Microgravity-cultured glioblastoma organoids integrated with microfluidic chip for CAR-γδ T evaluation

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Abstract

Tumor organoids mimicking the tumor microenvironment (TME) are key tools for tumor immunity research and personalized cancer therapy development. We integrated microgravity culture with microfluidic chip technology (Micro-GRA& FLU) to establish a platform for evaluating chimeric antigen receptor (CAR)-γδ T cell efficacy under physiological-like conditions. Patient-derived glioblastoma (GBM) cells were microgravity-cultured into glioblastoma organoids (GBOs). Pathological analysis validated GBO similarity to matched GBM in immune cell phenotypes. Microfluidic chips assessed CAR-γδ T cell cytotoxicity against GBOs. The low-cost, easy-to-operate microgravity system generated viable, uniform GBOs that retained GBM TME features. CAR-γδ T cells showed strong cytotoxicity against GBOs in microfluidic chips; individualized combination therapy enhanced their antitumor activity vs. monotherapy. This study establishes a scalable, physiologically relevant Micro-GRA& FLU platform for evaluating CAR-γδ T cell therapies in GBM organoids.

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Zhu, G., Shi, X., Jiang, Y., Zhang, W., Guo, L., Pei, G., … Sun, Z. (2025). Microgravity-cultured glioblastoma organoids integrated with microfluidic chip for CAR-γδ T evaluation. Communications Biology, 8(1). https://doi.org/10.1038/s42003-025-09390-0

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