肝纤维化
维生素C
癌症研究
材料科学
p38丝裂原活化蛋白激酶
纤维化
药理学
MAPK/ERK通路
医学
肝星状细胞
维生素
纳米结构
领域(数学)
联合疗法
抗坏血酸
生物化学
作者
Guangming Xiang,Jing Zhang,Yue Lü,Fei Wu,Chuncheng Yang,Ruicheng Shi,Yelin WU,Yanyan Liu,Xingwu Jiang
标识
DOI:10.1021/acsami.5c26014
摘要
Vitamin C is essential for physiological health, yet its potential biological effects are limited by the difficulty of maintaining locally high concentrations under oxidative conditions. Here we developed a redox-stable magnesium-vitamin C coordination self-assembly encapsulated in a biomimetic liposomal shell. This nanostructure accumulates in the liver and protects vitamin C from degradation caused by reactive oxygen species. The localized enrichment enables covalent vitcylation of p38 MAPK at K53 and K54, which blocks its nucleus translocation and triggers G2/M cell-cycle arrest, thereby limiting profibrotic cell proliferation. We identify this modification as a vitamin C-derived post-translational modification that directly regulates MAPK signaling in hepatic stellate cells. This mechanism distinguishes VC from conventional antioxidant paradigms and reveals its capacity to act as a covalent modulator of signaling pathways. More broadly, our findings establish vitcylation as a biochemical principle linking nutrient chemistry to cell cycle control and offer therapeutic potential for liver fibrosis.
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