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Updated: May 11, 2026

Experimental Metastasis and CTL Adoptive Transfer Immunotherapy Mouse Model
Published on: November 26, 2010
Cancer-induced immunosuppressive cascades and their reversal by molecular-targeted therapy
Yutaka Kawakami1, Tomonori Yaguchi, Hidetoshi Sumimoto
1Division of Cellular Signaling, Institute for Advanced Medical Research, Keio University School of Medicine, Tokyo, Japan. yutakawa@z5.keio.jp
Abstract:
Immunological status in tumor tissues varies among patients. Infiltration of memory-type CD8(+) T cells into tumors correlates with prognosis of patients with various cancers. However, the mechanism of the differential CD8(+) T cell infiltration has not been well investigated. In general, tumor-associated microenvironments, including tumor and sentinel lymph nodes, are under immunosuppressive conditions such that the immune system is not able to eliminate cancer cells without immune-activating interventions. Constitutive activation of various signaling pathways in human cancer cells triggers multiple immunosuppressive cascades that involve various cytokines, chemokines, and immunosuppressive cells. Signaling pathway inhibitors could inhibit these immunosuppressive cascades by acting on either cancer or immune cells, or both. In addition, common signaling mechanisms are often utilized for multiple hallmarks of cancer (e.g., cell proliferation/survival, invasion/metastasis, and immunosuppression). Therefore, targeting these common signaling pathways may be an attractive strategy for cancer therapy including immunotherapy.
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