Horiuchi K, Yokoyama A, Tanaka H, Saji H, Odori T, Morita R, Torizuka K
Eur J Nucl Med. 1981 Dec;6(12):573-9. doi: 10.1007/BF00252672.
Studies on 99mTc-Penicillamine (Tc-Pen) have given us some insight into the significance of the technetium coordination state in hepatobiliary clearance behavior. A 99mTc-complex of pyridoxal and glutamate (Tc-PG) prepared by Baker et al. (1975) using an autoclaving process or by a Sn-Resin kit method (Horiuchi 1981) was compared with a 99mTc-complex of pyridoxal and isoleucine (Tc-PI) prepared by the method of Kato and Hazue (1978) through an intermediate compound of stannous ion, at room temperature. Tc-PG and TcPI complexes analyzed by thin layer chromatography, sephadex column chromatography (G-15), octanol extraction, and ligand exchange reaction showed different chemical properties. Their biological evaluation also demonstrated great differences in biodistribution in mice, metabolic studies, protein binding, and rat bile excretion. Tc-PG was estimated as an hepatobiliary agent with strong metal-ligand binding, inert to ligand exchange reaction with Pen at physiological pH; the likely occurrence of technetium in a mononuclear or dinuclear state providing the great stability observed in its biological and in vivo behavior was compared with the relatively weaker binding observed in Tc-PI, a highly lipophilic complex of high liver partition but of low stability, denoting its different chemical characteristics. The technetium coordination state in radiopharmaceuticals is responsible for the integrity of the molecule while in the blood pool and its relevance in impaired liver uptake is discussed.
对99m锝-青霉胺(Tc-Pen)的研究让我们对锝配位状态在肝胆清除行为中的重要性有了一定了解。将贝克等人(1975年)通过高压灭菌法或用锡树脂试剂盒法(堀内,1981年)制备的吡哆醛与谷氨酸的99m锝配合物(Tc-PG),与加藤和羽江(1978年)通过亚锡离子中间化合物在室温下制备的吡哆醛与异亮氨酸的99m锝配合物(Tc-PI)进行了比较。通过薄层色谱法、葡聚糖凝胶柱色谱法(G-15)、辛醇萃取和配体交换反应分析的Tc-PG和TcPI配合物显示出不同的化学性质。它们的生物学评估也表明,在小鼠体内分布、代谢研究、蛋白质结合和大鼠胆汁排泄方面存在很大差异。Tc-PG被认为是一种具有强金属-配体结合能力的肝胆显像剂,在生理pH值下对与青霉胺的配体交换反应呈惰性;单核或双核状态的锝可能出现,这为其在生物学和体内行为中观察到的高稳定性提供了解释,与之相比,Tc-PI是一种具有高肝摄取率但稳定性低的高亲脂性配合物,其结合相对较弱,这表明了其不同的化学特性。放射性药物中的锝配位状态在血池中决定了分子的完整性,并讨论了其与肝脏摄取受损的相关性。