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[18F]氟乙基三唑标记的[Tyr3]奥曲肽类似物的点击化学合成及体外评价。

Synthesis and in vitro evaluation of [18F]fluoroethyl triazole labelled [Tyr3]octreotate analogues using click chemistry.

机构信息

GE Healthcare, MDx Discovery, Hammersmith Hospital, Du Cane Road, London W12 0NN, UK.

出版信息

Bioorg Med Chem Lett. 2011 May 15;21(10):3122-7. doi: 10.1016/j.bmcl.2011.03.016. Epub 2011 Mar 30.

Abstract

A novel class of alkyne linked [Tyr(3)]octreotate analogues have been labelled by a copper catalysed azide-alkyne cycloaddition reaction (CuAAC) to form a 1,4-substituted triazole using the reagent [(18)F]2-fluoroethyl azide. An unexpected variability in reactivity during the CuAAC reaction was observed for each alkyne analogue which has been investigated. Two lead alkyne linked [Tyr(3)]octreotate analogues, G-TOCA (3a) and βAG-TOCA (5a) have been identified to be highly reactive in the click reaction showing complete conversion to the [(18)F]2-fluoroethyl triazole linked [Tyr(3)]octreotate analogues FET-G-TOCA (3b) and FET-βAG-TOCA (5b) under mild conditions and with short synthesis times (5 min at 20 °C). As well as ease of synthesis, in vitro binding to the pancreatic tumour AR42J cells showed that both FET-G-TOCA and FET-βAG-TOCA have high affinity for the somatostatin receptor with IC(50) of 4.0±1.4, and 1.6±0.2 nM, respectively.

摘要

一种新型的炔键连接 [Tyr(3)]奥曲肽类似物已通过铜催化的叠氮-炔环加成反应 (CuAAC) 进行标记,使用试剂 [(18)F]2-氟乙基叠氮化物形成 1,4-取代的三唑。在对每个炔键类似物进行研究时,观察到 CuAAC 反应中反应性存在意外的可变性。两种具有先导性的炔键连接 [Tyr(3)]奥曲肽类似物,G-TOCA(3a)和βAG-TOCA(5a)在点击反应中表现出高度的反应活性,在温和的条件下和较短的合成时间(20°C 下 5 分钟)下完全转化为 [(18)F]2-氟乙基三唑连接的 [Tyr(3)]奥曲肽类似物 FET-G-TOCA(3b)和 FET-βAG-TOCA(5b)。除了易于合成外,体外结合胰腺肿瘤 AR42J 细胞表明,FET-G-TOCA 和 FET-βAG-TOCA 对生长抑素受体均具有高亲和力,IC(50)分别为 4.0±1.4 和 1.6±0.2 nM。

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