核梭杆菌
癌症研究
封锁
肿瘤微环境
免疫系统
免疫检查点
阿霉素
癌症
抗生素
乳腺癌
免疫疗法
化疗
医学
微生物学
药理学
免疫学
内科学
生物
受体
牙龈卟啉单胞菌
牙周炎
作者
Shizhen Geng,Pengke Guo,Xinling Li,Yaru Shi,Jing Wang,Mengnian Cao,Yunya Zhang,Kaixiang Zhang,Airong Li,Haiwei Song,Zhenzhong Zhang,Jinjin Shi,Junjie Liu,Yiling Yang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2024-03-18
卷期号:18 (12): 8971-8987
被引量:5
标识
DOI:10.1021/acsnano.3c12687
摘要
Immune checkpoint blockade (ICB) therapy has been approved for breast cancer (BC), but clinical response rates are limited. Recent studies have shown that commensal microbes colonize a variety of tumors and are closely related to the host immune system response. Here, we demonstrated that Fusobacterium nucleatum (F.n), which is prevalent in BC, creates an immunosuppressive tumor microenvironment (ITME) characterized by a high-influx of myeloid cells that hinders ICB therapy. Administering the antibiotic metronidazole in BC can deplete F.n and remodel the ITME. To prevent an imbalance in the systemic microbiota caused by antibiotic administration, we designed a biomimetic nanovehicle for on-site antibiotic delivery inspired by F.n homing to BC. Additionally, ferritin-nanocaged doxorubicin was coloaded into this nanovehicle, as immunogenic chemotherapy has shown potential for synergy with ICB. It has been demonstrated that this biomimetic nanovehicle can be precisely homed to BC and efficiently eliminate intratumoral F.n without disrupting the diversity and abundance of systemic microbiota. This ultimately remodels the ITME, improving the therapeutic efficacy of the PD-L1 blocker with a tumor inhibition rate of over 90% and significantly extending the median survival of 4T1 tumor-bearing mice.
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