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September 10, 2025Journal for ImmunoTherapy of Cancer0 citationsOpen Access

Preclinical evaluation of antitumor activity and toxicity of TROP2-specific CAR-T cells for treatment of triple-negative breast cancer

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SSShiyu SunXWXiaojia WangYCY. Chen

Key Points

  • TROP2 CAR-T cells exhibit strong antitumor activity against triple-negative breast cancer cell lines.
  • In vivo testing with xenograft models reveals severe off-tumor toxicity in TROP2-humanized mice.
  • An AND-logic gated SynNotch CAR targeting B7-H3 demonstrates comparable antitumor efficacy with reduced toxicity.
  • These findings indicate the need for cautious application of TROP2 targeting in clinical settings due to potential organ damage.

Abstract

Background Triple-negative breast cancer (TNBC) represents a subtype of breast cancer with poorest prognosis due to limited effective targeted therapies. Chimeric antigen receptor T cell (CAR-T) therapy has shown remarkable efficacy in treating hematological cancers, but its application in TNBC requires further development. One major obstacle is the lack of suitable tumor-specific target in TNBC. Inspired by recent success of trophoblast cell-surface antigen 2 (TROP2) antibody-drug conjugate in TNBC, we developed a second-generation CAR that specifically targets TROP2 and formally evaluated its antitumor activity and safety profile using in vitro and in vivo models. Methods A CAR molecule targeting TROP2 was constructed based on the clinically-validated humanized antibody Sacituzumab and expressed in primary human T cells using a retroviral vector. Tumor cytotoxicity, cytokine production and T-cell proliferation of TROP2 CAR-T cells were tested against multiple TNBC cell lines in vitro. Antitumor efficacy was evaluated using orthotopic and metastatic models of cell line-derived xenograft in NSG mice and in patient-derived xenograft (PDX) model. The safety profile of TROP2 CAR-T cells was assessed using TROP2-humanized immunocompetent mice and an “AND”-logic gated SynNotch CAR targeting B7-H3 and TROP2 was engineered to minimize off-tumor, on-target toxicity of TROP2 CAR-T cells. Results Human TROP2 CAR-T cells demonstrated robust antitumor activity in vitro and in orthotopic/metastatic/PDX xenograft mouse models. TROP2 CAR-T cells caused lethal on-target, off-tumor toxicity in TROP2-humanized immunocompetent mice, causing severe tissue damage in lungs and systemic inflammation. The B7-H3/TROP2 “AND”-logic gated SynNotch CAR-T cells showed comparable antitumor efficacy without causing apparent adverse effects as in TROP2 CAR-T cells. Conclusions These data indicate that while CAR-T therapy targeting TROP2 possesses potent antitumor activity against TNBC cell lines and PDX, its potential side effects could be lethal due to TROP2 expression in vital organs such as the lung. Using an “AND”-logic gated CAR is a viable solution to overcome its in vivo toxicity. Our study lays the groundwork for future development of TROP2 CAR-T cell therapy for TNBC.

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Cite This Study

Sun et al. (2025) studied this question.

synapsesocial.com/papers/68c187209b7b07f3a0610fa3https://doi.org/10.1136/jitc-2025-012442
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Novel TROP2-targeted CAR T cells with high specificity and sustained efficacy for solid tumors in animal models.2024
  2. 2Cytotoxicity of fourth-generation anti-Trop2 CAR-T cells against breast cancer2024 · 15 citations
  3. 3Combined treatment of TROP‑2 targeted CAR-T and vascular disruptor CBP enhances anti‑tumor activity in triple‑negative breast cancer2026
  4. 4Characterization of TROP-2 bispecific T cell engagers for immunotherapy of triple negative breast and bladder cancer2026
  5. 5Abstract CT294: Phase I study of TROP2 CAR engineered IL-15-transduced cord blood-derived NK cells in advanced solid tumors (TROPIKANA)2026