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聚(二磷酸腺苷核糖)聚合酶-1靶向的F-氟那曲酯PET在乳腺癌中的动力学分析与代谢

Kinetic Analysis and Metabolism of Poly(Adenosine Diphosphate-Ribose) Polymerase-1-Targeted F-Fluorthanatrace PET in Breast Cancer.

作者信息

Young Anthony J, Pantel Austin R, Kiani Mahsa, Doot Robert K, Bagheri Sina, Pryma Daniel A, Farwell Michael D, Li Shihong, Lee Hsiaoju, Schubert Erin K, Secreto Anthony, Zuckerman Samantha P, Nayak Anupma, Choi Hoon, Carlin Sean, DeMichele Angela, Mankoff David A, Zhou Rong, Mach Robert H, McDonald Elizabeth S

机构信息

Department of Radiology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania.

Department of Hematology and Oncology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania.

出版信息

J Nucl Med. 2024 Dec 3;65(12):1862-1868. doi: 10.2967/jnumed.124.268254.

Abstract

The poly(adenosine diphosphate-ribose) polymerase inhibitors (PARPi) have demonstrated efficacy in ovarian, breast, and prostate cancers, but current biomarkers do not consistently predict clinical benefit. F-fluorthanatrace (F-FTT) is an analog to rucaparib, a clinically approved PARPi, and is a candidate biomarker for PARPi response. This study intends to characterize F-FTT pharmacokinetics in breast cancer and optimize image timing for clinical trials. A secondary aim is to determine whether F-FTT uptake in breast cancer correlates with matched frozen surgical specimens as a reference standard for PARP-1 protein. Thirty prospectively enrolled women with a new diagnosis of breast cancer were injected with F-FTT and imaged dynamically 0-60 min after injection over the chest, with an optional static scan over multiple bed positions starting around 70 min. Kinetic analysis of lesion uptake was performed using blood-pool activity with population radiometabolite corrections. Normal breast and normal muscle reference tissue models were compared with PARP-1 protein expression in 10 patients with available tissue. Plasma radiometabolite concentrations and uptake in tumor and normal muscle were investigated in mouse xenografts. Pharmacokinetics of F-FTT were well fit by Logan plot reference region models of reversible binding. However, fits of 2-tissue compartment models assuming negligible metabolite uptake were unstable. Rapid metabolism of F-FTT was demonstrated in mice, and similar uptake of radiometabolites was found in tumor xenografts and normal muscle. Tumor F-FTT distribution volume ratios relative to normal muscle reference tissue correlated with tissue PARP-1 expression ( < 0.02, = 10). The tumor-to-normal muscle ratio from a 5-min frame between 50 and 60 min after injection, a potential static scan protocol, closely corresponded to the distribution volume ratio relative to normal muscle and correlated to PARP-1 expression ( < 0.02, = 10). This study of PARPi analog F-FTT showed that uptake kinetics in vivo corresponded to expression of PARP-1 and that F-FTT quantitation is influenced by radiometabolites that are increasingly present late after injection. Radiometabolites can be controlled by using optimal image acquisition timing or normal muscle reference tissue modeling in dynamic imaging or a tumor-to-normal muscle ratio. Optimal image timing for tumor-to-normal muscle quantification in humans appears to be between 50 and 60 min after injection. Therefore, a clinically practical static imaging protocol commencing 45-55 min after injection may sufficiently balance F-FTT uptake with background clearance and radiometabolite interference for quantitative interpretation of PARP-1 expression in vivo.

摘要

聚(腺苷二磷酸 - 核糖)聚合酶抑制剂(PARPi)已在卵巢癌、乳腺癌和前列腺癌中显示出疗效,但目前的生物标志物并不能始终如一地预测临床获益。F - 氟纳曲(F - FTT)是临床批准的PARPi鲁卡帕尼的类似物,是PARPi反应的候选生物标志物。本研究旨在表征F - FTT在乳腺癌中的药代动力学,并优化临床试验的成像时间。次要目的是确定乳腺癌中F - FTT的摄取是否与匹配的冷冻手术标本相关,作为PARP - 蛋白的参考标准。30名新诊断为乳腺癌的前瞻性入组女性接受了F - FTT注射,并在注射后0 - 60分钟在胸部进行动态成像,约70分钟后可选择在多个床位进行静态扫描。使用血池活性并进行群体放射性代谢物校正对病变摄取进行动力学分析。将正常乳腺和正常肌肉参考组织模型与10名有可用组织患者的PARP - 蛋白表达进行比较。在小鼠异种移植模型中研究了血浆放射性代谢物浓度以及肿瘤和正常肌肉中的摄取情况。F - FTT的药代动力学通过可逆结合的洛根图参考区域模型拟合良好。然而,假设代谢物摄取可忽略不计的双组织隔室模型的拟合不稳定。在小鼠中证实了F - FTT的快速代谢,并且在肿瘤异种移植和正常肌肉中发现了类似的放射性代谢物摄取。相对于正常肌肉参考组织的肿瘤F - FTT分布体积比与组织PARP - 表达相关(<0.02,= 10)。注射后50至60分钟之间5分钟帧的肿瘤与正常肌肉比值,一种潜在的静态扫描方案,与相对于正常肌肉的分布体积比密切相关,并与PARP - 表达相关(<0.02,= 10)。这项关于PARPi类似物F - FTT的研究表明,体内摄取动力学与PARP - 的表达相对应,并且F - FTT定量受注射后晚期越来越多出现的放射性代谢物影响。放射性代谢物可以通过在动态成像中使用最佳图像采集时间或正常肌肉参考组织建模或肿瘤与正常肌肉比值来控制。人体中肿瘤与正常肌肉定量的最佳成像时间似乎在注射后50至60分钟之间。因此,注射后45 - 55分钟开始的临床实用静态成像方案可能足以平衡F - FTT摄取与背景清除以及放射性代谢物干扰,以便对体内PARP - 表达进行定量解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1536/11619586/10c0ef9c67ec/jnumed.124.268254absf1.jpg

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