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放射化学中的逆电子需求狄尔斯-阿尔德点击反应。

The inverse electron demand Diels-Alder click reaction in radiochemistry.

作者信息

Reiner Thomas, Zeglis Brian M

机构信息

Department of Radiology, Memorial Sloan-Kettering Cancer Center, New York, NY, USA.

出版信息

J Labelled Comp Radiopharm. 2014 Apr;57(4):285-90. doi: 10.1002/jlcr.3149. Epub 2013 Dec 18.

Abstract

The inverse electron-demand Diels-Alder (IEDDA) cycloaddition between 1,2,4,5-tetrazines and strained alkene dienophiles is an emergent variety of catalyst-free 'click' chemistry that has the potential to have a transformational impact on the synthesis and development of radiopharmaceuticals. The ligation is selective, rapid, high-yielding, clean, and bioorthogonal and, since its advent in 2008, has been employed in a wide variety of chemical settings. In radiochemistry, the reaction has proven particularly useful with (18)  F and has already been utilized to create a number of (18)  F-labeled agents, including the PARP1-targeting small molecule (18)  F-AZD2281, the αv β3 integrin-targeting peptide (18)  F-RGD, and the GLP-1-targeting peptide (18)  F-exendin. The inherent flexibility of the ligation has also been applied to the construction of radiometal-based probes, specifically the development of a modular strategy for the synthesis of radioimmunoconjugates that effectively eliminates variability in the construction of these agents. Further, the exceptional speed and biorthogonality of the reaction have made it especially promising in the realm of in vivo pretargeted imaging and therapy, and pretargeted imaging strategies based on the isotopes (111) In, (18)  F, and (64) Cu have already proven capable of producing images with high tumor contrast and low levels of uptake in background, nontarget organs. Ultimately, the characteristics of inverse electron-demand Diels-Alder click chemistry make it almost uniquely well-suited for radiochemistry, and although the field is young, this ligation has the potential to make a tremendous impact on the synthesis, development, and study of novel radiopharmaceuticals.

摘要

1,2,4,5-四嗪与应变烯烃亲双烯体之间的逆电子需求狄尔斯-阿尔德(IEDDA)环加成反应是一种新兴的无催化剂“点击”化学方法,有望对放射性药物的合成与开发产生变革性影响。该连接反应具有选择性、快速、高产率、纯净且生物正交的特点,自2008年问世以来,已被应用于多种化学环境中。在放射化学领域,该反应已证明对(18)F特别有用,并且已被用于制备多种(18)F标记的试剂,包括靶向PARP1的小分子(18)F-AZD2281、靶向αvβ3整合素的肽(18)F-RGD以及靶向GLP-1的肽(18)F-艾塞那肽。连接反应固有的灵活性还被应用于基于放射性金属的探针构建,特别是开发了一种模块化策略来合成放射免疫缀合物,有效消除了这些试剂构建过程中的变异性。此外,该反应的超快速度和生物正交性使其在体内预靶向成像和治疗领域特别有前景,基于同位素(111)In、(18)F和(64)Cu的预靶向成像策略已证明能够产生具有高肿瘤对比度且背景非靶器官摄取水平低的图像。最终,逆电子需求狄尔斯-阿尔德点击化学的特性使其几乎独一无二地非常适合放射化学,尽管该领域尚年轻,但这种连接反应有可能对新型放射性药物的合成、开发和研究产生巨大影响。

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