Author:
Chen Meihua,Xiang Rong,Wen Yuan,Xu Guangchao,Wang Chunting,Luo Shuntao,Yin Tao,Wei Xiawei,Shao Bin,Liu Ning,Guo Fuchun,Li Meng,Zhang Shuang,Li Minmin,Ren Kexing,Wang Yongsheng,Wei Yuquan
Abstract
Abstract
Cancer-associated fibroblasts (CAFs) are common components of the tumor-suppressive microenvironment and are a major determinant of the poor outcome of therapeutic vaccination. In this study, we modified tumor cells to express the fibroblast activation protein (FAP), which is highly expressed by CAFs, to potentially improve whole-cell tumor vaccines by targeting both tumor cells and CAFs. Tumor cells were transfected with murine FAP plasmids bearing the cationic lipid DOTAP. Its antitumor effects were investigated in three established tumor models. Vaccination with tumor cells expressing FAP eliminated solid tumors and tumors resulting from hematogenous dissemination. This antitumor immune response was mediated by CD8+ T cells. Additionally, we found that CAFs were significantly reduced within the tumors. Furthermore, this vaccine enhanced the infiltration of CD8+ T lymphocytes and suppressed the accumulation of immunosuppressive cells in the tumor microenvironment. Our results indicated that the FAP-modified whole-cell tumor vaccine induced strong antitumor immunity against both tumor cells and CAFs and reversed the immunosuppressive effects of tumors by decreasing the recruitment of immunosuppressive cells and enhancing the recruitment of effector T cells. This conclusion may have important implications for the clinical use of genetically modified tumor cells as cancer vaccines.
Publisher
Springer Science and Business Media LLC
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