胶质瘤
癌症研究
干细胞
生物
调解人
免疫系统
下调和上调
中枢神经系统
神经干细胞
小胶质细胞
基因沉默
体外
染色质
免疫学
胶质母细胞瘤
化学
U87型
脑瘤
表型
医学
间充质干细胞
神经科学
细胞周期
川地34
细胞生物学
神经系统
肿瘤微环境
移植
细胞
转染
胶质瘤
信号转导
作者
Yonglin He,Liang Niu,Chen Wang,Zhipeng Liao,Kai Liu,Shuo Gao,Antao Du,Weiguo Liu,Juan Jia,Yubo Zhang,Hang Yin,Guoqiang Yuan,Yawen Pan
标识
DOI:10.1523/jneurosci.1372-25.2025
摘要
Glioblastoma (GBM), the most aggressive tumor in the adult central nervous system, remains a major therapeutic challenge due to its high recurrence and resistance to conventional therapies. Recent evidence underscores the pivotal role of glioma stem cells (GSCs) in driving these malignant features. In this study, using intracranial xenograft models established in 4-week-old male BALB/c nude mice and patient-derived primary GSCs, we uncover a critical function of the chromatin assembly factor subunit Chaf1b in sustaining the stemness of GSCs and modulating the tumor immune microenvironment. We show that Chaf1b is markedly overexpressed in high-grade gliomas and GSC populations. Genetic silencing of Chaf1b led to a significant reduction in GSC self-renewal capacity and tumorigenicity, both in vitro and in intracranial xenograft models. Mechanistically, Chaf1b was found to upregulate IL-33 secretion, thereby promoting microglial M2 polarization and activating the PI3K/AKT signaling pathway-effects that were reversible upon IL-33 neutralization. These findings position Chaf1b as a key mediator of GBM aggressiveness and suggest it as a promising target for disrupting the stem-immune axis in GBM.
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