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锝-99m标记的亚氨基二膦酸锡,一种用于骨扫描的新型放射性诊断剂:与其他99mTc络合物的比较。

Technetium-99m-labeled stannous imidodiphosphate, a new radiodiagnostic agent for bone scanning: comparison with other 99mTc complexes.

作者信息

Subramanian G, McAfee J G, Blair R J, Rosenstreich M, Coco M, Duxbury C E

出版信息

J Nucl Med. 1975 Dec;16(12):1137-43.

PMID:1194964
Abstract

Imidodiphosphate (IDP) is an analog of pyrophosphate and diphosphonate, with a P-N-P bond instead of P-O-P or P-C-P. We have labeled IDP with 99mTc quantitatively (98%) using stannous ions as the reducing/complexing agent in a freeze-dried kit form. Radiobioassay of this compound was carried out in rabbits and the results were compared with those of eight other Tc-labeled bone-imaging agents, using the performance of simultaneously administered 85Sr as a reference standard. The 99mTc-IDP concentrated 20% higher in the bone, and its soft-tissue and blood levels were lower than with 85Sr. By comparison, the concentrations in the bone of the other 99mTc agents were 20% less than that of 85Sr. Regarding blood levels, Tc-IDP performed worse than the Tc-diphosphonate but better than the pyrophosphate and the other technetium complexes. Scintillation camera images of 99mTc-IDP in both rabbits and dogs showed excellent details of the skeleton. In a preliminary human study, images with 99mTc-IDP were somewhat inferior to those comparably procured with 99Tc-methylene diphosphonate, but count rates with the IDP complex were about twice those with the MDP compound. Because of its better bone uptake, however, it is suggested that 99mTc-IDP may be clinically useful in spite of its relatively slow blood clearance.

摘要

亚氨基二磷酸酯(IDP)是焦磷酸酯和二膦酸盐的类似物,其具有P-N-P键而非P-O-P或P-C-P键。我们已使用亚锡离子作为冻干试剂盒形式的还原/络合剂,对IDP进行了99mTc的定量标记(98%)。在兔子身上对该化合物进行了放射性生物测定,并将结果与其他八种锝标记的骨显像剂的结果进行了比较,同时给予85Sr作为参考标准。99mTc-IDP在骨中的浓聚比85Sr高20%,其软组织和血液中的水平低于85Sr。相比之下,其他99mTc显像剂在骨中的浓度比85Sr低20%。关于血液水平,Tc-IDP的表现比Tc-二膦酸盐差,但比焦磷酸盐和其他锝络合物好。兔子和狗体内99mTc-IDP的闪烁相机图像显示骨骼细节清晰。在一项初步的人体研究中,99mTc-IDP的图像略逊于用99Tc-亚甲基二膦酸盐获得的类似图像,但IDP络合物的计数率约为MDP化合物的两倍。然而,由于其更好的骨摄取,尽管其血液清除相对较慢,但仍表明99mTc-IDP可能具有临床应用价值。

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