Lam Phoebe Y H, Hillyar Christopher R T, Able Sarah, Vallis Katherine A
Department of Oncology, CR-UK/MRC Oxford Institute for Radiation Oncology, University of Oxford, UK.
J Labelled Comp Radiopharm. 2016 Oct;59(12):492-499. doi: 10.1002/jlcr.3439. Epub 2016 Sep 4.
The surface overexpression of nucleolin provides an anchor for the specific attachment of biomolecules to cancer and angiogenic endothelial cells. The peptide F3 is a high-affinity ligand of the nucleolin receptor (NR) that has been investigated as a carrier to deliver biologically active molecules to tumors for both therapeutic and imaging applications. A site-specific PEGylated F3 derivative was radiolabeled with [ F]Al-F. The binding affinity and cellular distribution of the compound was assessed in tumor (H2N) and tumor endothelial (2H-11) cells. Specific uptake via the NR was demonstrated by the siRNA knockdown of nucleolin in both cell lines. The partition and the plasma stability of the compound were assessed at 37°C. The enzyme-mediated site-specific modification of F3 to give NODA-PEG-F3 (NP-F3) was achieved. Radiolabeling with [ F]Al-F gave F-NP-F3. F-NP-F3 demonstrated high affinity for cancer and tumor endothelial cells. The siRNA knockdown of nucleolin resulted in a binding affinity reduction of 50% to 60%, confirming cell surface binding via the NR. NP-F3 was stable in serum for 2 h. F-NP-F3 is reported as the first F-labeled F3 derivative. It was obtained in a site-specific, high-yield, and efficient manner and binds to surface NR in the low nanomolar range, suggesting it has potential as a tumor and angiogenesis tracer.
核仁素的表面过表达为生物分子与癌细胞和血管生成性内皮细胞的特异性附着提供了一个锚定位点。肽F3是核仁素受体(NR)的高亲和力配体,已被研究作为一种载体,用于将生物活性分子递送至肿瘤,以用于治疗和成像应用。一种位点特异性聚乙二醇化的F3衍生物用[F]Al-F进行放射性标记。在肿瘤(H2N)细胞和肿瘤内皮(2H-11)细胞中评估了该化合物的结合亲和力和细胞分布。通过两种细胞系中核仁素的siRNA敲低,证实了通过NR的特异性摄取。在37°C下评估了该化合物的分配和血浆稳定性。实现了F3的酶介导的位点特异性修饰,得到NODA-PEG-F3(NP-F3)。用 [F]Al-F进行放射性标记得到F-NP-F3。F-NP-F3对癌细胞和肿瘤内皮细胞表现出高亲和力。核仁素的siRNA敲低导致结合亲和力降低50%至60%,证实了通过NR的细胞表面结合。NP-F3在血清中2小时内稳定。F-NP-F3被报道为首个F标记的F3衍生物。它以位点特异性、高产率和高效的方式获得,并在低纳摩尔范围内与表面NR结合,表明它有潜力作为肿瘤和血管生成示踪剂。