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February 26, 2026Journal for ImmunoTherapy of Cancer2 citationsOpen Access

Specific depletion of TIGIT high CD226 − clonally expanded intratumoral Tregs defines safe and effective TIGIT targeting

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HZHaoyue ZhouGladstone InstitutesJLJinmei LiShanghai Jiao Tong UniversitySMSong MeiBerkeley College

Key Points

  • The study aims to understand the impact of TIGIT high CD226 negative Tregs on immunotherapy effectiveness and how targeting them can enhance antitumor activity.
  • Conducted multiomics analyses including single-cell RNA and TCR sequencing.
  • Evaluated therapeutic efficacy of various anti-TIGIT antibodies in mouse models.
  • Analyzed tumor microenvironment changes using flow cytometry and sequencing techniques.
  • Assessed safety profiles in murine models through growth monitoring and histopathological evaluations.
  • Identified TIGIT high CD226 negative Tregs as major barriers to effective immunotherapy.
  • αTIGIT-IgG1-ADCC selectively eliminated these Tregs, improving antitumor response.
  • Removal of Tregs enhanced stem-like CD4+ T cell differentiation into Th1 cells, boosting CD8+ T cell function.
  • Presence of Tregs correlated with poor immunotherapy responses in non-small cell lung cancer patients.

Abstract

Background Global clinical programs based on TIGIT (T cell immunoglobulin and ITIM domain) blockade have been terminated due to inadequate clinical efficacy. New approaches are needed to increase the antitumor activity of anti-TIGIT-based immunotherapy. Methods Multiomics analyses, including single-cell RNA sequencing (scRNA-seq), single-cell TCR sequencing (scTCR-seq), and The Cancer Genome Atlas bulk RNA-seq, were performed to profile TIGIT and the costimulator CD226 expression and assess intratumoral regulatory T cells (Tregs) clonality, with validation by flow cytometry in murine and patient-derived tumor-infiltrating lymphocytes. The therapeutic efficacy of anti-TIGIT antibodies (αTIGIT), including αTIGIT-IgG1-wild-type (WT), αTIGIT-IgG1-WT with enhanced antibody-dependent cellular cytotoxicity (ADCC) activity (αTIGIT-IgG1-ADCC), αTIGIT-IgG4-WT, and tiragolumab, was evaluated in MC38 tumors-inoculated humanized TIGIT knock-in mice ( Tigit h/h , Tigit h/m ). Tumor microenvironment alterations were analyzed using flow cytometry and scRNA/TCR-seq. Antibody binding affinity and ADCC activity were assessed via biolayer interferometry and in vitro ADCC assays. Safety profiles were examined in a murine immune-related adverse events model through growth monitoring, survival analysis, and histopathological evaluation. Results Using mouse models and clinical sample analysis, we identified a population of TIGIT high CD226 − clonally expanded intratumoral Tregs as a major barrier limiting the ability of TIGIT blockade to enhance effector cell function. αTIGIT-IgG1-ADCC specifically targeted and eliminated the TIGIT high CD226 − clonally expanded Treg subset, resulting in a marked improvement in antitumor efficacy compared with WT and clinically unsuccessful αTIGIT. Mechanistically, removal of these Tregs through αTIGIT-IgG1-ADCC relieved their suppression of stem-like CD4 + T cells, facilitating their differentiation into T helper cell 1 (Th1) effector cells. Th1-derived interferon-gamma (IFN-γ) further enhanced the functionality of tumor-infiltrating CD8 + T cells. Importantly, the presence of clonally expanded intratumoral Tregs and the suppression of stem-like CD4 + T cells correlated with poor immunotherapy response in patients with non-small cell lung cancer. Conclusions Targeted elimination of clonally expanded intratumoral Tregs is essential to unlock the full therapeutic potential of αTIGIT. These novel findings provide a key rationale and strategic direction for overcoming the limitations of current αTIGIT-based cancer immunotherapy.

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Cite This Study

Zhou et al. (2026) studied this question.

synapsesocial.com/papers/699fe3d995ddcd3a253e7de5https://doi.org/10.1136/jitc-2025-013636
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