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89Zr a Radiometal Nuclide with High Potential for Molecular Imaging with PET: Chemistry Applications and Remaining Challenges

机译:89Zr一种具有高潜力的PET分子成像的放射性金属核素:化学应用和仍然面临的挑战

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摘要

Molecular imaging—and especially Positron Emission Tomography (PET)—is of increasing importance for the diagnosis of various diseases and thus is experiencing increasing dissemination. Consequently, there is a growing demand for appropriate PET tracers which allow for a specific accumulation in the target structure as well as its visualization and exhibit decay characteristics matching their in vivo pharmacokinetics. To meet this demand, the development of new targeting vectors as well as the use of uncommon radionuclides becomes increasingly important. Uncommon nuclides in this regard enable the utilization of various selectively accumulating bioactive molecules such as peptides, antibodies, their fragments, other proteins and artificial structures for PET imaging in personalized medicine. Among these radionuclides, 89Zr (t1/2 = 3.27 days and mean Eβ+ = 0.389 MeV) has attracted increasing attention within the last years due to its favorably long half-life, which enables imaging at late time-points, being especially favorable in case of slowly-accumulating targeting vectors. This review outlines the recent developments in the field of 89Zr-labeled bioactive molecules, their potential and application in PET imaging and beyond, as well as remaining challenges.
机译:分子成像,尤其是正电子发射断层扫描(PET),对各种疾病的诊断越来越重要,因此传播越来越广泛。因此,对合适的PET示踪剂的需求不断增长,该示踪剂允许靶结构中的特定积累及其可视化,并表现出与其体内药代动力学相匹配的衰变特性。为了满足这一需求,开发新的靶向载体以及使用罕见的放射性核素变得越来越重要。在这方面,不常见的核素可以利用各种选择性积聚的生物活性分子(如肽,抗体,其片段,其他蛋白质和人工结构)在个性化医学中进行PET成像。在这些放射性核素中, 89 Zr(t1 / 2 = 3.27天,平均Eβ+ = 0.389 MeV)由于其半衰期长而在最近几年引起了越来越多的关注,这使得能够在后期进行成像时间点,在缓慢积累靶向载体的情况下尤其有利。这篇综述概述了 89 Zr标记的生物活性分子领域的最新发展,其在PET成像及其他领域中的潜力和应用以及仍然存在的挑战。

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