刺
免疫系统
肿瘤微环境
癌症研究
连接器
干扰素基因刺激剂
纳米载体
癌症免疫疗法
T细胞
细胞
癌细胞
免疫疗法
树突状细胞
癌症
巨噬细胞
药品
材料科学
细胞生长
先天免疫系统
药物输送
体外
生物
细胞生物学
干扰素
体内
免疫学
右旋糖酐
免疫原性细胞死亡
化学
TLR7型
信号转导
药理学
电池类型
作者
Qianli Zhu,Jiaqian Miao,Xu Ds,Zhang Mc,S H Chen,Yi-Xiang Wang,Weiyi Chen,Jiaxuan Guo,Li Xu,Sheng Ma,Guangbo Ge,Xinyuan Zhu,Hongping Deng
摘要
Activation of the stimulator of interferon genes (STING) signaling pathway represents a robust strategy to reverse tumor immunosuppressive microenvironment (TIME) for cancer therapy. However, selective STING activation and its quantitative comparison across heterogeneous cell populations remain a tremendous challenge. Herein, we engineered a type of selective STING-activating polysaccharide immunomodulators (SSAPIs) with quantitative STING activation efficiency across tumor cell, macrophage, and dendritic cell (DC). Dextran as an immune cell targeting nanocarrier was employed to improve drug delivery to macrophage and DC, and to avoid the impact of macromolecular self-assembly on drug release kinetics. The STING agonist (DMXAA) was conjugated to dextran via defined linkers to control the selectivity of STING activation in different cell populations. In vitro experiments quantitively revealed the enhanced STING activation of the ester linker SSAPI (DESX) in macrophage, while the disulfide linker SSAPI (DSSX) prompted STING activation across tumor cell and immune cell. In B16F10 and CT26 tumor-bearing mice models, DSSX exhibited much superior antitumor efficacy with six out of eight complete tumor remission by inducing broad immune responses across diverse cell populations to reprogram TIME. Collectively, this work highlights the significance of activating the STING signaling pathway across cell populations in solid tumor for cancer immunotherapy.
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