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首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Gallium-68 and scandium-44 labelled radiotracers based on curcumin structure linked to bifunctional chelators: Synthesis and characterization of potential PET radiotracers
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Gallium-68 and scandium-44 labelled radiotracers based on curcumin structure linked to bifunctional chelators: Synthesis and characterization of potential PET radiotracers

机译:镓-68和Scandium-44基于姜黄素结构的无抗离子机构与双官能螯合剂连接:潜在的宠物放射体机构的合成和表征

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Curcumin metal complexes showed widespread applications in medicine and can be exploited as a lead structure for developing new tracers for nuclear medicine application. Herein, the synthesis, chemical characterization and radiolabelling with gallium-68 and scandium-44 of two new targeting vectors based on curcumin scaffolds and linked to the chelators 1,4,7-triazacyclononane,1-glutaric acid-4,7-acetic acid (NODAGA) and 1,4-bis(carboxymethyl)-6-[bis(carboxymethyl)]amino-6-methylperhydro-1,4-diazepine (AAZTA) are reported. Synthesis of the precursors could be achieved with a 13% and 11% yield and radiolabelling generally afforded rapid incorporation under mild conditions (> 95%). Stability in physiological media (similar to 75% after 2 h in human blood for [Ga-68]Ga - /[Sc-44]Sc-AAZTA-PC21 and similar to 60% for [Ga-68] Ga-NODAGA-C21, respectively) are generally enhanced if compared to the previously radiolabelled analogues. MSn fragmentation experiments showed high stability of the AAZTA-PC21 structure mainly due to the pyrazole derivatization of the curcumin keto-enol moiety and a more feasible radiolabelling was noticed both with gallium-68 and scandium-44 mainly due to the AAZTA-chelator properties. [Ga-68]Ga-NODAGA-C21 showed the most favorable lipophilicity value (logD = 1.3). Due to these findings, both compounds appear to be promising candidates for the imaging of colorectal cancer, but further studies such as in vitro uptake and in vivo biodistribution experiments are needed.
机译:姜黄素金属配合物在医学中展示了广泛的应用,可作为开发用于开发核医学应用的新示踪剂的铅结构。本文,基于姜黄素支架的镓-68和两种新靶向载体的钪-44的合成,化学表征和放射性标记,并与螯合剂1,4,7-三缩琥珀烷,1-戊二酸-4,7-乙酸连接(Nodaga)和1,4-双(羧甲基)-6- [双(羧甲基)]氨基-6-甲基溴-1,4-二氮杂肠(Aazta)。可以通过13%和11%的产率和11%的产率和放射性标记物达到前体的合成,并在温和条件下提供快速掺入(> 95%)。生理介质中的稳定性(在人血液中2小时后的75%用于[Ga-68] Ga-/ [SC-44] SC-AAZTA-PC21,并且类似于[GA-68] GA-Nodaga-C21的60%如果与先前放射性标记的类似物相比,分别通常增强。 MSN碎片实验表明AAZTA-PC21结构的高稳定性主要是由于姜黄素酮烯部分的吡唑衍生化,并用镓-68和钪-44均采用镓-68和链钪-44表示更可行的放射性标记。 [Ga-68] Ga-Nodaga-C21显示出最有利的亲脂性值(LOGD = 1.3)。由于这些发现,两种化合物似乎是对结直肠癌成像的承诺候选者,但需要进一步的研究,例如体外吸收和体内生物分布实验。

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