PO.CL12.04 · 临床研究

⁶⁴Cu-RAX301的开发与临床评估:一种用于增强检测转移性前列腺癌的新一代PSMA PET示踪剂

Development and clinical evaluation of ⁶⁴Cu-RAX301: A next-generation PSMA PET tracer for enhanced detection of metastatic prostate cancer

海报缩略图:⁶⁴Cu-RAX301的开发与临床评估:一种用于增强检测转移性前列腺癌的新一代PSMA PET示踪剂
编号 2610 展板 1 时间 4/20 09:00–12:00 区域 Section 47 主讲 Guangzhou Han, PhD
分会场 Molecular Imaging, Radiomics, and Theranostics
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作者与单位 Authors & Affiliations

Fei Chen1, Min Hong2, Xupeng Hu2, Yang Cao2, Jie Li1, Zhao Li1, Shuanglong Liu2, Guangzhou Han2, Suping Li1, Gang Chen2

1Department of Nuclear Medicine, Affiliated Hospital of North Sichuan Medical College, North Sichuan Medical College, Nanchong, China,2RadAlliance Therapeutics Inc., San Diego, CA

摘要 Abstract

中文摘要
前列腺特异性膜抗原(PSMA)PET成像被广泛用于前列腺癌的诊断和分期,然而目前获批的⁶⁸Ga和¹⁸F标记的示踪剂受限于半衰期短和尿排泄高,这可能会掩盖盆腔的小病灶。为克服这些挑战,研发了⁶⁴Cu-RAX301,作为一种高亲和力PSMA PET示踪剂,旨在改善生化稳定性并延长成像的灵活性。RAX301前体及其nat Cu-RAX301类似物以高纯度合成,并优化了⁶⁴Cu的放射性标记,以实现高摩尔活度(≥2000 mCi/µmol)和放射化学纯度(>95%),且在配制后48小时以上保持稳定。表面等离子体共振显示,前体和nat Cu-RAX301均具有亚皮摩尔级的结合亲和力(Kd < 1 pM),显著强于PSMA-617(22 pM)。与此一致,基于细胞的实验显示,与⁶⁴Cu-PSMA-617相比,其亲和力高两倍,摄取高1.5倍,内化高四倍(≈80% 对 ≈20%)。在LNCaP异种移植小鼠中,⁶⁴Cu-RAX301表现出强烈且持久的肿瘤摄取,注射后4小时肿瘤与肌肉比值超过一百。在食蟹猴(Macaca fascicularis)中的PET成像显示主要经肾脏清除,其他器官摄取极少。在一项针对十名转移性去势抵抗性前列腺癌(mCRPC)患者的首次人体研究中,先后进行了序贯PET/CT扫描,先用⁶⁸Ga-PSMA-11(5 mCi;注射后1小时成像),再用⁶⁴Cu-RAX301(5 mCi;注射后4和24小时成像),间隔1-7天。⁶⁴Cu-RAX301检出了⁶⁸Ga-PSMA-11所识别的全部病灶,同时提供更高的病灶摄取和更佳的肿瘤与背景对比度。值得注意的是,⁶⁴Cu-RAX301在多个部位揭示了大量额外的小病灶,包括因早期膀胱活度而常被⁶⁸Ga-PSMA-11漏检的盆腔淋巴结转移。该示踪剂表现出优良的安全性,无明显不良事件。总体而言,这些临床前和早期临床结果表明,⁶⁴Cu-RAX301具有超高的PSMA亲和力、良好的药代动力学特性,以及相较于⁶⁸Ga-PSMA-11更强的病灶可视化能力,支持其作为一种新一代PSMA PET成像剂的潜力,在转移性前列腺癌中具有更高的灵敏度和诊断性能。正在进行的临床研究旨在进一步明确其诊断影响和更广泛的临床应用价值。
查看英文原文 English abstract
Prostate-specific membrane antigen (PSMA) PET imaging is widely used for diagnosing and staging prostate cancer, yet the currently approved ⁶⁸Ga- and ¹⁸F-labeled tracers are limited by short half-lives and high urinary excretion, which can obscure small pelvic lesions. To overcome these challenges, ⁶⁴Cu-RAX301 was developed as a high-affinity PSMA PET tracer designed for improved biochemical stability and extended imaging flexibility. The RAX301 precursor and its nat Cu-RAX301 analog were synthesized with high purity, and radiolabeling with ⁶⁴Cu was optimized to achieve high molar activity (≥2000 mCi/μmol) and radiochemical purity (>95%), and remaining stable for over 48 hours post-formulation. Surface plasmon resonance revealed sub-picomolar binding affinity (Kd < 1 pM) for both the precursor and nat Cu-RAX301, markedly stronger than PSMA-617 (22 pM). Consistent with this, cell-based assays showed two-fold higher affinity, 1.5-fold greater uptake, and four-fold higher internalization compared with ⁶⁴Cu-PSMA-617 (≈80% vs. ≈20%). In LNCaP xenograft mice, ⁶⁴Cu-RAX301 demonstrated intense and persistent tumor uptake, with tumor-to-muscle ratios exceeding one hundred at 4 hours post-injection. PET imaging in Macaca fascicularis revealed primarily renal clearance with minimal uptake in other organs. In a first-in-human study of ten patients with metastatic castration-resistant prostate cancer (mCRPC), sequential PET/CT scans were performed first with ⁶⁸Ga-PSMA-11 (5 mCi; imaging at 1 hour post-injection) and then with ⁶⁴Cu-RAX301 (5 mCi; imaging at 4 and 24 hours post-injection), separated by 1-7 days. ⁶⁴Cu-RAX301 detected all lesions identified by ⁶⁸Ga-PSMA-11 while providing higher lesion uptake and superior tumor-to-background contrast. Notably, ⁶⁴Cu-RAX301 revealed numerous additional small lesions at various sites, including pelvic lymph node metastases that were frequently missed by ⁶⁸Ga-PSMA-11 due to early bladder activity. The tracer exhibited an excellent safety profile with no significant adverse events. Collectively, these preclinical and early clinical findings demonstrate that ⁶⁴Cu-RAX301 possesses ultra-high PSMA affinity, favorable pharmacokinetics, and enhanced lesion visualization compared with ⁶⁸Ga-PSMA-11, supporting its potential as a next-generation PSMA PET imaging agent with improved sensitivity and diagnostic performance in metastatic prostate cancer. Ongoing clinical studies aim to further define its diagnostic impact and broader clinical utility.
利益披露 Disclosure
F. Chen, None.. M. Hong, None.. X. Hu, None.. Y. Cao, None.. J. Li, None.. Z. Li, None.. S. Liu, None.. G. Han, None.. S. Li, None.. G. Chen, None.

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