Department of Patho-Functional Bioanalysis, Graduate School of Pharmaceutical Sciences, Kyoto University, 606-8501 Kyoto, Japan.
Mol Pharm. 2022 Aug 1;19(8):2725-2736. doi: 10.1021/acs.molpharmaceut.2c00071. Epub 2022 Jun 25.
Picolinic acid-based metallic chelators, e.g., neunpa and octapa, have attracted much attention as promising scaffolds for radiotheranostic agents, particularly those containing larger α-emitting radiometals. Furthermore, albumin binder (ALB) moieties, which noncovalently bind to albumin, have been utilized to improve the pharmacokinetics of radioligands targeting various biomolecules. In this study, we designed and synthesized novel neunpa and octapa derivatives (Neunpa-2 and Octapa-2, respectively), which contained a prostate-specific membrane antigen (PSMA)-binding moiety (model targeting vector) and an ALB moiety. We evaluated the fundamental properties of these derivatives as radiotheranostic agents using In. In a cell-binding assay using LNCaP (PSMA-positive) cells, [In]In-Neunpa-2 and [In]In-Octapa-2 specifically bound to the LNCaP cells. In addition, a human serum albumin (HSA)-binding assay revealed that [In]In-Neunpa-2 and [In]In-Octapa-2 exhibited greater binding to HSA than their non-ALB-conjugated counterparts ([In]In-Neunpa-1 and [In]In-Octapa-1, respectively). A biodistribution assay conducted in LNCaP tumor-bearing mice showed that the introduction of the ALB moiety into the In-labeled neunpa and octapa derivatives resulted in markedly enhanced tumor uptake and retention of the radioligands. Furthermore, single-photon emission computed tomography imaging of LNCaP tumor-bearing mice with [In]In-Octapa-2 produced tumor images. These results indicate that [In]In-Octapa-2 may be a useful PSMA imaging probe and that picolinic acid-based ALB-conjugated radiometallic complexes may be promising candidates as radiotheranostic agents.
基于吡啶酸的金属螯合剂,例如 neunpa 和 octapa,作为有前途的放射治疗剂支架,特别是那些含有较大的α发射放射性金属的支架,引起了广泛关注。此外,白蛋白结合(ALB)部分,可非共价结合白蛋白,已被用于改善针对各种生物分子的放射性配体的药代动力学。在这项研究中,我们设计并合成了新型 neunpa 和 octapa 衍生物(分别为 Neunpa-2 和 Octapa-2),其包含前列腺特异性膜抗原(PSMA)结合部分(模型靶向载体)和 ALB 部分。我们使用 In 评估了这些衍生物作为放射治疗剂的基本性质。在使用 LNCaP(PSMA 阳性)细胞的细胞结合测定中,[In]In-Neunpa-2 和 [In]In-Octapa-2 特异性结合到 LNCaP 细胞上。此外,人血清白蛋白(HSA)结合测定显示,[In]In-Neunpa-2 和 [In]In-Octapa-2 与 HSA 的结合比其非 ALB 缀合的对应物(分别为 [In]In-Neunpa-1 和 [In]In-Octapa-1)更强。在 LNCaP 肿瘤荷瘤小鼠的生物分布测定中,将 ALB 部分引入 In 标记的 neunpa 和 octapa 衍生物导致放射性配体的肿瘤摄取和保留明显增强。此外,用 [In]In-Octapa-2 对 LNCaP 肿瘤荷瘤小鼠进行单光子发射计算机断层扫描成像产生了肿瘤图像。这些结果表明,[In]In-Octapa-2 可能是一种有用的 PSMA 成像探针,基于吡啶酸的 ALB 缀合放射性金属配合物可能是有前途的放射治疗剂候选物。