Dual Metabolic Rewiring Amplifies Cellular Oxidation and Reverses Immunosuppression for Combating Orthotopic Triple‐Negative Breast Cancer

乳腺癌 肿瘤微环境 癌细胞 癌症研究 化学 活性氧 糖酵解 细胞生物学 血管生成 厌氧糖酵解 转移 癌症 下调和上调 生物化学 氧化磷酸化 细胞内 生物 新陈代谢 细胞呼吸 缺氧(环境) 三苯氧胺 线粒体 细胞毒性 代谢物 己糖激酶 药理学
作者
Qiu‐Yi Duan,Shi‐Hao Wang,Ke‐Fei Xu,Yuxin Guo,Xiaoyang Liu,Shao‐Zhe Wang,Bai‐Hui Shan,Hui‐Heng Feng,Qiming Xu,Yang Shen,Fu‐Gen Wu
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:36 (13)
标识
DOI:10.1002/adfm.202518702
摘要

Abstract Abnormal glucose/lactate metabolism is one of the key hallmarks of a tumor. Leveraging the excessive metabolite lactate to generate reactive oxygen species (ROS) by lactate oxidase (LOx) has become an efficient method for cancer therapy. However, the hypoxic tumor microenvironment (TME) and ROS‐scavenging enzymes largely restrict the catalytic activity of LOx. Herein, we design an ROS generator composed of LOx‐encapsulated and 7‐ethyl‐10‐hydroxycamptothecin (SN‐38)‐ and tamoxifen (TAM)‐coloaded membrane fusion liposomes, which can directly release cargoes via fusion with cancer cell membranes. Through the glycolysis promotion and mitochondrial respiration inhibition by TAM, and the antioxidant enzyme downregulation by SN‐38, the generator not only spares oxygen and increases intracellular lactate for LOx catalysis to yield cytotoxic H 2 O 2 , but also avoids ROS removal, realizing triple‐amplified ROS production and effective cancer cell killing. In the TME of an orthotopic breast cancer model, the generator consumes lactate and produces immunostimulatory H 2 O 2 , thereby promoting the M1‐like polarization of tumor‐associated macrophages and suppressing regulatory T cells to remodel the immunosuppressive TME. Additionally, the generator inhibits angiogenesis and further cancer metastasis via hypoxia inducible factor‐1α (HIF‐1α) signaling blockage. Collectively, this work provides an inspirational example of using a glucose/lactate metabolism interference strategy to fight against orthotopic triple‐negative breast cancer.
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