Glioma is an aggressive brain tumor with a poor prognosis. Establishing an in vitro culture model that closely replicates the cellular composition and microenvironment of the original tumor has been challenging, limiting its clinical applications. Here, we present a novel approach to generate glioma organoids with a microenvironment (GlioME) from patient-derived glioma tissue. These organoids maintain the genetic and epigenetic characteristics of the primary tumor and preserve cell-to-cell interactions within the tumor microenvironment, including resident immune cells. Bulk RNA sequencing, whole exome sequencing, and DNA methylation analysis were used to confirm the molecular similarities between the organoids and primary glioma tissues. Immunofluorescence and flow cytometry were used to assess immune cell viability, comparing GlioME with floating glioma organoids. GlioME exhibited high responsiveness to chemotherapy and targeted therapy, demonstrating its potential for therapeutic screening applications. Notably, GlioME accurately predicted patient response to the recently approved MET inhibitor, vebreltinib. Thus, this organoid model provides a reliable in vitro platform for glioma microenvironment-related research and clinical drug screening.
A novel organoid model retaining the glioma microenvironment for personalized drug screening and therapeutic evaluation.
一种保留胶质瘤微环境的新型类器官模型,可用于个性化药物筛选和治疗评估
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作者:Zheng Chengjun, Wang Peng, Zhang Delong, Fang Zheng, Feng Yutong, Chen Jie, Chen Jiahong, Fu Yiwen, Yang Bao, Yu Shuqing, Min Li, Xiao Bo, Xing Cencan, Yang Yang, Wang Jianfeng, Zou Donghua, Ning Shipeng, Liu Tong, Yan Jun, Zhao Qian, Sun Fei, Chen Qiaodong, Zhang Ying, Jiang Tao, Zheng Lemin, Bao Zhaoshi
| 期刊: | Bioactive Materials | 影响因子: | 20.300 |
| 时间: | 2025 | 起止号: | 2025 Jul 14; 53:205-217 |
| doi: | 10.1016/j.bioactmat.2025.07.015 | 研究方向: | 肿瘤 |
| 疾病类型: | 胶质瘤 | ||
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