结直肠癌
癌症研究
谷氨酰胺
下调和上调
谷胱甘肽
GPX4
癌细胞
白蛋白
程序性细胞死亡
药理学
半胱氨酸
药品
癌症
细胞毒性
药物输送
化学
溶质载体族
癌症治疗
赫拉
谷胱甘肽过氧化物酶
细胞培养
过氧化物酶
免疫原性细胞死亡
细胞
细胞凋亡
毒品携带者
靶向给药
医学
作者
Shiting Xu,Wenhao Gao,Shuang Lin,Bingkun Kang,Xiao-Ting Shi,Da Zheng,Longyun Xiao,Lingjun Zeng,Qian Zhang,Wenjun Tian,Hongtao Song
标识
DOI:10.1021/acsami.5c19528
摘要
Ferroptosis, a newly recognized mode of regulated cell death characterized by iron-mediated accumulation of lipid peroxides, represents a viable treatment strategy for metastatic colorectal cancer (CRC). Nonetheless, the clinical effectiveness of single-agent ferroptosis inducers is constrained by the adaptive and self-repair capabilities of tumor cells. To address this limitation, this study proposes a self-amplifying ferroptosis nanodrug SOR/QUE@HSA, which is engineered by coencapsulating sorafenib (SOR) and quercetin (QUE) within human serum albumin (HSA). SOR/QUE@HSA offers a uniform structure, improved stability, and enhanced drug delivery efficiency. The released SOR and QUE impeded the uptake of glutamine (Gln) and cysteine (Cys) by targeting solute carrier family 7 member 11 (SLC7A11) and solute carrier family 1 member 5 (SLC1A5), respectively. This dual inhibition consequently disrupts the synthesis of glutathione (GSH), resulting in a marked downregulation of glutathione peroxidase 4 (GPX4), ultimately enhancing ferroptosis in CRC. Additionally, QUE inhibits hexokinase-II (HK-II), which results in decreased ATP production and lactate (LA) generation, thereby impeding tumor metastasis. In summary, our findings unveil a plausible role for the therapeutic potential of QUE as a ferroptosis-inducing anticancer agent, and the synergistic combination of QUE and SOR within this nanoplatform presents an option for treating metastatic CRC.
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