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Comprehensive Radiolabeling, Stability, and Tissue Distribution Studies of Technetium-99m Single Amino Acid Chelates (SAAC)

机译:net 99m单氨基酸螯合物(SAAC)的全面放射性标记,稳定性和组织分布研究

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Technetium tricarbonyl chemistry has been a subject of interest in radiopharmaceutical development over the past decade. Despite the extensive work done on developing chelates for Tc(I), a rigorous investigation of the impact of changing donor groups and labeling conditions on radiochemical yields and/or distribution has been lacking. This information is crucially important if these platforms are going to be used to develop molecular imaging probes. Previous studies on the coordination chemistry of the {M(CO)3}+ core have established alkylamine, aromatic nitrogen heterocycles, and carboxylate donors as effective chelating ligands. These observations led to the design of tridentate ligands derived from the amino acid lysine. Such amino acid analogues provide a tridentate donor set for chelation to the metal and an amino acid functionality for conjugation to biomolecules. We recently developed a family of single amino acid chelates (SAAC) that serve this function and can be readily incorporated into peptides via solid-phase synthesis techniques. As part of these continuing studies, we report here on the radiolabeling with technetium-99m (~(99m)Tc) and stability of a series of SAAC analogues of lysine. The complexes studied include cationic, neutral, and anionic complexes. The results of tissue distribution studies with these novel complexes in normal rats demonstrate a range of distribution in kidney, liver, and intestines.
机译:在过去十年中,三羰基化学一直是放射性药物开发中的一个令人感兴趣的主题。尽管在开发Tc(I)螯合物方面已做了大量工作,但仍缺乏对变化的供体基团和标记条件对放射化学收率和/或分布的影响的严格研究。如果这些平台将用于开发分子成像探针,则此信息至关重要。以前对{M(CO)3} +核的配位化学的研究已确定烷基胺,芳族氮杂环和羧酸盐供体为有效的螯合配体。这些观察结果导致衍生自氨基酸赖氨酸的三齿配体的设计。这样的氨基酸类似物提供了用于与金属螯合的三齿供体,并提供了与生物分子结合的氨基酸官能度。我们最近开发了具有此功能的单氨基酸螯合物(SAAC)家族,可以很容易地通过固相合成技术将其掺入肽中。作为这些持续研究的一部分,我们在这里报告on 99m(〜(99m)Tc)的放射性标记和一系列SAAC赖氨酸类似物的稳定性。研究的络合物包括阳离子,中性和阴离子络合物。用这些新型复合物在正常大鼠中进行组织分布研究的结果表明,在肾脏,肝脏和肠道中分布范围很广。

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