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用于骨骼成像的99mTc标记磷酸盐和膦酸盐试剂的比较。

Comparison of 99mTc-labeled phosphate and phosphonate agents for skeletal imaging.

作者信息

Davis M A, Jones A L

出版信息

Semin Nucl Med. 1976 Jan;6(1):19-31. doi: 10.1016/s0001-2998(76)80033-5.

Abstract

The use of 99mTc-labeled phosphate and phosphonate compounds in place of 18F, 85Sr, and 87Sr for bone scintigraphy has become commonplace throughout the world in a relatively short time. The labeling of polyphosphate with 99mTc 4 years ago, followed rapidly by the introduction of 99mTc-labeled pyrophosphate for skeletal imaging, must therefore be regarded as a major contribution to the practice of diagnostic nuclear medicine. The markedly reduced patient radiation exposure and concomitant increase in photon detection efficiency derived from the more favorable physical decay characteristics of 99mTc led to increased sensitivity and resolution and in turn to improved diagnostic efficacy. The subsequent clinical use of the phosphonate complex 99mTc-HEDP represented a further modification of the same basic approach. Current clinical trials with 99mTc-labeled methylene diphosphonic acid (MDP), which appears to demonstrate enhanced biologic properties for scintigraphy of the osseous structures, is the latest example in this series of refinements. This article compares the technetium-labeled agents already in clinical use and, using animal data, contrasts them with several new multifunctional phosphonates and the novel inorganic compound sodium imidodiphosphate (IDP). In addition, an attempt is made to clarify the conflicting evidence in the nuclear medicine literature regarding the relationship between polyphosphate chain length and skeletal uptake.

摘要

在骨闪烁显像中,使用99mTc标记的磷酸盐和膦酸盐化合物替代18F、85Sr和87Sr,在相对较短的时间内已在全球变得很普遍。因此,4年前用99mTc标记多聚磷酸盐,随后很快引入用于骨骼成像的99mTc标记焦磷酸盐,必须被视为对诊断核医学实践的一项重大贡献。99mTc更有利的物理衰变特性使患者辐射暴露显著降低,同时光子检测效率提高,从而提高了灵敏度和分辨率,进而提高了诊断效能。随后膦酸盐复合物99mTc-HEDP的临床应用代表了对同一基本方法的进一步改进。目前用99mTc标记亚甲基二膦酸(MDP)的临床试验似乎显示出其在骨结构闪烁显像方面具有增强的生物学特性,这是这一系列改进中的最新例子。本文比较了已在临床使用的锝标记剂,并利用动物数据将它们与几种新型多功能膦酸盐和新型无机化合物亚氨基二膦酸钠(IDP)进行对比。此外,还试图澄清核医学文献中关于多聚磷酸盐链长度与骨骼摄取之间关系的相互矛盾的证据。

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