PO.ET08.02 · 实验与分子治疗
通过四嗪连接标记的131I-FAPi二聚体在人胶质母细胞瘤异种移植模型中靶向放射性核素治疗的疗效
Efficacy of targeted radionuclide therapy Using 131 I-FAPi dimers labeled via tetrazine ligation in a human glioblastoma xenograft model
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摘要 Abstract
中文摘要
靶向泛肿瘤标志物成纤维细胞活化蛋白(FAP)的诊断性放射性示踪剂在众多癌症类型中的成功应用已得到充分确立;然而,将这些制剂转化为有效的治疗药物仍具挑战性。与单体FAP抑制剂(FAPi)相比,含有两个FAP靶向载体的FAPi二聚体表现出增强的肿瘤滞留,从而带来更高的肿瘤剂量和令人鼓舞的初步临床结果。当前靶向FAP的治疗制剂主要依赖基于螯合剂的构建体,将其标记限制于放射性金属。为克服这一局限,我们此前开发了配备四嗪连接的FAPi二聚体,使用新型反式环辛烯T4CO,实现单一异构体的选择性形成。我们的先导化合物(131I)I-FAPi 5以高产率和高纯度合成,并在荷瘤动物中进行评估,展现出与已确立制剂(177Lu)Lu-DOTAGA-Glu(FAPi)₂相当的治疗效果。这些发现表明,(131I)I-FAPi 5可能提供一种具成本效益和可扩展性的放射性配体治疗(RLT)选择,以满足对FAP靶向治疗日益增长的需求。
(131I)I-DUAL FAPi-5通过使用四嗪连接的两步放射性标记工艺制备。首先,将四嗪-三甲基锗前体用131I放射性碘化。所得合成子经HPLC纯化,随后与T4CO-FAPi衍生物点击反应,在10分钟内完成完全连接,无需进一步纯化。在U87-MG荷瘤小鼠中研究了治疗效果。当肿瘤达到64±4mm3时,小鼠接受单次静脉注射(131I)I-FAPi 5(30或60 MBq)、(177Lu)Lu-DOTAGA-Glu(FAPi)2(30 MBq)或溶媒对照(n=6/组)。通过卡尺测量每隔一天监测肿瘤反应,并评估至治疗开始后70天的生存。小鼠在达到预定终点标准之一时被安乐死。(131I)I-FAPi 5经两步获得,最终放射化学产率为60 ± 5%(n=4),放射化学纯度≥98%(n=4)。在U87-MG异种移植模型中,示踪剂表现出高且持续的肿瘤摄取。在两个剂量水平(30 MBq和60 MBq)下用(131I)I-FAPi 5治疗均导致肿瘤快速消退,治疗表现与(177Lu)Lu-DOTAGA-Glu(FAPi)₂相当。我们用131I标记的双靶向FAPi化合物表现出强健的肿瘤摄取和滞留,以肾清除为主要排泄途径。这些发现证实了该制剂在临床前肿瘤模型中的治疗疗效,显示出显著的肿瘤消退和改善的生存。总的来说,这些结果支持该化合物作为一种有效且可及的FAP-RLT候选药物的潜力。
查看英文原文 English abstract
The successful use of diagnostic radiotracers targeting the pan-tumor marker fibroblast activation protein (FAP) across numerous cancer types is well established; however, translating these agents into effective therapeutics remains challenging. Compared with monomeric FAP inhibitors (FAPi), FAPi dimers-containing two FAP-targeting vectors-exhibit enhanced tumor retention, resulting in higher tumor doses and encouraging preliminary clinical outcomes. Current therapeutic agents targeting FAP rely largely on chelator-based constructs, restricting their labeling to radiometals. To overcome this limitation, we previously developed FAPi dimers equipped for tetrazine ligation using the novel trans-cyclooctene T4CO, enabling selective formation of a single isomer. Our lead compound, (¹³¹I)I-FAPi 5, was synthesized with high yield and purity and evaluated in tumor-bearing animals, where it demonstrated therapeutic effects comparable to the established agent (¹⁷⁷Lu)Lu-DOTAGA-Glu(FAPi)₂. These findings suggest that (¹³¹I)I-FAPi 5 may offer a cost-effective and scalable radioligand therapy (RLT) option to meet the expanding demand for FAP-directed treatments.
(¹³¹I)I-DUAL FAPi-5 was prepared by a two-step radiolabeling process using tetrazine ligation. First, a tetrazine-trimethylgermyl precursor was radioiodinated with ¹³¹I. The resulting synthon was purified by HPLC and subsequently clicked with the T4CO-FAPi derivative, achieving complete ligation within 10 minutes without requiring further purification. The therapeutic effect was investigated in U87-MG tumor-bearing mice. When the tumors reached 64±4mm 3 , the mice received a single intravenous injection of ( 131 I)I-FAPi 5 (30 or 60 MBq), ( 177 Lu)Lu-DOTAGA-Glu(FAPi)2 (30 MBq) or vehicle control (n=6/group). Tumor response was monitored every other day via caliper measurement and survival was assessed up to 70 days after the start of treatment. The mice were euthanized on reaching one of the predefined endpoint criteria.(¹³¹I)I-FAPi 5 was obtained in two steps with a final radiochemical yield of 60 ± 5% (n=4), radiochemical purity ≥98% (n=4). In U87-MG xenograft models, the tracer exhibited high and sustained tumor uptake. Treatment with (¹³¹I)I-FAPi 5 at both dose levels (30 MBq and 60 MBq) resulted in rapid tumor regression, with therapeutic performance comparable to that of (¹⁷⁷Lu)Lu-DOTAGA-Glu(FAPi)₂. Our dual-targeting FAPi compound labeled with ¹³¹I demonstrated robust tumor uptake and retention, with renal clearance as the primary excretion pathway. These findings confirm the therapeutic efficacy of this agent in preclinical tumor models, showing marked tumor regression and improved survival. Collectively, the results support the potential of this compound as an effective and accessible FAP-RLT candidate.
利益披露 Disclosure
U. Battisti,
Tetrakit Technologies ApS Employment, Stock, Patent.
M. Martin,
Tetrakit Technologies Employment, Patent.
V. Shalgunov,
Tetrakit Technologies Employment, Stock, Patent.
F. Elvas, None..
A. Miranda, None.
A. Jensen,
Tetrakit Technologies ApS Employment, Stock, Patent.
M. Herth,
Tetrakit Technologies ApS Employment, Stock, Patent.