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April 17, 2026The Journal of Pathology1 citations

Human induced pluripotent stem cell‐derived chimeric antigen receptor‐macrophages eradicate IL ‐ 13Rα2 ‐positive solid tumors

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YYY S YangArmy Medical UniversityLWLujing WangArmy Medical UniversityYZYi ZhangArmy Medical University

Key Points

  • This research aims to assess the therapeutic potential of iPSC-derived CAR macrophages targeting IL-13Rα2 in solid tumors.
  • Engineered human iPSC-derived macrophages using CAR technology to target IL-13Rα2.
  • Conducted transcriptomic and immunohistochemical analyses on tumor samples.
  • Performed in vitro phagocytosis assays to evaluate macrophage targeting.
  • Administered iCAR-M intracranially to immunocompetent mice with human glioblastoma xenografts.
  • Conducted safety assessments for systemic toxicity and neurotoxicity.
  • IL-13Rα2 was overexpressed in glioblastoma, uterine carcinosarcoma, and melanoma.
  • iCAR-M exhibited targeted clearance of IL-13Rα2-positive tumor cells in vitro.
  • Intracranial administration of iCAR-M significantly suppressed tumor growth.
  • Enhanced intratumoral cytotoxic T-cell infiltration was observed.
  • No systemic toxicity or treatment-related neurotoxicity was detected.

Abstract

Macrophages exhibit extensive tumor infiltration capacity across diverse solid malignancies, establishing macrophage-targeted immunotherapies as an emerging frontier in oncology. Genetic engineering of macrophages using chimeric antigen receptor (CAR) technology - enabling recognition and phagocytosis of neoplastic cells - is emerging as a potential therapeutic strategy against solid tumors. Human induced pluripotent stem cells (iPSCs) provide a renewable platform for the efficient differentiation of functionally competent macrophages. In this study, we engineered human iPSC-derived CAR macrophages (iCAR-M) targeting interleukin-13 receptor subunit alpha 2 (IL-13Rα2). Pan-tumor transcriptomic and immunohistochemical analyses revealed that IL-13Rα2, a tumor-associated antigen, was overexpressed in human glioblastoma (GBM), uterine carcinosarcoma (UCS), and melanoma specimens. In vitro phagocytosis assays revealed target-specific clearance of IL-13Rα2-positive tumor cells by iCAR-M. Intracranial administration of iCAR-M potently suppressed tumor growth, enhanced intratumoral cytotoxic T-cell infiltration, and prolonged the survival of humanized, immunocompetent mice bearing GBM xenografts. The administered iCAR-M maintained phagocytic capacity in vivo and acquired an M1-like pro-inflammatory phenotype. Comprehensive safety assessment revealed no detectable evidence of systemic toxicity or treatment-related neurotoxicity. Collectively, these results demonstrate the potent efficacy and favorable safety profile of iPSC-derived, IL-13Rα2-targeted CAR macrophages, supporting their therapeutic potential against solid tumors. © 2026 The Pathological Society of Great Britain and Ireland.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/69e1cf1b5cdc762e9d858011https://doi.org/10.1002/path.70063
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