Safety, Biodistribution, and Dosimetry of FAP and Integrin α v β 3 Dual-Targeting Radioligand 177 Lu-DOTA-FAPI-RGD: Preclinical Validation and First-in-Human Study in Patients with Advanced Adenocarcinomas

放射性配体 医学 癌症研究 剂量学 整合素 药代动力学 放射免疫疗法 腺癌 肿瘤科 内科学 抗体疗法 受体 癌症 临床试验 核医学
作者
Jialin Xiang,Xuejun Wen,Rongxi Wang,Jiarou Wang,Xingtong Peng,Yanwei Wang,Naixin Liang,Dongyan Cao,Xiaoyuan Chen,Zhaohui Zhu,Jingjing Zhang
出处
期刊:Journal of nuclear medicine [Society of Nuclear Medicine and Molecular Imaging]
卷期号:: jnumed.126.272007-jnumed.126.272007
标识
DOI:10.2967/jnumed.126.272007
摘要

Fibroblast activation protein (FAP) and integrin αvβ3 are attractive theranostic targets. We developed a dual-targeting radiotheranostic agent, 177Lu-DOTA-FAPI-RGD (177Lu-LNC1009), and conducted a first-in-human study to evaluate its safety, biodistribution, dosimetry, and preliminary efficacy in patients with advanced adenocarcinomas. Methods: LNC1009 was synthesized by conjugating an FAP inhibitor, an RGDfK peptide, and DOTA. Preclinical biodistribution was assessed in HT1080-FAP and U87MG xenografts. Nine patients with advanced solid tumors and positive 68Ga-FAPI-RGD PET/CT received 2.0 ± 0.3 GBq (range, 1.6–2.4 GBq) of 177Lu-LNC1009. Primary endpoints included biodistribution, dosimetry, and safety; efficacy was the secondary endpoint. Results:177Lu-LNC1009 showed high radiochemical purity and stability, strong dual-target binding, and sustained tumor uptake with favorable tumor-to-background ratios. In patients, treatment was well-tolerated, with no grade 4 adverse events. The whole-body effective dose was 0.08 ± 0.02 mSv/MBq. Mean absorbed doses were 0.04 ± 0.01 Gy/GBq (red marrow), 0.50 ± 0.31 Gy/GBq (liver), and 0.31 ± 0.11 Gy/GBq (kidneys). Tumor-absorbed doses reached 6.10 ± 1.42 Gy/GBq (lung metastases) and 4.20 ± 0.84 Gy/GBq (lymph nodes). Grade 3 adverse events included thrombocytopenia (n = 3), leukopenia (n = 2), and anemia (n = 1). Partial responses occurred in 2 patients (22.2%), stable disease in 6 (66.7%), and progressive disease in 1 (11.1%), yielding an objective response rate of 22.2% and disease control rate of 88.9%. Conclusion: This first-in-human, dual-targeting radiopharmaceutical therapy agent 177Lu-LNC1009 demonstrated favorable dosimetry, high tumor radiation delivery, and encouraging preliminary efficacy across a variety of advanced solid tumors. Future ligand structural optimization and refined screening protocols are warranted to improve safety and further efficacy in multicycle, tumor-specific dose-escalation trials.

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