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一种新型的基于2-氰基苯并噻唑的(18)F Prosthetic基团,用于与带有1,2-氨基硫醇的靶向载体偶联。

A novel 2-cyanobenzothiazole-based (18)F prosthetic group for conjugation to 1,2-aminothiol-bearing targeting vectors.

作者信息

Inkster James A H, Colin Didier J, Seimbille Yann

机构信息

University Hospitals of Geneva, Cyclotron Unit, Geneva, Switzerland.

出版信息

Org Biomol Chem. 2015 Mar 28;13(12):3667-76. doi: 10.1039/c4ob02637c.

Abstract

In a bid to find an efficient means to radiolabel biomolecules under mild conditions for PET imaging, a bifunctional (18)F prosthetic molecule has been developed. The compound, dubbed [(18)F]FPyPEGCBT, consists of a 2-substituted pyridine moiety for [(18)F]F(-) incorporation and a 2-cyanobenzothiazole moiety for coupling to terminal cysteine residues. The two functionalities are separated by a mini-PEG chain. [(18)F]FPyPEGCBT could be prepared from its corresponding 2-trimethylammonium triflate precursor (100 °C, 15 min, MeCN) in preparative yields of 11% ± 2 (decay corrected, n = 3) after HPLC purification. However, because the primary radiochemical impurity of the fluorination reaction will not interact with 1,2-aminothiol functionalities, the (18)F prosthetic could be prepared for bioconjugation reactions by way of partial purification on a molecularly imprinted polymer solid-phase extraction cartridge. [(18)F]FPyPEGCBT was used to (18)F-label a cyclo-(RGDfK) analogue which was modified with a terminal cysteine residue (TCEP·HCl, DIPEA, 30 min, 43 °C, DMF). Final decay-corrected yields of (18)F peptide were 7% ± 1 (n = 9) from end-of-bombardment. This novel integrin-imaging agent is currently being studied in murine models of cancer. We argue that [(18)F]FPyPEGCBT holds significant promise owing to its straightforward preparation, 'click'-like ease of use, and hydrophilic character. Indeed, the water-tolerant radio-bioconjugation protocol reported herein requires only one HPLC step for (18)F peptide purification and can be carried out remotely using a single automated synthesis unit over 124-132 min.

摘要

为了找到一种在温和条件下对生物分子进行放射性标记以用于正电子发射断层扫描(PET)成像的有效方法,已开发出一种双功能的(18)F 修饰分子。该化合物被称为[(18)F]FPyPEGCBT,由用于掺入[(18)F]F(-)的 2-取代吡啶部分和用于与末端半胱氨酸残基偶联的 2-氰基苯并噻唑部分组成。这两种功能由一个微型聚乙二醇链隔开。[(18)F]FPyPEGCBT 可由其相应的 2-三甲基铵三氟甲磺酸盐前体(100℃,15 分钟,乙腈)制备,经高效液相色谱(HPLC)纯化后,制备产率为 11%±2(衰变校正,n = 3)。然而,由于氟化反应的主要放射化学杂质不会与 1,2-氨基硫醇功能基团相互作用,因此可以通过在分子印迹聚合物固相萃取柱上进行部分纯化来制备用于生物共轭反应的(18)F 修饰分子。[(18)F]FPyPEGCBT 用于对用末端半胱氨酸残基修饰的环(RGDfK)类似物进行(18)F 标记(三(2-羧乙基)膦盐酸盐(TCEP·HCl),N,N-二异丙基乙胺(DIPEA),30 分钟,43℃,N,N-二甲基甲酰胺(DMF))。从轰击结束时起,(18)F 肽的最终衰变校正产率为 7%±1(n = 9)。这种新型整合素成像剂目前正在癌症小鼠模型中进行研究。我们认为[(18)F]FPyPEGCBT 因其制备简单、具有类似“点击”的易用性和亲水特性而具有重大前景。实际上,本文报道的耐水放射性生物共轭方案仅需一步 HPLC 步骤即可纯化(18)F 肽,并且可以在 124 - 132 分钟内使用单个自动合成单元远程进行。

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