Department of Neurosurgery, Mayo Clinic, Jacksonville, Florida.
Brain Tumor Stem Cell Laboratory, Mayo Clinic, Jacksonville, Florida.
Mol Cancer Ther. 2021 Dec;20(12):2585-2597. doi: 10.1158/1535-7163.MCT-20-0547. Epub 2021 Aug 31.
Glioblastoma (GBM) is the most common primary brain cancer in adults where tumor cell heterogeneity and sex differences influence clinical outcomes. Here, we functionally characterize three male and three female patient-derived GBM cell lines, identify protumorigenic BTICs, and create novel male and female preclinical models of GBM. Cell lines were evaluated on the following features: proliferation, stemness, migration, tumorigenesis, clinical characteristics, and sensitivity to radiation, TMZ, rh (rhTRAIL), and rh All cell lines were classified as GBM according to epigenetic subtyping, were heterogenous and functionally distinct from one another, and re-capitulated features of the original patient tumor. In establishing male and female preclinical models, it was found that two male-derived GBM cell lines (QNS108 and QNS120) and one female-derived GBM cell line (QNS315) grew at a faster rate in female mice brains. One male-derived GBM cell line (QNS108) decreased survival in female mice in comparison with male mice. However, no survival differences were observed for mice injected with a female-derived cell line (QNS315). In summary, a panel of six GBM patient-derived cell lines were functionally characterized, and it was shown that BTIC lines can be used to construct sex-specific models with differential phenotypes for additional studies.
胶质母细胞瘤(GBM)是成人中最常见的原发性脑癌,肿瘤细胞异质性和性别差异影响临床结果。在这里,我们对三个男性和三个女性患者来源的 GBM 细胞系进行了功能表征,鉴定了促肿瘤发生的 BTIC,并创建了新的男性和女性 GBM 临床前模型。细胞系在以下特征方面进行了评估:增殖、干性、迁移、致瘤性、临床特征以及对辐射、TMZ、rh(rhTRAIL)和 rh 的敏感性。所有细胞系根据表观遗传亚型分类为 GBM,具有异质性,彼此之间功能不同,并再现了原始患者肿瘤的特征。在建立男性和女性临床前模型时,发现两个男性来源的 GBM 细胞系(QNS108 和 QNS120)和一个女性来源的 GBM 细胞系(QNS315)在雌性小鼠大脑中生长速度更快。与雄性小鼠相比,一个男性来源的 GBM 细胞系(QNS108)降低了雌性小鼠的存活率。然而,注射女性来源的细胞系(QNS315)的小鼠没有观察到存活率差异。总之,我们对一组六个 GBM 患者来源的细胞系进行了功能表征,表明 BTIC 系可用于构建具有不同表型的性别特异性模型,以进行进一步研究。