首页> 外文期刊>Current topics in medicinal chemistry >((11)C)phosgene: a versatile reagent for radioactive carbonyl insertion into medicinal radiotracers for positron emission tomography.
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((11)C)phosgene: a versatile reagent for radioactive carbonyl insertion into medicinal radiotracers for positron emission tomography.

机译:((11)C)光气:一种多功能试剂,用于将放射性羰基插入医用放射性示踪剂中,以进行正电子发射断层扫描。

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[(11)C]Phosgene has been playing a relatively modest but continuous and manifest role all along the history of radiochemistry for Positron Emission Tomography. It acts as a radiolabelling agent through carbonyl insertion, usually between heteroatoms, and benefits from a high chemical reactivity allowing for short reaction times. The aim of this review is to give an overview of this radiochemistry from its beginning until the present day. After drawing up the inventory of the various ways of its production, the reactions in which it has been employed and the labelled products that have been synthesised with it are catalogued. This comprises the reactions of [(11)C]phosgene with primary, secondary and tertiary amines to labelled isocyanates and carbamoyl chlorides, which serve as intermediates for symmetrical and unsymmetrical [(11)C]ureas and [(11)C]carbamates, reactions with alcohols leading to labelled carbamates and carbonates via [(11)C]chloroformates, cyclisation reactions to heterocycles and the radiochemistry of the secondary radiolabelling agents [(11)C]urea and diethyl- or dimethyl [(11)C]carbonate. Apart from this already vast field of chemical possibilities there should be room for extension of the use of [(11)C]phosgene to other chemistry, notably that of C-(11)C bond formation.
机译:[(11)C]在正电子发射层析成像的放射化学历史上,光气一直扮演着相对温和但连续且明显的角色。它通常通过杂原子之间的羰基插入作为放射性标记剂,并具有高化学反应性,可缩短反应时间。这篇综述的目的是概述从开始到今天的这种放射化学。在编制了各种生产方式的清单后,将使用它的反应和与之合成的标记产物进行分类。这包括[(11)C]光气与伯,仲和叔胺反应生成标记的异氰酸酯和氨基甲酰氯,它们用作对称和不对称的[(11)C]脲和[(11C)]氨基甲酸酯的中间体,通过[(11)C]氯甲酸酯与酒精反应生成标记的氨基甲酸酯和碳酸盐,杂环化的环化反应以及次级放射性标记试剂[(11)C]脲和[[11] C]碳酸二乙酯或二甲基酯的放射化学。除了已经存在的广阔的化学可能性领域之外,[(11)C]光气的使用应扩展到其他化学领域,尤其是C-(11)C键的形成。

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