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Labelling with positron emitters of pnicogens and chalcogens

机译:用Pnicogens和Chalcogens的正电子发射器标记

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The increasing importance of the positron emission tomography (PET) in clinical diagnosis led to the development of a multitude of radiotracers labelled with positron‐emitting radionuclides of groups 15 (pnicogens) and 16 (chalcogens) of the periodic table of elements. The positron emitters of the endogenous occurring elements nitrogen, phosphorus, oxygen, and sulphur are characterized by very short half‐lives compared with the most commonly used PET radionuclides carbon‐11 or fluorine‐18. Therefore, the potential of their synthesis and possible applications in PET is challenging and limited. On the other hand, the nonstandard positron emitters arsenic‐72, arsenic‐74, and selenium‐73 have half‐lives in the range of hours to days and, thus, are of interest for PET studies of processes with long biological half‐lives, but novel methods have to be developed for their application, especially in the no‐carrier‐added state. This review summarizes recent research concerning the positron emitters of pnicogens and chalcogens for radiolabelling applications.
机译:正电子发射断层扫描(PET)在临床诊断中的越来越重要导致了众多含有正电子发射的正电子放射性核苷酸的巨大放射体制物和元素的周期性表的16(钙胺)。与最常用的PET放射性核素碳-11或氟-18相比,内源性发生元素氮,磷,氧和硫的正电子发射器的特征在于非常短的半衰期。因此,它们的合成潜力和宠物可能的应用是挑战性和有限的。另一方面,非标准正电正发射器砷-72,砷-74和硒-73在几小时内的半衰期达到半衰期,因此对于具有长生物半衰期的过程的宠物研究感兴趣,但必须为其申请制定新的方法,尤其是在无载体添加状态。本综述总结了遗传近期对放射性标记应用的丧失和胆碱的正电子发射器的研究。

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