化学
药代动力学
白蛋白
结合
体内分布
组合化学
二十面体对称
放射性配体
配体(生物化学)
生物物理学
药理学
血清白蛋白
聚乙二醇化
人血清白蛋白
血浆蛋白结合
整合素
生物化学
化学合成
生物相容性材料
共轭体系
碳硼烷
结构-活动关系
生物活性
毒品携带者
血液替代品
肽
牛血清白蛋白
循环系统
药品
制药技术
肿瘤细胞
分子模型
立体化学
作者
Linger Li,Xin Gao,Siqi Zhang,Yuan Miao,Xueyao Chen,Xingkai Wang,Mengjie Yang,Rujing Wang,Kuan Hu
标识
DOI:10.1021/acs.jmedchem.5c03169
摘要
Albumin-binding moieties (ABMs) improve radioligands' pharmacokinetics by leveraging their long circulatory half-life to enhance tumor uptake and accumulation. In this study, we demonstrated icosahedral carborane (hereafter referred to as BSH) as a newly applied ABM with moderate albumin-binding affinity and favorable biocompatibility. Five BSH-modified radioligand precursors were synthesized to evaluate the albumin binding of BSH conjugation across three targeting ligands, including PSMA-, FAP-, and integrin αvβ6-targeting ligands. Comprehensive biological assessments were conducted using 64Cu-labeled radioligands. Compared with non-BSH-modified counterparts, BSH-modified conjugates showed significantly prolonged circulation time in blood, enhanced tumor uptake, and improved tumor accumulation. Furthermore, the introduction of BSH exerted minimal influence on the target affinity of the radioligands. This study confirms that BSH is an effective and versatile ABM capable of increasing the therapeutic index of radiopharmaceuticals, expands the molecular toolbox for ABM modification, and provides a robust platform for the development of optimized radiotheranostic agents.
科研通智能强力驱动
Strongly Powered by AbleSci AI