首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Copper-catalyzed click reactions: quantification of retained copper using 64Cu-spiked Cu(I), exemplified for CuAAC reactions on liposomes
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Copper-catalyzed click reactions: quantification of retained copper using 64Cu-spiked Cu(I), exemplified for CuAAC reactions on liposomes

机译:铜催化的咔哒反应:使用64Cu掺入的Cu(I)定量保留的铜,示出了对脂质体的CUAAC反应

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The Cu(I)-catalyzed azide-alkyne cycloaddition (CuAAC) is a powerful, highly reliable and selective reaction which allows for a rapid synthesis in high yields and under mild conditions (pH, temperature). However, the cytotoxicity of copper requires its complete removal prior to an application in vivo. This is an issue especially when it comes to CuAAC reactions on macromolecular structures or drug delivery systems, as copper might be retained by these systems. Thus, a quantification of the final copper content of these systems is inevitable, which we exemplified for a CuAAC reaction on liposomes using 64Cu-spiked Cu(I). In this respect, a Cu(II) nitrate solution was irradiated at the TRIGA Mark II research reactor Mainz to obtain c.a. [64Cu]Cu(II). The irradiated solution was directly used for a CuAAC on liposomes. After purification, their copper content was calculated utilizing γ-ray spectrometry. Only 0.018% of the added 64Cu-activity was still present in the liposome containing fractions after purification. This refers to a total amount of copper of 0.17 ng. The amount of retained copper is so low, that an in vivo application of the liposomes is absolutely reasonable. Besides this particular study, the experimental methodology may be applied to study many other CuAAC reactions, used for the synthesis of radiolabeled or non-radioactive species, which are intended for human applications.
机译:Cu(I)-catalyzededα-炔烃环加成(Cuaac)是一种强大的高度可靠和选择性的反应,其允许高产率和温和条件(pH,温度)的快速合成。然而,铜的细胞毒性需要在体内施用之前完全去除。这是一个问题,特别是当涉及大分子结构或药物递送系统的Cuaac反应时,由于这些系统可以保留铜。因此,这些系统的最终铜含量的定量是不可避免的,这是使用64Cu掺入的Cu(I)对脂质体的CuAAc反应。在这方面,在Triga Mark II研究反应器Mainz下照射Cu(II)硝酸盐溶液,得到C.a. [64cu] Cu(ii)。将辐照溶液直接用于脂质体上的CUAAC。纯化后,利用γ射线光谱法计算它们的铜含量。在纯化后,含有脂质体的含量仅在脂质体的级分中仅存在0.018%。这是指0.17 ng的总量。保留铜的量如此之低,脂质体的体内施用绝对合理。除了这种特定的研究之外,可以应用实验方法来研究许多其他CuAAC反应,用于合成放射性标记或非放射性物质,这些反应用于人类应用。

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