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Updated: Nov 8, 2025

Analysis of Human T Cell Activity in an Allogeneic Co-Culture Setting of Pre-Treated Tumor Cells
Published on: March 7, 2025
Nutrient supplements from selected botanicals mediated immune modulation of the tumor microenvironment and antitumor
Hui-Ming Chen1,2,3, Linus Sun4, Ping-Ying Pan1,2,3
1Department of Oncological Sciences, Icahn School of Medicine At Mount Sinai, New York, 10029, USA.
Abstract:
Specific extracts of selected vegetables (SV) have been shown to benefit the survival of stage IIIb/IV non-small cell lung cancer patients in phase I/II studies and is currently in a phase III trial. However, the underlying mechanism of SV-mediated antitumor immune responses has not been elucidated. Our results indicate that SV modulated the NK and adoptive T cell immune responses in antitumor efficacy. Furthermore, antitumor effects of SV were also mediated by innate myeloid cell function, which requires both TLR and β-glucan signaling in a MyD88/TRIF and Dectin-1-dependent manner, respectively. Additionally, SV treatment reduced granulocytic myeloid-derived suppressor cell (MDSC) infiltration into the tumor and limited monocytic MDSC toward the M2-like functional phenotype. Importantly, SV treatment enhanced antigen-specific immune responses by augmenting the activation of antigen-specific TH1/TH17 cells in secondary lymphoid organs and proliferative response, as well as by reducing the Treg population in the tumor microenvironment, which was driven by SV-primed activated M-MDSC. Our results support the idea that SV can subvert immune-tolerance state in the tumor microenvironment and inhibit tumor growth. The present study suggests that features, such as easy accessibility, favorable clinical efficacy, no detectable side effects and satisfactory safety make SV a feasible, appealing and convincing adjuvant therapy for the treatment of cancer patients and prevent tumor recurrence and/or metastases.
Insights
Selected vegetable extracts (SV) enhance anti-tumor immunity by modulating NK cells, T cells, and myeloid cell function. SV reduces immunosuppressive cells, promoting antigen-specific responses and inhibiting non-small cell lung cancer growth.
Area of Science:
- Immunology
- Oncology
- Natural Product Therapeutics
Background:
- Selected vegetable extracts (SV) show promise in clinical trials for advanced non-small cell lung cancer (NSCLC).
- The immunological mechanisms underlying SV's anti-tumor effects remain largely uncharacterized.
Purpose of the Study:
- To elucidate the mechanisms of SV-mediated anti-tumor immune responses in NSCLC.
- To investigate SV's impact on innate and adaptive immune cells within the tumor microenvironment.
Main Methods:
- Analysis of NK cell and adoptive T cell responses.
- Assessment of innate myeloid cell function, including TLR, β-glucan, MyD88/TRIF, and Dectin-1 signaling.
- Evaluation of myeloid-derived suppressor cell (MDSC) infiltration and phenotype (granulocytic and monocytic).
- Measurement of antigen-specific T cell responses (TH1/TH17, Treg) and M-MDSC activation.
Main Results:
- SV modulated NK and adoptive T cell immunity.
- SV's anti-tumor effects involved innate myeloid cells via TLR and β-glucan signaling.
- SV reduced granulocytic MDSC infiltration and M2-like polarization of monocytic MDSCs.
- SV enhanced antigen-specific TH1/TH17 cell activation and proliferation while decreasing tumor-infiltrating Tregs.
Conclusions:
- SV subverts tumor immune tolerance and inhibits tumor growth.
- SV demonstrates potential as a safe, accessible, and effective adjuvant therapy for cancer, preventing recurrence and metastasis.
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