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Updated: Jun 27, 2026

Analysis of Human T Cell Activity in an Allogeneic Co-Culture Setting of Pre-Treated Tumor Cells
Published on: March 7, 2025
The role of NKT cells in tumor immunity
Masaki Terabe1, Jay A Berzofsky
1Vaccine Branch, Center for Cancer Research, National Cancer Institute, National Institute of Health, Bethesda, Maryland, USA.
Abstract:
NKT cells are a relatively newly recognized member of the immune community, with profound effects on the rest of the immune system despite their small numbers. They are true T cells with a T cell receptor (TCR), but unlike conventional T cells that detect peptide antigens presented by conventional major histocompatibility (MHC) molecules, NKT cells recognize lipid antigens presented by CD1d, a nonclassical MHC molecule. As members of both the innate and adaptive immune systems, they bridge the gap between these, and respond rapidly to set the tone for subsequent immune responses. They fill a unique niche in providing the immune system a cellular arm to recognize lipid antigens. They play both effector and regulatory roles in infectious and autoimmune diseases. Furthermore, subsets of NKT cells can play distinct and sometimes opposing roles. In cancer, type I NKT cells, defined by their invariant TCR using Valpha14Jalpha18 in mice and Valpha24Jalpha18 in humans, are mostly protective, by producing interferon-gamma to activate NK and CD8(+) T cells and by activating dendritic cells to make IL-12. In contrast, type II NKT cells, characterized by more diverse TCRs recognizing lipids presented by CD1d, primarily inhibit tumor immunity. Moreover, type I and type II NKT cells counter-regulate each other, forming a new immunoregulatory axis. Because NKT cells respond rapidly, the balance along this axis can greatly influence other immune responses that follow. Therefore, learning to manipulate the balance along the NKT regulatory axis may be critical to devising successful immunotherapies for cancer.
Insights
Natural killer T (NKT) cells bridge innate and adaptive immunity, recognizing lipid antigens. Type I NKT cells are protective in cancer, while type II NKT cells inhibit anti-tumor immunity, forming a regulatory axis crucial for immunotherapy.
Area of Science:
- Immunology
- Cellular Biology
- Cancer Research
Background:
- Natural Killer T (NKT) cells are immune cells that bridge innate and adaptive immunity.
- Unlike conventional T cells, NKT cells recognize lipid antigens presented by CD1d molecules.
- NKT cells play critical roles in immune responses to infections, autoimmune diseases, and cancer.
Purpose of the Study:
- To elucidate the distinct roles of NKT cell subsets in cancer immunity.
- To describe the regulatory axis formed by type I and type II NKT cells.
- To highlight the potential of manipulating the NKT regulatory axis for cancer immunotherapy.
Main Methods:
- Characterization of NKT cell subsets based on T cell receptor (TCR) specificity.
- Analysis of cytokine production (e.g., interferon-gamma, IL-12) by NKT cells.
- Investigation of NKT cell interactions with other immune cells (NK cells, CD8+ T cells, dendritic cells).
Main Results:
- Type I NKT cells, with invariant TCRs, are generally protective in cancer by activating NK and CD8+ T cells and dendritic cells.
- Type II NKT cells, with diverse TCRs, primarily inhibit anti-tumor immunity.
- Type I and type II NKT cells exhibit counter-regulatory functions, establishing a novel immunoregulatory axis.
Conclusions:
- The balance between type I and type II NKT cells significantly influences anti-tumor immune responses.
- Understanding and manipulating the NKT cell regulatory axis is essential for developing effective cancer immunotherapies.
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