Autologous Glypican-3–Targeted, Armored CAR T Cells in Patients with Advanced Solid Tumors: A Phase 1 Dose-Escalation Study of TAK-102

Chimeric antigen receptor (CAR) T-cell therapies have shown limited promise in solid tumors owing to the immunosuppressive tumor microenvironment. TAK-102 is a next-generation, glypican-3 (GPC3)-targeted CAR T-cell therapy engineered to co-express interleukin-7 (IL-7) and chemokine ligand 19 (CCL19), enhancing T-cell survival and trafficking. In this first-in-human, open-label, phase 1, dose-escalation study (ClinicalTrials.gov: NCT04405778), we evaluated a single TAK-102 infusion in 11 patients with GPC3+ advanced solid tumors refractory or intolerant to standard therapies. Patients received TAK-102 at one of three dose levels following leukapheresis and lymphodepletion chemotherapy. The primary endpoints were the incidences of dose-limiting toxicities, treatment-emergent adverse events, and adverse events of special interest. No dose-limiting toxicities were observed. The most common treatment-emergent adverse events were hematologic, including neutropenia and leukopenia (81.8%), and cytokine release syndrome (54.5%), all grade 1-2. No objective responses were observed; however, five patients achieved stable disease (disease control rate, 45.5%). One patient had a 26.1% reduction in tumor size lasting 9 months, accompanied by a 51.6% decline in serum alpha-fetoprotein. Cellular kinetics showed dose-dependent expansion, with the highest exposure at 5 × 10⁸ CAR+ cells/body. Post-treatment biopsies revealed increased CD8+ T-cell infiltration and activation markers, although CAR+ cells were undetectable in tumor tissue. Serum CCL19 levels increased with dose, suggesting immune priming. These findings support a manageable safety profile for TAK-102 and provide early evidence of biological activity in solid tumors. Further studies are warranted to optimize dosing, improve CAR T-cell persistence, and evaluate efficacy in larger patient cohorts.

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Publication Details

Journal
Cancer Immunology Research
Published
2026-09-08
DOI
https://doi.org/10.1158/2326-6066.cir-25-0855
Primary Topic
CAR-T cell therapy research
Type
article
Field-Weighted Citation Impact
0.00

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article

Autologous Glypican-3–Targeted, Armored CAR T Cells in Patients with Advanced Solid Tumors: A Phase 1 Dose-Escalation Study of TAK-102

Koji Tamada, Tomoyuki Satake, Masafumi Ikeda, Takafumi Koyama et al.
Cancer Immunology Research
CAR-T cell therapy research
article

Autologous Glypican-3–Targeted, Armored CAR T Cells in Patients with Advanced Solid Tumors: A Phase 1 Dose-Escalation Study of TAK-102

Koji Tamada, Tomoyuki Satake, Masafumi Ikeda, Takafumi Koyama, Yasutoshi Kuboki, Petar Pop-Damkov, Yuki Katsuya, Takeshi Sawada, Shunsuke Kondo, Yutaka Shimazu, Aman P. Singh, Takenori Akaike, Hideaki Kagehara, Kondala Atkuri, Takako Eguchi. Nakajima
article en

Abstract

Chimeric antigen receptor (CAR) T-cell therapies have shown limited promise in solid tumors owing to the immunosuppressive tumor microenvironment. TAK-102 is a next-generation, glypican-3 (GPC3)-targeted CAR T-cell therapy engineered to co-express interleukin-7 (IL-7) and chemokine ligand 19 (CCL19), enhancing T-cell survival and trafficking. In this first-in-human, open-label, phase 1, dose-escalation study (ClinicalTrials.gov: NCT04405778), we evaluated a single TAK-102 infusion in 11 patients with GPC3+ advanced solid tumors refractory or intolerant to standard therapies. Patients received TAK-102 at one of three dose levels following leukapheresis and lymphodepletion chemotherapy. The primary endpoints were the incidences of dose-limiting toxicities, treatment-emergent adverse events, and adverse events of special interest. No dose-limiting toxicities were observed. The most common treatment-emergent adverse events were hematologic, including neutropenia and leukopenia (81.8%), and cytokine release syndrome (54.5%), all grade 1-2. No objective responses were observed; however, five patients achieved stable disease (disease control rate, 45.5%). One patient had a 26.1% reduction in tumor size lasting 9 months, accompanied by a 51.6% decline in serum alpha-fetoprotein. Cellular kinetics showed dose-dependent expansion, with the highest exposure at 5 × 10⁸ CAR+ cells/body. Post-treatment biopsies revealed increased CD8+ T-cell infiltration and activation markers, although CAR+ cells were undetectable in tumor tissue. Serum CCL19 levels increased with dose, suggesting immune priming. These findings support a manageable safety profile for TAK-102 and provide early evidence of biological activity in solid tumors. Further studies are warranted to optimize dosing, improve CAR T-cell persistence, and evaluate efficacy in larger patient cohorts.

Cancer Immunology Research
Johnson & Johnson (United States) (US), Yamaguchi University (JP), Kyoto University (JP), National Cancer Centre Japan (JP), National Cancer Center (US), Moderna Therapeutics (United States) (US), AstraZeneca (Singapore) (SG), AstraZeneca (Switzerland) (CH), Kyoto University of Education (JP), Tokyo Women's Medical University (JP), National Cancer Center Hospital East (JP), Tokyo National Hospital (JP), Takeda (Japan) (JP)
Pfizer, Ono Pharmaceutical
Openalex Percentile: Top 14%
CAR-T cell therapy research
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