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Updated: Oct 11, 2026

Generation of CAR T Cells for Adoptive Therapy in the Context of Glioblastoma Standard of Care
Published on: February 16, 2015
Extracellular matrix-targeted TNC-scFv armoring enhances CAR T cell persistence and antitumor activity in solid
Kaizhao Chen1, Qi Fu1, Wei Zhang1
1Key Laboratory of Brain, Cognition and Education Sciences, Institute for Brain Research and Rehabilitation, Guangdong Key Laboratory of Mental Health and Cognitive Science, Ministry of Education, South China Normal University, Guangzhou 510631, China.
Abstract:
Chimeric antigen receptor T cell (CAR T cell) therapy has shown limited efficacy in solid tumors, largely due to physical and immunosuppressive barriers imposed by the tumor microenvironment (TME). Tenascin-C (TNC), an extracellular matrix protein highly expressed in multiple solid malignancies, contributes to immune exclusion and T cell dysfunction. Here, we engineer an armored CAR T cell platform that locally targets the extracellular matrix by secreting a TNC-specific single-chain variable fragment (TNC-scFv) linked to conventional CAR architecture. TNC-scFv-armored CAR T cells exhibit enhanced cytotoxic activity, improved persistence, and reduced exhaustion in vitro and in xenograft tumor models. Single-cell transcriptomic analysis reveals that TNC targeting reprograms the TME toward a CD8+ T cell-enriched and functionally active immune landscape. In humanized tumor models, TNC-scFv-armored CAR T cells mediate robust antitumor responses with minimal systemic toxicity. This extracellular matrix-targeted armoring framework is compatible with additional immunomodulatory payloads, as illustrated by combinatorial armoring with interleukin-2, which further enhances efficacy while mitigating cytokine-associated toxicity. Together, these results establish extracellular matrix-directed armoring as a generalizable strategy to improve CAR T cell therapy for solid tumors.
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