化学
细胞内
癌症免疫疗法
交叉展示
信使核糖核酸
免疫疗法
翻译效率
抗原
细胞生物学
转染
免疫系统
获得性免疫系统
抗原呈递
效力
维生素E
肿瘤抗原
伴侣(临床)
细胞毒性T细胞
脂质过氧化
维生素
生物化学
癌细胞
免疫原性
MHC I级
肿瘤微环境
作者
Xinyang Yu,Shaolong Qi,Wenjie Zhang,Hongjian Li,Fangfang Cao,Yangfan Wang,Kun Peng,Xin Lin,Xiaoyuan Chen,Guocan Yu,Xinyang Yu,Shaolong Qi,Wenjie Zhang,Hongjian Li,Fangfang Cao,Yangfan Wang,Kun Peng,Xin Lin,Xiaoyuan Chen,Guocan Yu
摘要
Antigen presentation is a critical driver of cytotoxic antitumor immunity and a limiting factor in mRNA vaccine efficacy. The overabundance of intracellular reactive oxygen species, such as hydrogen peroxide (H2O2), generated during LNP@mRNA transfection severely compromises the mRNA translation efficiency, and the resultant lipid peroxidation further disrupts antigen-presenting pathways. Herein, we screen 96 antioxidants and identify vitamin E as a potentiator of LNP to drastically promote the translation efficiency of mRNA and antigen presentation by dendritic cells. We design and synthesize a vitamin E-modified ionizable lipid (cEIL) linked by an oxalate ester, which is susceptible to cleavage by H2O2 to modulate the intracellular redox microenvironment. Incorporation of cEIL as a chaperone within LNP (ceLNP) enables adaptive vitamin E release upon encountering elevated H2O2 during transfection, which expedites the restoration of intracellular redox homeostasis, thus reinforcing the translation efficiency and mitigating lipoperoxidation to bolster the antigen presentation through the HSP70-mediated MHC I pathway. mRNA vaccines fabricated from ceLNP elicit strong antitumor immune responses to suppress tumor growth and inhibit tumor metastasis across multiple models, including melanoma, colon cancer, and neoantigen-expressing tumors, both as standalone treatments and in combination with immunotherapy or chemotherapy. This vitamin E-chaperoned delivery system holds immense promise as a universal platform for the development of next-generation mRNA vaccines in cancer immunotherapy with potent efficacy and safety.
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