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PMID: 40818456 已发表 · ppublish 英语

High-dose ascorbic acid selectively induces pyroptosis in LKB1-deficient lung cancer and sensitizes immunotherapy.

Cell reports. Medicine ·第 6 卷 ·第 9 期 ·2025-09-16

Sun X, Cai X, Li S, Pi R, Guo Z, Jiang J, Wang P, Xiong J, Liu Z, Rong Z, Yu Z, Zhang X, Chen J, Han D, Zhang Y, Tan J, Lin Y, Zou Z, Ai H, Kang F, Guo X, Dong Z, Wu D, Bai X

摘要

Liver kinase B1 (LKB1)-deficient non-small cell lung cancers (NSCLCs) exhibit primary resistance to immune checkpoint inhibitors (ICIs). The redox imbalance inherent in these tumors may represent a potential therapeutic vulnerability. High-dose ascorbic acid (AA) could induce cell redox imbalance. Here, we uncover that LKB1 deficiency upregulates the transporter GLUT1, which enables the accumulation of AA, thereby exacerbating redox imbalance in NSCLC cells. This triggers pyroptosis in LKB1-deficient NSCLC cells via the H2O2/reactive oxygen species (ROS)-caspase-3-gasdermin-E (GSDME) axis. In pre-clinical models, high-dose AA reverses ICI resistance and remodels the immune microenvironment, characterized by T cell factor 1 (TCF1)+CD8+ T cell (progenitor-exhausted CD8+ T cell [Tpex]) infiltration. Pyroptosis-driven immunogenic cell death (ICD) promotes cross-presenting dendritic cell (DC) maturation, which drives Tpex proliferation. Crucially, in Batf3-/- mice lacking functional CD103+ DC populations, both Tpex expansion and therapeutic benefits are abrogated, confirming DC dependence. In addition, GSDME is validated as a gatekeeper of pyroptosis-driven antitumor immunity. This work provides a rationale for clinical trials combining ICI with high-dose AA.

关键词
GSDME LKB1-deficient lung cancer Tpex caspase-3 dendritic cells high-dose ascorbic acid immunotherapy resistance pyroptosis reactive oxygen species
文献信息
期刊
Cell reports. Medicine
期刊简称
Cell Rep Med
ISSN
2666-3791
发表日期
2025-09-16
语言
英语
国家/地区
United States
NLM ID
101766894
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