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Cell Membrane Hybrid Lipid Nanovesicles Enhance Innate Immunity for Synergistic Immunotherapy by Promoting Immunogenic Cell Death and cGAS Activation.
Qian, Ruijie; Guo, Yawen; Wang, Ruihua; Wang, Shuai; Gao, Xuemei; Zhu, Ziyang; Wang, Kun; Zhu, Ke; Jia, Baosong; Chen, Yijian; Wang, Zhiyu; Ren, Jianzhuang; Duan, Xuhua; Han, Xinwei.
Affiliation
  • Qian R; Department of Interventional Radiology, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.
  • Guo Y; Department of Immuno-Oncology, The Fourth Hospital of Hebei Medical University, Shijiazhuang, Hebei, China.
  • Wang R; Department of Nuclear Medicine, The First Affiliated Hospital, College of Medicine, Henan Medical Key Laboratory of Molecular Imaging, Zhengzhou University, Jianshe East Road, Zhengzhou 450052, Henan, China.
  • Wang S; Department of Medical Technology, Nanyang Medical College, 1106 Xuefeng West Road, Nanyang 473000, Henan, China.
  • Gao X; Department of Nuclear Medicine, The First Affiliated Hospital, College of Medicine, Henan Medical Key Laboratory of Molecular Imaging, Zhengzhou University, Jianshe East Road, Zhengzhou 450052, Henan, China.
  • Zhu Z; Department of Nuclear Medicine, Sichuan Provincial People's Hospital, Chengdu, Sichuan 610072, China.
  • Wang K; Department of Nuclear Medicine, Shanghai East Hospital, School of Medicine, Tongji University, Shanghai 200120, China.
  • Zhu K; Department of Cardiology, Shanghai East Hospital, School of Medicine, Tongji University, Shanghai 200120, China.
  • Jia B; Department of Breast and Thyroid Surgery, The Second People's Hospital of Lianyungang, Lianyungang, China.
  • Chen Y; Department of Radiology, Beijing Jingmei Group General Hospital, Beijing, China.
  • Wang Z; Department of Immuno-Oncology, The Fourth Hospital of Hebei Medical University, Shijiazhuang, Hebei, China.
  • Ren J; Department of Interventional Radiology, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.
  • Duan X; Department of Interventional Radiology, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.
  • Han X; Department of Interventional Radiology, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.
Biomater Res ; 28: 0038, 2024.
Article in En | MEDLINE | ID: mdl-38868091
ABSTRACT
Immunotherapy shows great therapeutic potential for long-term protection against tumor relapse and metastasis. Innate immune sensors, such as cyclic GMP-AMP synthase (cGAS) and stimulator of interferon genes (STING), dissolve DNA and induce type I interferon. Through activation of the cGAS/STING pathway, chemotherapy drugs and reversine (REV) may provide synergetic anti-tumor effects. Here, we prepared drug-loaded cell membrane hybrid lipid nanovesicles (LEVs) (designated LEV@DOX@REV) by fusion of cell membranes, phospholipids, doxorubicin (DOX), and REV, to realize accurate delivery to tumors and chemo-immunotherapy. The cell membranes of LEVs confer "homing" abilities. DOX can induce immunogenic cell death as a result of its specific immunomodulatory effects, which promotes the maturation of immune cells and improves the microenvironment of the immune system. REV is proven to efficiently activate cGAS/STING signaling, thereby enhancing the immune system. The antitumor efficacy of LEV@DOX@REV was evaluated in a 4T1 subcutaneous tumor xenograft model, a distant metastatic tumor model, and a liver metastatic tumor model. LEV@DOX@REV facilitated the infiltration of cytotoxic T lymphocytes within tumors, increased the secretion of proinflammatory cytokines, and modified the tumor microenvironment. In conclusion, LEV@DOX@REV displayed favorable antitumor effects and extended the survival of tumor-bearing mice. We therefore successfully developed nanoparticles capable of enhancing immune activation that have potential therapeutic applications for cancer immunotherapy.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Biomater Res Year: 2024 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Biomater Res Year: 2024 Document type: Article