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A CAR-T Tonic Signaling Code Predicts Anti-Tumor Efficacy in Diffuse Midline Glioma

Bing Deng, Xiaowen Zhong, Dazhuan Xin, Xiao Huang, Upendra K Soni, Wenkun Ma, Mingjun Cai, Po-Yu Liang, Jun Bai, Qian Qin, Shreya Mishra, Ming Hu, Arman E Bayat, Zaili Luo, Jiajie Diao, Mei Xin, Natasha Pillay-Smiley, Trent R Hummel, Charles B Stevenson, Jessica B Foster, Peter de Blank, Scott Raskin, Carl Koschmann, Jose A Cancelas, Yi Zheng, Q Richard Lu

Neuro-Oncology · 2026

Vollständiger Abstract

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Abstract Background Diffuse middle glioma (DMG or DIPG) is a fatal pediatric brain tumor. Although chimeric antigen receptor (CAR) T-cell therapy shows promise, clinical outcomes remain inconsistent due to premature exhaustion, underscoring a critical need to improve CAR-T persistence. A major barrier to CAR-T efficacy is antigen-independent tonic signaling, yet the extent to which tonic signaling shapes CAR-T durability and clinical outcomes, particularly in DMG, remains incompletely defined. Methods Using a clinically investigated B7-H3 MGA271-based CAR as a reference platform, we generated alternative B7-H3 CARs incorporating either a human codon-optimized 376.96 (B7H3.BC) or Hu8H9 scFv antigen binding domain to systematically assess scFv-dependent effects on tonic signaling and therapeutic efficacy. CAR-T cells were evaluated using integrated in vitro and in vivo functional assays, alongside multi-omics profiling and computational modeling. We further derived a tonic signaling–associated gene signature and evaluated its predictive performance across independent clinical datasets. Results B7H3.BC CAR-T cells exhibit markedly restrained tonic signaling compared with MGA271- and Hu8H9-based counterparts, accompanied by superior antitumor activity and enhanced persistence across patient-derived DMG cells. Integrated multi-omics and single-cell profiling further identified a tonic signaling–associated gene signature that outperforms conventional T-cell exhaustion signatures in predicting therapeutic efficacy across multiple clinical trials, including DMG and other tumors. Conclusions Our findings establish that scFv-dependent modulation of tonic signaling critically governs CAR-T persistence and antitumor efficacy in DMG. By linking CAR design to transcriptional and epigenetic programs, our study provides a principle-based and predictive framework to inform rational CAR engineering and improve therapeutic outcomes.

Bibliografischer Nachweis

Publikationsdaten

Autor:innen
Bing Deng, Xiaowen Zhong, Dazhuan Xin, Xiao Huang, Upendra K Soni, Wenkun Ma, Mingjun Cai, Po-Yu Liang, Jun Bai, Qian Qin, Shreya Mishra, Ming Hu, Arman E Bayat, Zaili Luo, Jiajie Diao, Mei Xin, Natasha Pillay-Smiley, Trent R Hummel, Charles B Stevenson, Jessica B Foster, Peter de Blank, Scott Raskin, Carl Koschmann, Jose A Cancelas, Yi Zheng, Q Richard Lu
Quelle
Neuro-Oncology
Publikation
2026-01-01
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ISSN / ISBN
1522-8517, 1523-5866
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Bing Deng, Xiaowen Zhong, Dazhuan Xin, Xiao Huang, Upendra K Soni, Wenkun Ma, Mingjun Cai, Po-Yu Liang, Jun Bai, Qian Qin, Shreya Mishra, Ming Hu, Arman E Bayat, Zaili Luo, Jiajie Diao, Mei Xin, Natasha Pillay-Smiley, Trent R Hummel, Charles B Stevenson, Jessica B Foster, Peter de Blank, Scott Raskin, Carl Koschmann, Jose A Cancelas, Yi Zheng, Q Richard Lu (2026). A CAR-T Tonic Signaling Code Predicts Anti-Tumor Efficacy in Diffuse Midline Glioma. Neuro-Oncology. https://doi.org/10.1093/neuonc/noag205
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