Jansholt A L, Krohn K A, Stadalnik R C, Matolo N M, DeNardo G L
J Nucl Med. 1978 Sep;19(9):1036-44.
Various Tc-99m-labeled compounds have been suggested as replacements for [I-131] rose bengal for imaging of the hepatobiliary system. Among such compounds are Schiff's bases, which are tin-free Tc-chelates easily prepared by 30-min autoclaving of an equimolar mixture of pyridoxal and an amino acid at pH 8.5. We have compared the properties of several Schiff's bases, including Tc-99m pyridoxylideneglutamate (Tc PyG) with [I-131] rose bengal. Under conditions described, Tc-PyG can be prepared free of Tc-pyridoxal and with less than 2% TcO4- radiochemical impurity. Blood clearance and biliary excretion were studied in three animal models, and in normal human volunteers. In all animal models, Tc-PyG initially cleared from the blood more rapidly than rose bengal, but a significant amount of Tc-PyG was excreted in the urine, this in contrast to [I-131] rose bengal which was almost completely excreted through the biliary system. Species differences were observed in the degree of urinary versus biliary clearance of Tc-PyG, with significantly greater urinary excretion in dogs than in monkeys and rabbits. Replacing glutamate with other amino acids did not significantly increase the blood clearance rate or decrease urinary excretion, so that Tc-PyG appears to be at least as good as any of the others studied. Tc-PyG was only 20% bound to plasma proteins, and electrophoretic and chromatographic studies did not reveal any in vivo changes of Tc-PyG before excretion in urine or bile.
各种锝-99m标记的化合物已被提议作为[碘-131]玫瑰红的替代品,用于肝胆系统成像。这类化合物包括席夫碱,它们是无锡的锝螯合物,通过在pH 8.5条件下将吡哆醛和氨基酸的等摩尔混合物高压灭菌30分钟即可轻松制备。我们比较了几种席夫碱的性质,包括锝-99m吡哆醛谷氨酸盐(Tc PyG)与[碘-131]玫瑰红的性质。在所述条件下,可制备出不含锝-吡哆醛且放射化学杂质高锝酸盐含量低于2%的Tc-PyG。在三种动物模型和正常人类志愿者中研究了血液清除率和胆汁排泄情况。在所有动物模型中,Tc-PyG最初从血液中清除的速度比玫瑰红快,但有大量的Tc-PyG经尿液排出,这与几乎完全通过胆汁系统排泄的[碘-131]玫瑰红形成对比。在Tc-PyG的尿液清除与胆汁清除程度方面观察到了物种差异,犬类的尿液排泄量显著高于猴类和兔类。用其他氨基酸替代谷氨酸不会显著提高血液清除率或减少尿液排泄,因此Tc-PyG似乎至少与所研究的其他任何一种化合物一样好。Tc-PyG与血浆蛋白的结合率仅为20%,电泳和色谱研究未发现Tc-PyG在经尿液或胆汁排泄之前在体内有任何变化。