活性氧
肿瘤微环境
癌症免疫疗法
材料科学
化学
免疫系统
癌症研究
细胞生物学
免疫疗法
生物
免疫学
作者
Jianing Li,Tianze Wu,Weidong Wang,Yimin Gong,Mingzhu Lu,Mengmeng Zhang,Wanyue Lu,Yaming Zhou,Yannan Yang
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2024-09-18
卷期号:10 (38)
标识
DOI:10.1126/sciadv.adn3002
摘要
In situ vaccine (ISV) is a versatile and personalized local immunotherapeutic strategy. However, the compromised viability and function of dendritic cells (DCs) in a tumor microenvironment (TME) largely limit the therapeutic efficacy. We designed a hybrid nanoparticle–based ISV, which accomplished superior cancer immunotherapy via simultaneously scavenging reactive oxygen species (ROS) and activating the stimulator of interferon genes (STING) pathway in DCs. This ISV was constructed by encapsulating a chemodrug, SN38, into diselenide bond–bridged organosilica nanoparticles, followed by coating with a Mn 2+ -based metal phenolic network. We show that this ISV can activate the STING pathway through Mn 2+ and SN38 comediated signaling and simultaneously scavenge preexisting H 2 O 2 in the TME and Mn 2+ -catalyzed •OH by leveraging the antioxidant property of diselenide and polyphenol. This ISV effectively activated DCs and protected them from oxidative damage, leading to remarkable downstream T cell activation and systemic antitumor immunity. This work highlights a nanoparticle design that manipulates DCs in the TME for improving the ISV.
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