Kasten Benjamin B, Ma Xiaowei, Cheng Kai, Bu Lihong, Slocumb Winston S, Hayes Thomas R, Trabue Steven, Cheng Zhen, Benny Paul D
Department of Nuclear Medicine, Xijing Hospital, Fourth Military Medical University , Xi'an, Shaanxi 710032, China.
Molecular Imaging Program at Stanford (MIPS), Department of Radiology, Bio-X Program and Canary Center at Stanford for Cancer Early Detection, Stanford University , Stanford, California 94305, United States.
Bioconjug Chem. 2016 Jan 20;27(1):130-42. doi: 10.1021/acs.bioconjchem.5b00531. Epub 2015 Dec 30.
Developing new strategies to rapidly incorporate the fac-M(I)(CO)3 (M = Re, (99m)Tc) core into biological targeting vectors in radiopharmaceuticals continues to expand as molecules become more complex and as efforts to minimize nonspecific binding increase. This work examines a novel isothiocyanate-functionalized bifunctional chelate based on 2,2'-dipicolylamine (DPA) specifically designed for complexing the fac-M(I)(CO)3 core. Two strategies (postlabeling and prelabeling) were explored using the isothiocyanate-functionalized DPA to determine the effectiveness of assembly on the overall yield and purity of the complex with amine containing biomolecules. A model amino acid (lysine) examined (1) amine conjugation of isothiocyanate-functionalized DPA followed by complexation with fac-M(I)(CO)3 (postlabeling) and (2) complexation of fac-M(I)(CO)3 with isothiocyanate-functionalized DPA followed by amine conjugation (prelabeling). Conducted with stable Re and radioactive (99m)Tc analogs, both strategies formed the product in good to excellent yields under macroscopic and radiotracer concentrations. A synthetic peptide (AE105) which targets an emerging biomarker in CaP prognosis, urokinase-type plasminogen activator receptor (uPAR), was also explored using the isothiocyanate-functionalized DPA strategy. In vitro PC-3 (uPAR+) cell uptake assays with the (99m)Tc-labeled peptide (8a) showed 4.2 ± 0.5% uptake at 4 h. In a murine model bearing PC-3 tumor xenografts, in vivo biodistribution of 8a led to favorable tumor uptake (3.7 ± 0.7% ID/g) at 4 h p.i. with relatively low accumulation (<2% ID/g) in normal organs not associated with normal peptide excretion. These results illustrate the promise of the isothiocyanate-functionalized approach for labeling amine containing biological targeting vectors with fac-M(I)(CO)3.
随着分子变得更加复杂以及减少非特异性结合的努力增加,开发新策略以快速将fac-M(I)(CO)₃(M = Re、⁹⁹ᵐTc)核心纳入放射性药物中的生物靶向载体的工作仍在不断扩展。这项工作研究了一种基于2,2'-联吡啶甲胺(DPA)的新型异硫氰酸酯功能化双功能螯合剂,该螯合剂专门设计用于络合fac-M(I)(CO)₃核心。使用异硫氰酸酯功能化的DPA探索了两种策略(标记后和标记前),以确定组装对与含胺生物分子形成的配合物的总产率和纯度的有效性。研究了一种模型氨基酸(赖氨酸):(1)异硫氰酸酯功能化的DPA与胺共轭,然后与fac-M(I)(CO)₃络合(标记后);(2)fac-M(I)(CO)₃与异硫氰酸酯功能化的DPA络合,然后进行胺共轭(标记前)。使用稳定的Re和放射性⁹⁹ᵐTc类似物进行实验,在宏观和放射性示踪剂浓度下,两种策略均以良好至优异的产率形成产物。还使用异硫氰酸酯功能化的DPA策略研究了一种靶向CaP预后中一种新兴生物标志物——尿激酶型纤溶酶原激活剂受体(uPAR)的合成肽(AE105)。用⁹⁹ᵐTc标记的肽(8a)进行的体外PC-3(uPAR⁺)细胞摄取试验显示,在4小时时摄取率为4.2±0.5%。在携带PC-3肿瘤异种移植的小鼠模型中,8a的体内生物分布在注射后4小时导致良好的肿瘤摄取(3.7±0.7% ID/g),在与正常肽排泄无关的正常器官中的积累相对较低(<2% ID/g)。这些结果说明了异硫氰酸酯功能化方法用于用fac-M(I)(CO)₃标记含胺生物靶向载体的前景。