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Preparation Characterization and Radiolabeling of 68GaGa-NODAGA-Pamidronic Acid: A Potential PET Bone Imaging Agent

机译:68Ga Ga-NODAGA-帕米膦酸的制备表征和放射性标记:一种潜在的PET骨显像剂

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摘要

Early diagnosis of bone metastases is crucial to prevent skeletal-related events, and for that, the non-invasive techniques to diagnose bone metastases that make use of image-guided radiopharmaceuticals are being employed as an alternative to traditional biopsies. Hence, in the present work, we tested the efficacy of a gallium-68 ( Ga)-based compound as a radiopharmaceutical agent towards the bone imaging in positron emitting tomography (PET). For that, we prepared, thoroughly characterized, and radiolabeled [ Ga]Ga-NODAGA-pamidronic acid radiopharmaceutical, a Ga precursor for PET bone cancer imaging applications. The preparation of NODAGA-pamidronic acid was performed via the -Hydroxysuccinimide (NHS) ester strategy and was characterized using liquid chromatography-mass spectrometry (LC-MS) and tandem mass spectrometry (MS ). The unreacted NODAGA chelator was separated using the ion-suppression reverse phase-high performance liquid chromatography (RP-HPLC) method, and the freeze-dried NODAGA-pamidronic acid was radiolabeled with Ga. The radiolabeling condition was found to be most optimum at a pH ranging from 4 to 4.5 and a temperature of above 60 °C. From previous work, we found that the pamidronic acid itself has a good bone binding affinity. Moreover, from the analysis of the results, the ionic structure of radiolabeled [ Ga]Ga-NODAGA-pamidronic acid has the ability to improve the blood clearance and may exert good renal excretion, enhance the bone-to-background ratio, and consequently the final image quality. This was reflected by both the in vitro bone binding assay and in vivo animal biodistribution presented in this research.
机译:骨转移的早期诊断对于预防骨骼相关事件至关重要,为此,采用影像引导的放射性药物的非侵入性技术来诊断骨转移被用作传统活检的替代方法。因此,在本工作中,我们测试了基于镓68(Ga)的化合物作为放射性药物对正电子发射断层扫描(PET)中的骨成像的功效。为此,我们制备了[Ga] Ga-NODAGA-帕米膦酸放射药物,并对其进行了彻底表征和放射性标记,这是一种用于PET骨癌成像应用的Ga前体。 NODAGA-帕米膦酸的制备通过-羟基琥珀酰亚胺(NHS)酯策略进行,并通过液相色谱-质谱(LC-MS)和串联质谱(MS)进行表征。使用离子抑制反相高效液相色谱(RP-HPLC)分离未反应的NODAGA螯合剂,并用Ga对冷冻干燥的NODAGA-帕米膦酸进行标记。 pH值为4至4.5,温度高于60°C。从以前的工作中,我们发现帕米膦酸本身具有良好的骨结合亲和力。此外,根据结果分析,放射性标记的[Ga] Ga-NODAGA-帕米膦酸的离子结构具有改善血液清除的能力,并且可以发挥良好的肾脏排泄能力,提高骨与背景的比率,因此最终图像质量。该研究中的体外骨结合测定和体内动物生物分布均反映了这一点。

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