资源类型:
期刊
WOS体系:
Article
Pubmed体系:
Journal Article
收录情况:
◇ SCIE
文章类型:
论著
机构:
[1]Department of Immuno-Oncology, The Fourth Hospital of Hebei Medical University, Shijiazhuang, Hebei 050000, PR China.
临床科室
肿瘤免疫科
河北医科大学第四医院
[2]Department of Interventional Radiology, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, Henan 450000, PR China.
ISSN:
0024-3205
关键词:
cGAS-STING pathway
Exosome
Immunogenic cell death
Immunotherapy
Lung Cancer
摘要:
Checkpoint blockade immunotherapy is a promising therapeutic modality that has revolutionized cancer treatment; however, the therapy is only effective on a fraction of patients due to the tumor environment. In tumor immunotherapy, the cGAS-STING pathway is a crucial intracellular immune response pathway. Therefore, this study aimed to develop an immunotherapy strategy based on the cGAS-STING pathway.The physicochemical properties of the nanoparticles EM@REV@DOX were characterized by TEM, DLS, and WB. Subcutaneous LLC xenograft tumors were used to determine the biodistribution, antitumor efficacy, and immune response. Blood samples and tissues of interest were harvested for hematological analysis and H&E staining.Overall, our designed nanovesicles provide a new perspective on tumor immunotherapy by ICD and cGAS-STING pathway, promoting DCs maturation, macrophage polarization, and activating T cells, offering a meaningful strategy for accelerating the clinical development of immunotherapy.EM@REV@DOX accumulated in the tumor site through EPR and homing targeting effect to release REV and DOX, resulting in DNA damage and finally activating the cGAS-STING pathway, thereby promoting DCs maturation, macrophage polarization, and activating T cells. Additionally, EM@REV@DOX increased the production of pro-inflammatory cytokines (e.g., TNF-α and IFN-β). As a result, EM@REV@DOX was effective in treating tumor-bearing mice and prolonged their lifespans. When combined with αPD-L1, EM@REV@DOX significantly inhibited distant tumor growth, extended the survival of mice, and prevented long-term postoperative tumor metastasis, exhibiting great potential in antitumor immunotherapy.Copyright © 2024. Published by Elsevier Inc.
基金:
This work was supported by the Basic Research Cooperation Project of Beijing, Tianjin, Hebei from the Natural Science Foundation of Hebei (H2020206649), Tianjin (20JCZXJC00070), and Beijing (J200018), and the Key Research and Development Program of Hebei Province (21377704D).
被引次数:
3
WOS:
WOS:001240381500001
PubmedID:
38718856
中科院分区:
出版当年[2025]版:
大类
|
3 区
医学
小类
|
2 区
药学
3 区
医学:研究与实验
最新[2025]版:
大类
|
3 区
医学
小类
|
2 区
药学
3 区
医学:研究与实验
JCR分区:
最新[2023]版:
Q1
MEDICINE, RESEARCH & EXPERIMENTAL
Q1
PHARMACOLOGY & PHARMACY
影响因子:
5.2
最新[2023版]
5.3
最新五年平均
5.2
出版当年[2024版]
5.3
出版当年五年平均
5.2
出版前一年[2023版]
第一作者:
Guo Yawen
第一作者机构:
[1]Department of Immuno-Oncology, The Fourth Hospital of Hebei Medical University, Shijiazhuang, Hebei 050000, PR China.
共同第一作者:
Qian Ruijie
通讯作者:
Wang Zhiyu
通讯机构:
[1]Department of Immuno-Oncology, The Fourth Hospital of Hebei Medical University, Shijiazhuang, Hebei 050000, PR China.
推荐引用方式(GB/T 7714):
Guo Yawen,Qian Ruijie,Li Zijie,et al.Tumor-derived nanovesicles enhance cancer synergistic chemo-immunotherapy by promoting cGAS/STING pathway activation and immunogenetic cell death[J].Life Sciences.2024,348:122687.doi:10.1016/j.lfs.2024.122687.
APA:
Guo Yawen,Qian Ruijie,Li Zijie,Lv Tingting,Yang Chunwang...&Wang Zhiyu.(2024).Tumor-derived nanovesicles enhance cancer synergistic chemo-immunotherapy by promoting cGAS/STING pathway activation and immunogenetic cell death.Life Sciences,348,
MLA:
Guo Yawen,et al."Tumor-derived nanovesicles enhance cancer synergistic chemo-immunotherapy by promoting cGAS/STING pathway activation and immunogenetic cell death".Life Sciences 348.(2024):122687