过氧亚硝酸盐
活性氧
一氧化氮
材料科学
活性氮物种
化学
药理学
过氧亚硝酸
谷胱甘肽
辣椒素
生物物理学
癌症研究
生物化学
S-亚硝基谷胱甘肽
敏化
癌症免疫疗法
细胞生物学
程序性细胞死亡
两亲性
GPX4
细胞内
癌细胞
炎症
葡萄孢霉素
脂多糖
光动力疗法
超氧化物
作者
Jian Sun,Jia Liu,Yun Huang,Huixin Zhao,Jin-Jin Zhao,Shuangyan He,Ting Zou,Zhi Zheng,Cui‐Yun Yu,Hua Wei
标识
DOI:10.1016/j.matdes.2025.114907
摘要
• A Medicine and Food Homology (MFH) notion is used to generate a capsaicin nano-prodrug. • The self-assembled nanoprodrug enables targeted delivery of capsaicin and nitric oxide to tumors. • The combination therapy generates peroxynitrite to boost ferroptosis via glutathione depletion and lipid peroxidation. • This nanoprodrug activates antitumor immunity, achieving a tumor inhibition rate of 93.4% in a murine liver cancer model. Inspired by Medicine and Food Homology (MFH), developing natural dietary therapeutics holds translational potential but is often limited by unclear mechanisms. Herein, we report a capsaicin (Cap)-derived binary prodrug, Bio-SS-Cap, featuring a disulfide-linked biotin (Bio). The amphiphilic structure enables further self-assembly of Bio-SS-Cap into stabilized nanoparticles (NPs) with passive and active dual tumor targeting properties. Further encapsulation of a hydrophobic nitric oxide (NO) donor, isosorbide dinitrate (ISDN) by Bio-SS-Cap NPs affords ISDN-loaded nanoprodrugs, ISDN@Bio-SS-Cap NPs. Intracellular glutathione (GSH)-triggered cleavage of the disulfide links promotes particulate dissociation for simultaneous release of Cap and ISDN that produces reactive oxygen species (particularly superoxide anion (O 2 •− )) and NO, respectively. More importantly, NO further reacts with O 2 •− to generate peroxynitrite (ONOO − ) for enhanced ferroptosis induction via GSH depletion, impaired regeneration, and lipid peroxidation. Together with the reactive oxygen and nitrogen species (RONS)-triggered immunogenic cell death (ICD), the ISDN@Bio-SS-Cap NPs-modulated enhanced ferroptosis promotes M2-to-M1 macrophage polarization and activates T cell infiltration for the innate-adaptive immunity loop activation, which leads to a tumor inhibition rate (TIR) of 93.4 % in a murine HCC model. Overall, this MFH-inspired self-assembled Cap nanoprodrug holds great translation potentials for potent ferroptosis-modulated immunotherapy of HCC via peroxynitrite generation.
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