff技术灌注的离体大鼠心脏的冠状动脉附近。使用与分析仪耦合的碘化钠晶体测量心脏放射性的时间进程。使用四室数学模型分析获得的曲线,各室分别对应血管-IHA(O)、心肌内游离-IHA(1)、酯化-IHA(2)和碘化物(3)池。使用该模型进行的曲线分析表明,与无底物灌注相比,葡萄糖(11 mM)的存在增加了IHA的储存并降低了其氧化。胰岛素的存在增强了这些变化。将这些结果与各种细胞组分内放射性水平的测量结果进行比较,验证了我们提出的数学模型。因此,仅通过对心脏时间-活性曲线进行数学分析,就有可能获得关于IHA在不同细胞内代谢途径中分布的定量信息。该技术对于研究缺血或缺氧的代谢效应以及各种底物或药物对离体大鼠心脏中IHA代谢的影响可能是有用的。