(99m) techtium - demogastrin 1的分布、消除和肾脏处理。

Frantisek Trejtnar, Alice Laznickova, Milan Laznicek, Zbynek Novy, Theodosia Maina, Berthold A Nock, Martin Behe
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引用次数: 2

摘要

放射性标记胆囊收缩素/胃泌素(CCK)受体靶向肽在某些恶性肿瘤的放射诊断和放疗中是很有前途的化合物。本研究评估了CCK-2受体特异性肽Demogastrin 1在大鼠体内的药代动力学特征,该肽用锝-99m ((99m)Tc-Demogastrin 1)标记。为了研究(99m)Tc-Demogastrin 1在大鼠体内的命运,进行了体内生物分布和消除研究,并测定了灌注大鼠肝脏和肾脏的消除参数。生物分布研究表明(99m)Tc-Demogastrin 1能迅速从血液和大多数器官中清除。在富含CCK-2受体的器官(如胃)中检测到大量的放射性。在富含CCK-1受体的器官中发现低放射性。肠道和胃的放射性下降相对缓慢。观察到放射性物质在肾脏中高度和长期保留。通过胆汁消除(99m)Tc-Demogastrin 1是微不足道的。在体内消除实验中,观察到高而快速的肾脏排泄。在灌注肾中,发现肾小球滤过是(99m)Tc-Demogastrin 1的主要肾脏排泄机制。Demogastrin 1优先分布于表达CCK-2受体的器官。(99m)Tc-Demogastrin 1在大鼠体内的决定性消除途径是尿排泄。高且长时间的肾潴留可能限制该化合物的潜在临床应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distribution, elimination, and renal handling of (99m)technetium-Demogastrin 1.
Radiolabeled cholecystokinin/gastrin (CCK) receptor-targeting peptides are promising compounds for radiodiagnosis and radiotherapy of certain malignancies. This study evaluated the pharmacokinetic profile of a CCK-2 receptor-specific peptide, Demogastrin 1, labeled with technetium-99m ((99m)Tc-Demogastrin 1), in rats. To investigate the fate of (99m)Tc-Demogastrin 1 in the rat, biodistribution and elimination studies in vivo were performed, and elimination parameters in perfused rat liver and kidney were determined. Biodistribution studies showed that (99m)Tc-Demogastrin 1 was rapidly cleared from the blood and most organs. A significant amount of radioactivity was detected in the CCK-2 receptor-rich organs, such as the stomach. Low radioactivity was found in the CCK-1 receptor-rich organs. Radioactivity in bowels and stomach declined relatively slowly. High and long-term retention of radioactivity in the kidneys was observed. Elimination of (99m)Tc-Demogastrin 1 via the bile was negligible. A high and rapid renal excretion was observed in elimination experiments in vivo. In the perfused kidney, glomerular filtration was found to be the main renal excretion mechanism of (99m)Tc-Demogastrin 1. Demogastrin 1 was distributed preferentially to the organs expressing CCK-2 receptors. The decisive elimination route of (99m)Tc-Demogastrin 1 in rats was urinary excretion. A high and prolonged renal retention may limit potential clinical use of the compound.
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