下调和上调
重编程
癌症研究
激酶
癌细胞
癌症
帕博西利布
细胞
化学
细胞生长
癌症治疗
细胞生物学
细胞存活
机制(生物学)
程序性细胞死亡
细胞凋亡
信号转导
氧化应激
KEAP1型
肿瘤进展
联合疗法
细胞毒性
细胞毒性T细胞
蛋白激酶A
GPX4
医学
细胞周期检查点
作者
Zeyuan Yang,Yang Peng,Jie Zang,Jiawen Wang,Zihan Wang,Guan-Meng Zhang,Jinmiao Sun,Haitao Chen,Yumeng Xie,Xin Peng,Xiaofeng Shan,Yuguang Wang,Ludan Zhang,Yike Li
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-12-08
卷期号:19 (50): 42689-42704
被引量:1
标识
DOI:10.1021/acsnano.5c18165
摘要
Inhibition of cyclin-dependent kinases (CDKs) offers a promising approach for selective cancer therapy by arresting aberrant cell proliferation and inducing tumor cell senescence. However, the limited efficacy and acquired resistance resulting from primarily cytostatic rather than cytotoxic effects have hindered broader clinical applications. To overcome these limitations, we propose a senescence-primed ferroptosis strategy using a metal–organic framework (MOF)-based nanoplatform (ZPG) that codelivers CDK4/6 inhibitor (palbociclib) and ferroptosis inducer (gallium ions, Ga 3+ ) to enhance antitumor efficacy. ZPG exhibited excellent physiological stability, improved cellular uptake, and controlled drug release. In oral squamous cell carcinoma (OSCC) cells with CDK4/6 hyperactivity, palbociclib selectively blocks cell-cycle progression and induces robust senescence, leading to downregulation of antiferroptosis factors (GPX4 and GSH) and upregulation of pro-ferroptosis factors (ACSL4 and Fe 2+ accumulation). Such redox reprogramming compromises cellular antioxidant defenses and promotes lipid peroxidation, thereby sensitizing senescent cells to ferroptosis. Meanwhile, Ga 3+ mimics Fe 3+ in protein binding and disrupts iron metabolism, further amplifying ferroptotic stress and promoting selective ferroptosis in senescent tumor cells. Leveraging ZPG for the codelivery of therapeutic agents, the synergistic mechanism resulted in markedly enhanced antitumor efficacy both in vitro and in vivo, with minimal off-target toxicity. Collectively, the ZPG-enabled senescence-primed ferroptosis strategy provides a promising and mechanistically rational approach for improving cancer therapy.
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