生物正交化学
前药
化学
癌症免疫疗法
新陈代谢
免疫系统
肿瘤微环境
生物化学
免疫疗法
胆固醇
癌症研究
药物代谢
光热效应
光热治疗
催化作用
脂质代谢
癌细胞
细胞生物学
代谢工程
癌症
组合化学
药品
药物发现
作者
Mengyu Sun,Qi Wang,Li Wu,Yanjie Zhang,Jinsong Ren,Xiaogang Qu
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-11-14
卷期号:19 (46): 39978-39991
标识
DOI:10.1021/acsnano.5c14098
摘要
Cholesterol metabolism plays a pivotal role in cancer progression and immune evasion. However, the adverse side effects of cholesterol-lowering medications, resulting from off-target activity and high-dose requirements, represent a serious bottleneck in current clinical application strategies. Here, we report a bioorthogonal catalytic system (FA-BSI@HOFe NCs) potentiated by the pyroelectric effect of a piezoelectric material. This system is constructed by integrating a hydrogen-bonded organic framework (HOF) catalyst with piezoelectric material (Bi13S18I2 nanorods, BSI NRs), to modulate tumor cholesterol metabolism for immunotherapy. The introduction of piezoelectric BSI NRs leverages their pyroelectric properties to generate electron-hole pairs upon temperature fluctuation and also exhibits potent photothermal conversion. This synergy creates an electron-rich, heated microenvironment that significantly promotes HOF-catalyzed bioorthogonal prodrug activation. Consequently, the activated prodrug suppresses cholesterol biosynthesis, inhibiting tumor growth and reinvigorating antitumor immunity. This targeted bioorthogonal system activates drug activity in situ, maximizing therapeutic efficacy while minimizing off-target toxicity. Our work will broaden strategies for regulating cholesterol metabolism and provide insights into the design of highly efficient bioorthogonal catalysts.
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