化学
放射性核素治疗
癌症研究
重新调整用途
黑色素瘤
药代动力学
靶向治疗
PI3K/AKT/mTOR通路
药理学
癌变
mTOR抑制剂的发现与发展
细胞周期
药效学
磷酸肌醇3激酶
肿瘤进展
细胞
细胞周期进展
细胞生长
作者
Hongyi Huang,Shouguo Peng,Quan Zuo,Siqi Zhang,Jiang Wu,Yumeng Zhang,Xueyao Chen,Qingshuang Lu,Qichen Hu,Shuo Jiang,Jieting Shen,Jie Yan,Jiaqi Hu,Junlong Lu,Feng Wang,Rui Wang,Heng Xu,Kuan Hu
标识
DOI:10.1021/acs.jmedchem.5c03583
摘要
Phosphoinositide 3-kinase (PI3K) dysregulation drives tumorigenesis through regulation of cell cycle progression and survival. Several small molecular inhibitors targeting PI3K have been approved for tumor treatment. However, these inhibitors exposed unexpected severe off-tumor toxicity, leading to poor patient prognosis. Radiopharmaceuticals based on radiolabeled PI3K inhibitors for targeted internal radionuclide therapy offer a revitalized therapeutic approach to reduced pharmacological toxicity. Herein, we rationally designed and synthesized four bifunctional radiolabeled small-molecule chimeras based on the PI3K inhibitor IMM-H012, denoted as [68Ga]Ga/[177Lu]Lu-P(1-4). Among them, radiolabeled P4 demonstrated superior pharmacodynamic and pharmacokinetic profiles in multiple tumor models. Moreover, [177Lu]Lu-P4 substantially suppressed subcutaneous melanoma tumor growth with an acceptable safety profile. Additionally, [177Lu]Lu-P4 combined with IMM-H012 showed synergistic antitumor effects. The mechanistic study suggested a novel radiosensitization mechanism of 177Lu to PI3K inhibitors by downregulating fatty acid oxidase expression. These findings reposition PI3K as a versatile theranostic target while providing an effective repurposing strategy for PI3K inhibitors.
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