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含二硫代次膦酸酯配体的锝-99m氮化物放射性药物的合成与生物分布:一类脑显像剂。

Synthesis and biodistribution of nitrido technetium-99m radiopharmaceuticals with dithiophosphinate ligands: a class of brain imaging agents.

作者信息

Bellande E, Comazzi V, Laine J, Lecayon M, Pasqualini R, Duatti A, Hoffschir D

机构信息

CIS bio international, Gif-sur-Yvette, France.

出版信息

Nucl Med Biol. 1995 Apr;22(3):315-20. doi: 10.1016/0969-8051(94)00107-u.

Abstract

The symmetrical complexes [99mTc][TcN(R2PS2)2] [R = CH3, CH2CH3, CH2CH2CH3, CH2(CH3)2], and the unsymmetrical complex [99mTc][TcN(Me2PS2)(Et2PS2)] have been prepared, at tracer level, through a two-step procedure involving the preliminary formation of a prereduced technetium nitrido intermediate followed by substitution reaction onto this species by the appropriate dithiophosphinate ligand [R2PS2]Na. The chemical identity of the resulting complexes have been established by comparison with the corresponding 99Tc-analogs prepared, at macroscopic level, by reacting the complex [99TcNCl4] [n-Bu4N] (n-Bu = n-butyl) with an excess of ligand in methanol, and characterized by elemental analyses and spectroscopic techniques. The complexes are neutral and lipophilic, and possess a square pyramidal geometry, with an apical Tc identical to N group and two dithiophosphinate ligands spanning the four positions on the basal plane through the four sulfur atoms of the > PS2 group. In vitro studies showed that these radiopharmaceuticals are stable in solution and that their chemical identity was not altered after incubation with rat blood. Biodistribution studies have been carried out in rats and primates. The results demonstrate that these compounds are significantly retained into the brain of these animals for a prolonged time. Planar gamma camera images have been obtained in monkeys showing a good visualization of the cerebral region. However, the existence of persistent blood activity yields a brain/blood ratio lower than that observed with other 99mTc-based brain perfusion imaging agents.

摘要

已通过两步法在示踪剂水平制备了对称配合物[99mTc][TcN(R2PS2)2] [R = 甲基、乙基、丙基、异丙基]和不对称配合物[99mTc][TcN(二甲基二硫代磷酸酯)(二乙基二硫代磷酸酯)],该方法包括预先形成预还原的锝氮中间体,然后通过适当的二硫代次膦酸酯配体[R2PS2]Na对该物种进行取代反应。通过与在宏观水平上通过使配合物[99TcNCl4][四正丁基铵](正丁基 = 正丁基)与过量配体在甲醇中反应制备的相应99Tc类似物进行比较,确定了所得配合物的化学特性,并通过元素分析和光谱技术对其进行了表征。这些配合物呈中性且亲脂,具有四方锥几何结构,顶端的锝与氮基团相同,两个二硫代次膦酸酯配体通过>PS2基团的四个硫原子跨越基面上的四个位置。体外研究表明,这些放射性药物在溶液中稳定,并且与大鼠血液孵育后其化学特性未发生改变。已在大鼠和灵长类动物中进行了生物分布研究。结果表明,这些化合物在这些动物的大脑中长时间显著保留。已在猴子中获得平面γ相机图像,显示大脑区域可视化良好。然而,持续的血液活性导致脑/血比值低于使用其他基于99mTc的脑灌注显像剂所观察到的比值。

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