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一种基于硫脲桥联的 Tc(CO)-二吡啶甲胺-2-硝基咪唑配合物用于肿瘤乏氧靶向:利用可代谢的硫脲桥改善药代动力学。

A thiourea-bridged Tc(CO)-dipicolylamine-2-nitroimidazole complex for targeting tumor hypoxia: Utilizing metabolizable thiourea-bridge to improve pharmacokinetics.

机构信息

Radiopharmaceuticals Division, Bhabha Atomic Research Centre, Mumbai, India.

Homi Bhabha National Institute, Mumbai, Anushaktinagar, India.

出版信息

Drug Dev Res. 2024 Sep;85(6):e22258. doi: 10.1002/ddr.22258.

Abstract

The 2-nitroimidazole based Tc-radiopharmaceuticals are widely explored for imaging tumor hypoxia. Radiopharmaceuticals for targeting hypoxia are often lipophilic and therefore, show significant uptake in liver and other vital organs. In this context, lipophilic radiopharmaceuticals with design features enabling faster clearance from liver may be more desirable. A dipicolylamine-NCS bifunctional chelator that could generate a thiourea-bridge up on conjugation to primary amine bearing molecule was used to synthesize a 2-nitroimidazole-dipicolyl amine ligand for radiolabeling with Tc(CO) core. Corresponding Re(CO)-analogue was prepared to establish the structure of 2-nitroimidazole-Tc(CO) complex prepared in trace level. The 2-nitroimidazole-Tc(CO) complex showed a hypoxic to normoxic ratio of ~2.5 in CHO cells at 3 h. In vivo, the complex showed accumulation and retention in tumor with high tumor to blood and tumor to muscle ratio. The study demonstrated the utility of metabolizable thiourea-bridge in 2-nitroimidazole-Tc(CO) complex in inducing faster clearance of the radiotracer from liver. The dipicolylamine-NCS bifunctional chelator reported herein can also be used for radiolabeling other class of target specific molecules with Tc(CO) core.

摘要

基于 2-硝基咪唑的 Tc 放射性药物广泛用于肿瘤乏氧成像。靶向乏氧的放射性药物通常具有亲脂性,因此在肝脏和其他重要器官中会有明显摄取。在这种情况下,具有更快从肝脏清除设计特点的亲脂性放射性药物可能更可取。本文使用一种可以在与带伯胺的分子连接时生成硫脲桥的二吡啶胺-NCS 双功能螯合剂,合成了一种用于 Tc(CO)核标记的 2-硝基咪唑-二吡啶胺配体。相应的 Re(CO)类似物被制备以确定在痕量水平下制备的 2-硝基咪唑-Tc(CO)配合物的结构。在 CHO 细胞中,2-硝基咪唑-Tc(CO)配合物在 3 小时时表现出约 2.5 的缺氧与正常氧比值。在体内,该复合物在肿瘤中表现出积累和保留,具有高肿瘤与血液和肿瘤与肌肉的比值。该研究证明了代谢性硫脲桥在 2-硝基咪唑-Tc(CO)复合物中诱导放射性示踪剂更快从肝脏清除的效用。本文报道的二吡啶胺-NCS 双功能螯合剂也可用于 Tc(CO)核标记其他类别的靶向特定分子。

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