化学
药代动力学
亲脂性
连接器
药理学
广告
体内分布
生物物理学
分子成像
体内
癌症研究
生物化学
体外
医学
生物技术
计算机科学
生物
操作系统
作者
Dong Dai,Yu Jiang,Wenfeng Gou,Shuangmeng Yang,Yanli Li,Ziyang Wang,Zhao Yang,Ting Huang,Panfeng Li,Tong Zhu,Wenbin Hou,Yu Zhao,Wengui Xu,Yiliang Li
标识
DOI:10.1021/acs.jmedchem.4c00281
摘要
Cyclin-dependent kinase 19 (CDK19) is overexpressed in prostate cancer, making it an attractive target for both imaging and therapy. Since little is known about the optimized approach for radioligands of nuclear proteins, linker optimization strategies were used to improve pharmacokinetics and tumor absorption, including the adjustment of the length, flexibility/rigidity, and hydrophilicity/lipophilicity of linkers. Molecular docking was conducted for virtual screening and followed by IC50 determination. Both BALB/c mice and P-16 xenografts were used for tissue distribution and PET/CT imaging. The ligand 68Ga-10c demonstrated high absorption in tumor 5 min after injection and sustains long-term imaging within 3 h. Furthermore, 68Ga-10c exhibited slow clearance within the tumor and was predominantly metabolized in both the liver and kidneys, showing the potential to alleviate metabolic pressure and enhance tissue safety. Therefore, the linker optimization strategy is well suited for CDK19 and provides a reference for the radioactive ligands of other nuclear targets.
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