针对实体瘤的多价 FAP 靶向放射性药物治疗剂 177Lu-OncoFAP-23 的临床前评估

Andrea Galbiati, Matilde Bocci, Domenico Ravazza, Jacqueline Mock, Ettore Gilardoni, Dario Neri, Samuele Cazzamalli
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引用次数: 0

摘要

成纤维细胞活化蛋白(FAP)在大多数人类实体瘤的基质中大量表达。临床阶段的放射性标记 FAP 配体越来越多地被用作检测各种癌症病变的工具。为了充分发挥 FAP 靶向药物的治疗潜力,配体需要在给药后在肿瘤部位停留数天。我们最近发现了一种 FAP 的高亲和性小有机配体 OncoFAP,它能在肿瘤中快速积累,而在癌症患者的健康组织中吸收率较低。OncoFAP 的三聚化提供了一种衍生物(命名为 TriOncoFAP 或 OncoFAP-23),具有更好的 FAP 亲和力。在这项研究中,我们评估了 OncoFAP-23 在肿瘤小鼠体内的组织生物分布特征和治疗效果。研究方法用治疗放射性核素 177Lu 对 OncoFAP-23 进行放射性标记。对携带 SK-RC-52.hFAP (BALB/c 裸鼠)或 CT-26.hFAP (BALB/c 小鼠)肿瘤的小鼠进行了临床前实验。177Lu-OncoFAP和177Lu-FAP-2286作为对照被纳入生物分布研究。在 Wistar 大鼠和 CD1 小鼠身上分别注射高剂量 OncoFAP-23 或其冷标记对应物,进行毒理学评估。结果177Lu-OncoFAP-23具有同类最佳的生物分布特征,肿瘤摄取率高且持续时间长(即在96小时内摄取的剂量占注射剂量的百分比为16%/g),在健康器官中的蓄积量低,这与其在低水平给药放射性条件下的单药抗癌活性密切相关。与肿瘤靶向白细胞介素 2(L19-IL2,一种处于临床阶段的免疫细胞因子)联合治疗可增强 177Lu-OncoFAP-23 的体内抗肿瘤活性,从而进一步扩大其治疗窗口。蛋白质组学研究显示,联合用药可产生强效的肿瘤定向免疫反应。OncoFAP-23 和 natLu-OncoFAP-23 表现出良好的毒理学特征,没有出现任何副作用或毒性迹象。结论OncoFAP-23 的肿瘤摄取率和肿瘤保留率均有所提高,而在健康器官中的蓄积率却很低,这些发现表明其体内抗肿瘤疗效得到了显著提高。这项研究的数据支持将 177Lu-OncoFAP-23 用于治疗 FAP 阳性实体瘤的临床开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preclinical Evaluation of 177Lu-OncoFAP-23, a Multivalent FAP-Targeted Radiopharmaceutical Therapeutic for Solid Tumors

Fibroblast activation protein (FAP) is abundantly expressed in the stroma of most human solid tumors. Clinical-stage radiolabeled FAP ligands are increasingly used as tools for the detection of various cancer lesions. To unleash the full therapeutic potential of FAP-targeting agents, ligands need to remain at the tumor site for several days after administration. We recently described the discovery of OncoFAP, a high-affinity small organic ligand of FAP with a rapid accumulation in tumors and low uptake in healthy tissues in cancer patients. Trimerization of OncoFAP provided a derivative (named TriOncoFAP, or OncoFAP-23) with improved FAP affinity. In this work, we evaluated the tissue biodistribution profile and the therapeutic performance of OncoFAP-23 in tumor-bearing mice. Methods: OncoFAP-23 was radiolabeled with the theranostic radionuclide 177Lu. Preclinical experiments were conducted on mice bearing SK-RC-52.hFAP (BALB/c nude mice) or CT-26.hFAP (BALB/c mice) tumors. 177Lu-OncoFAP and 177Lu-FAP-2286 were included in the biodistribution study as controls. Toxicologic evaluation was performed on Wistar rats and CD1 mice by injecting high doses of OncoFAP-23 or its cold-labeled counterpart, respectively. Results: 177Lu-OncoFAP-23 emerged for its best-in-class biodistribution profile, high and prolonged tumor uptake (i.e., ∼16 percentage injected dose/g at 96 h), and low accumulation in healthy organs, which correlates well with its potent single-agent anticancer activity at low levels of administered radioactivity. Combination treatment with the tumor-targeted interleukin 2 (L19-IL2, a clinical-stage immunocytokine) further expands the therapeutic window of 177Lu-OncoFAP-23 by potentiating its in vivo antitumor activity. Proteomics studies revealed a potent tumor-directed immune response on treatment with the combination. OncoFAP-23 and natLu-OncoFAP-23 exhibited a favorable toxicologic profile, without showing any side effects or signs of toxicity. Conclusion: OncoFAP-23 presents enhanced tumor uptake and tumor retention and low accumulation in healthy organs, findings that correspond to a strongly improved in vivo antitumor efficacy. The data presented in this work support the clinical development of 177Lu-OncoFAP-23 for the treatment of FAP-positive solid tumors.

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