首页> 外文期刊>Journal of Labelled Compounds and Radiopharmaceuticals >Novel synthesis of (18F)-fluorobenzene and pyridinecarbohydrazide-folates as potential PET radiopharmaceuticals
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Novel synthesis of (18F)-fluorobenzene and pyridinecarbohydrazide-folates as potential PET radiopharmaceuticals

机译:(18F)-氟苯和吡啶碳酰肼-叶酸的新型合成作为潜在的PET放射性药物

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In an attempt to visualize folate receptors that over-express on many cancers, [18F]-fluorobenzene and pyridine carbohydrazide-folates were synthesized using two different synthetic approaches starting from nucleophilic displacement reactions on ethyl-trimethylammonium-benzoate and pyridine carboxylate precursors. The intermediates ethyl [18F]-fluorinated benzene and pyridine esters were reacted with hydrazine to produce the [ 18F]-fluorobenzene and pyridine carbohydrazides followed by coupling with NHS-folate 11 in the first approach. Whereas hydrazide-folate 5 was reacted with 2,5-dioxoazolidinyl [18F]-fluorobenzenecarboxylate in the second approach. Based on starting [18F]-fluoride, radiochemical yields and synthesis times were found to be around 80% (45 min) and 35% (80 min) for the first and the second approaches, respectively. The first synthetic approach holds considerable promise as a rapid and simple method for the radiofluorination of folic acid with high radiochemical yield and short time. Copyright 2005 John Wiley & Sons, Ltd.
机译:为了可视化在许多癌症上过表达的叶酸受体,使用两种不同的合成方法合成了[18F]-氟苯和吡啶碳酰肼-叶酸,这是从对三甲基苯甲酸乙基铵和吡啶羧酸酯前体的亲核取代反应开始的。在第一种方法中,使中间体[18F]氟代苯和吡啶酯与肼反应,生成[18F]-氟苯和吡啶碳酰肼,然后与NHS-叶酸酯11偶联。而在第二种方法中,酰肼-叶酸5与2,5-二氧恶唑烷基[18F]-氟苯羧酸酯反应。基于起始的[18F]氟化物,第一种方法和第二种方法的放射化学收率和合成时间分别约为80%(45分钟)和35%(80分钟)。第一种合成方法作为叶酸放射性氟化的快速,简便方法,具有很高的放射化学收率和较短的时间,具有广阔的前景。版权所有2005 John Wiley&Sons,Ltd.

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