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潜在PARP成像探针[羰基-C]DPQ的临床前评估。

Preclinical evaluation of the potential PARP-imaging probe [carbonyl-C]DPQ.

作者信息

Benčurová Katarína, Balber Theresa, Weissenböck Victoria, Kogler Lukas, Friske Joachim, Pichler Verena, Mitterhauser Markus, Hacker Marcus, Philippe Cécile, Ozenil Marius

机构信息

Division of Nuclear Medicine, Department of Biomedical Imaging and Image-Guided Therapy, Medical University of Vienna, Vienna, Austria.

Joint Applied Medicinal Radiochemistry Facility, University of Vienna, Medical University of Vienna, Vienna, Austria.

出版信息

EJNMMI Radiopharm Chem. 2025 Jan 10;10(1):1. doi: 10.1186/s41181-024-00323-6.

Abstract

BACKGROUND

Poly (ADP-ribose) polymerase (PARP) enzymes are crucial for the repair of DNA single-strand breaks and have become key therapeutic targets in homologous recombination-deficient cancers, including prostate cancer. To enable non-invasive monitoring of PARP-1 expression, several PARP-1-targeting positron emission tomography (PET) tracers have been developed. Here, we aimed to preclinically investigate [carbonyl-C]DPQ as an alternative PARP-1 PET tracer as it features a strongly distinct chemotype compared to the frontrunners [F]FluorThanatrace and [F]PARPi.

RESULTS

[carbonyl-C]DPQ was synthesised in a GE TracerLab FXC2 module, yielding sufficient activity (940 ± 410 MBq), molar activity (53 ± 16 GBq/µmol) and radiochemical purity (> 97%) for subsequent preclinical evaluation. [carbonyl-C]DPQ showed high stability in formulation, in human plasma, and when incubated with human liver microsomes. In vitro, similar specific uptake was observed in both PC3 prostate cancer cells and CHO-K1 Chinese hamster ovary cells. However, in vivo studies using fertilised chicken eggs (in ovo model) revealed poor and non-displaceable tumour accumulation in PC3-derived xenografts, despite confirmed vascularisation and PARP-1 expression. Rapid uptake was observed in the liver (10 min), with less than 30% of the intact compound remaining in the liver 70 min post-injection.

CONCLUSIONS

Although [carbonyl-C]DPQ demonstrated metabolic stability and specific binding in vitro, suboptimal tumour-targeting properties and pronounced liver metabolism were observed in ovo. Therefore, further animal experiments with mammalian models were not indicated.

摘要

背景

聚(ADP - 核糖)聚合酶(PARP)酶对DNA单链断裂的修复至关重要,并且已成为包括前列腺癌在内的同源重组缺陷型癌症的关键治疗靶点。为了实现对PARP - 1表达的无创监测,已开发出几种靶向PARP - 1的正电子发射断层扫描(PET)示踪剂。在此,我们旨在进行临床前研究,将[羰基 - C]DPQ作为一种替代的PARP - 1 PET示踪剂,因为与领先的[F]FluorThanatrace和[F]PARPi相比,它具有截然不同的化学类型。

结果

[羰基 - C]DPQ在GE TracerLab FXC2模块中合成,产生了足够的活度(940±410 MBq)、摩尔活度(53±16 GBq/µmol)和放射化学纯度(>97%),用于后续的临床前评估。[羰基 - C]DPQ在制剂中、人血浆中以及与人肝微粒体孵育时表现出高稳定性。在体外,PC3前列腺癌细胞和CHO - K1中国仓鼠卵巢细胞中均观察到相似的特异性摄取。然而,使用受精鸡蛋的体内研究(卵内模型)显示,尽管已证实血管生成和PARP - 1表达,但PC3衍生的异种移植瘤中肿瘤摄取不佳且不可置换。在肝脏中观察到快速摄取(10分钟),注射后70分钟肝脏中剩余的完整化合物不到30%。

结论

尽管[羰基 - C]DPQ在体外表现出代谢稳定性和特异性结合,但在卵内观察到肿瘤靶向特性欠佳以及肝脏代谢明显。因此,未表明需要进一步使用哺乳动物模型进行动物实验。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd5e/11723862/7ccb650b7903/41181_2024_323_Fig1_HTML.jpg

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