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一种新型侧桥联混合膦酸酯/乙酸酯侧基环胺:合成、表征及64Cu小动物正电子发射断层显像

A novel side-bridged hybrid phosphonate/acetate pendant cyclam: synthesis, characterization, and 64Cu small animal PET imaging.

作者信息

Boswell C Andrew, Regino Celeste A S, Baidoo Kwamena E, Wong Karen J, Milenic Diane E, Kelley James A, Lai Christopher C, Brechbiel Martin W

机构信息

Radioimmune and Inorganic Chemistry Section, Radiation Oncology Branch, National Cancer Institute, National Institutes of Health, Building 10 Center Drive, Bethesda, MA 20892-1088, United States.

出版信息

Bioorg Med Chem. 2009 Jan 15;17(2):548-52. doi: 10.1016/j.bmc.2008.11.073. Epub 2008 Dec 6.

Abstract

Copper-64 (t(1/2)=12.7h; beta(+): 0.653 MeV, 17.4%; beta(-): 0.578 MeV, 39%) is produced in a biomedical cyclotron and has applications in both imaging and therapy. Macrocyclic chelators are widely used as bifunctional chelators to bind copper radionuclides to antibodies and peptides owing to their relatively high kinetic stability. A novel side-bridged cyclam featuring both pendant acetate and phosphonate groups was synthesized using a Kabachnik-Fields approach followed by hydrobromic acid deprotection. The Cu(II) complex of the novel ligand was synthesized, radiolabeling with (64)Cu was demonstrated, and in vitro (serum) stability was performed. In addition, in vivo distribution and clearance of the (64)Cu-labeled complex was visualized by positron emission tomography (PET) imaging. This novel chelate may be useful in (64)Cu-mediated diagnostic positron emission tomography (PET) imaging as well as targeted radiotherapeutic applications.

摘要

铜 - 64(半衰期(t_{1/2}=12.7)小时;正电子发射(\beta^{+}):0.653兆电子伏特,占17.4%;电子发射(\beta^{-}):0.578兆电子伏特,占39%)由生物医学回旋加速器产生,在成像和治疗方面均有应用。大环螯合剂因其相对较高的动力学稳定性,被广泛用作双功能螯合剂,用于将铜放射性核素与抗体和肽结合。采用卡巴契尼克 - 菲尔德反应法,随后用氢溴酸脱保护,合成了一种具有侧链乙酸酯和膦酸酯基团的新型侧桥环胺。合成了新型配体的铜(II)配合物,证明其能用(^{64}Cu)进行放射性标记,并进行了体外(血清)稳定性研究。此外,通过正电子发射断层扫描(PET)成像观察了(^{64}Cu)标记配合物的体内分布和清除情况。这种新型螯合物可能在(^{64}Cu)介导的诊断性正电子发射断层扫描(PET)成像以及靶向放射治疗应用中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfd0/2636550/fa1d3fae4bb6/nihms81932f1.jpg

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