生物
细胞
表型
间充质干细胞
旁分泌信号
癌症研究
单细胞分析
细胞疗法
细胞生物学
遗传学
基因
受体
作者
Lin Wang,Jangham Jung,Husam Babikir,Karin Shamardani,Saket Jain,Xi Feng,Nalin Gupta,Susanna Rosi,Susan Chang,David R. Raleigh,David A. Solomon,Joanna J. Phillips,Aarón Díaz
出处
期刊:Nature cancer
[Nature Portfolio]
日期:2022-12-20
卷期号:3 (12): 1534-1552
被引量:252
标识
DOI:10.1038/s43018-022-00475-x
摘要
Abstract Recent longitudinal studies of glioblastoma (GBM) have demonstrated a lack of apparent selection pressure for specific DNA mutations in recurrent disease. Single-cell lineage tracing has shown that GBM cells possess a high degree of plasticity. Together this suggests that phenotype switching, as opposed to genetic evolution, may be the escape mechanism that explains the failure of precision therapies to date. We profiled 86 primary-recurrent patient-matched paired GBM specimens with single-nucleus RNA, single-cell open-chromatin, DNA and spatial transcriptomic/proteomic assays. We found that recurrent GBMs are characterized by a shift to a mesenchymal phenotype. We show that the mesenchymal state is mediated by activator protein 1. Increased T-cell abundance at recurrence was prognostic and correlated with hypermutation status. We identified tumor-supportive networks of paracrine and autocrine signals between GBM cells, nonmalignant neuroglia and immune cells. We present cell-intrinsic and cell-extrinsic targets and a single-cell multiomics atlas of GBM under therapy.
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