Institute of Radioisotopes & Radiodiagnostic Products, NCSR Demokritos, 15310 Athens, Greece.
Int J Pharm. 2012 Jul 1;430(1-2):1-17. doi: 10.1016/j.ijpharm.2012.02.049. Epub 2012 Mar 10.
The main goal of the present study was to investigate the importance of the addition of a positively charged aa in the naturally occurring bombesin (BN) peptide for its utilization as radiodiagnostic agent, taking into consideration the biodistribution profile, the pharmacokinetic characteristics and the tumor targeting ability.
Two BN-derivatives of the general structure [M-chelator]-(spacer)-BN(2-14)-NH(2), where M: (99m)Tc or (185/187)Re, chelator: Gly-Gly-Cys-, spacer: -(arginine)(3)-, M-BN-A; spacer: -(ornithine)(3)-, M-BN-O; have been prepared and evaluated as tumor imaging agents.
The peptides under study presented high radiolabelling efficiency (>98%), significant stability in human plasma (>60% intact radiolabelled peptide after 1h incubation) and comparable receptor binding affinity with the standard [(125)I-Tyr(4)]-BN. Their internalization rates in the prostate cancer PC-3 cells differed, although the amount of internalized peptide was the same. The biodistribution and the dynamic γ-camera imaging studies in normal and PC-3 tumor-bearing SCID mice have shown significant tumor uptake, combined with fast blood clearance, through the urinary pathway.
The addition of the charged aa spacer in the BN structure was advantageous for biodistribution, pharmacokinetics and tumor targeting ability, because it reduced the upper abdominal radioactivity levels and increased tumor/normal tissue contrast ratios.
本研究的主要目的是探讨在天然蛙皮素(BN)肽中添加带正电荷的氨基酸对其作为放射性诊断剂的重要性,同时考虑到其生物分布特征、药代动力学特性和肿瘤靶向能力。
我们合成了两种 BN 衍生物,其结构为 [M-螯合剂]-(间隔物)-BN(2-14)-NH(2),其中 M:(99m)Tc 或 (185/187)Re,螯合剂:Gly-Gly-Cys-,间隔物:-(精氨酸)(3)-,M-BN-A;间隔物:-(鸟氨酸)(3)-,M-BN-O;并将其作为肿瘤成像剂进行了评估。
研究中的肽具有很高的放射性标记效率(>98%),在人血浆中具有显著的稳定性(1h 孵育后仍有>60%的完整放射性标记肽),与标准 [(125)I-Tyr(4)]-BN 的受体结合亲和力相当。它们在前列腺癌 PC-3 细胞中的内化率不同,尽管内化的肽量相同。在正常和 PC-3 荷瘤 SCID 小鼠中的生物分布和动态γ相机成像研究表明,通过尿途径,放射性核素具有明显的肿瘤摄取,同时具有快速的血液清除率。
在 BN 结构中添加带电荷的 aa 间隔物有利于生物分布、药代动力学和肿瘤靶向能力,因为它降低了上腹部的放射性水平,提高了肿瘤/正常组织的对比率。