Yadav Sushree Arpitabala, Vats V Kusum, Sharma Rohit, Mukherjee Archana, Satpati Drishty
Radiopharmaceuticals Division, Bhabha Atomic Research Centre, Mumbai, India.
Radiopharmaceuticals Division, Bhabha Atomic Research Centre, Mumbai, India; Homi Bhabha National Institute, Mumbai, India.
Nucl Med Biol. 2024 Nov-Dec;138-139:108963. doi: 10.1016/j.nucmedbio.2024.108963. Epub 2024 Oct 5.
Elevated levels of HER2 receptor in breast cancer can be targeted through receptor-specific peptides for precise detection and therapy by nuclear medicine approach. Previously reported retro analogue of A9 peptide had shown HER2-specificity with promising pharmacokinetic features. Hence, with an aim of further improving the circulation time of rL-A9 radiopeptide, long polyethylene glycol chain (PEG) was introduced at the N-terminus of the peptide during solid phase synthesis and influence of PEGylation on biological profile was studied. [Lu]Lu-DOTA-PEG-rL-A9 demonstrated high specific cellular uptake (5.94 ± 0.09 %) in HER2-expressing human breast carcinoma SKBR3 cells and low nanomolar binding affinity (K = 34.58 ± 12.78 nM). Uptake in SKBR3 tumors induced in female SCID mice was higher at all the time points investigated (3, 24, 48 h) in comparison to the non-PEGylated radiopeptide, [Lu]Lu-DOTA-rL-A9. Blocking studies led to 51 % reduction in accumulation of radioactivity in the tumor indicating specificity of the radiopeptide. Improved tumor-to-stomach and tumor-to-intestine ratios for [Lu]Lu-DOTA-PEG-rL-A9 compared to [Lu]Lu-DOTA-rL-A9 at 48 h shall pave the way for better contrast and delineation of metastatic sites.
乳腺癌中HER2受体水平升高可通过受体特异性肽进行靶向,以便通过核医学方法进行精确检测和治疗。先前报道的A9肽的反向类似物已显示出HER2特异性,并具有良好的药代动力学特征。因此,为了进一步延长rL-A9放射性肽的循环时间,在固相合成过程中于肽的N端引入了长聚乙二醇链(PEG),并研究了聚乙二醇化对生物学特性的影响。[镥]镥-DOTA-PEG-rL-A9在表达HER2的人乳腺癌SKBR3细胞中表现出高特异性细胞摄取(5.94±0.09%)和低纳摩尔结合亲和力(K = 34.58±12.78 nM)。与未聚乙二醇化的放射性肽[镥]镥-DOTA-rL-A9相比,在雌性SCID小鼠中诱导的SKBR3肿瘤在所有研究时间点(3、24、48小时)的摄取均更高。阻断研究导致肿瘤中放射性积累减少51%,表明放射性肽具有特异性。与[镥]镥-DOTA-rL-A9相比,[镥]镥-DOTA-PEG-rL-A9在48小时时改善的肿瘤与胃及肿瘤与肠道的比值将为更好地对比和描绘转移部位铺平道路。