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胶质母细胞瘤神经血管祖细胞调控肿瘤细胞类型多样性。

Glioblastoma Neurovascular Progenitor Orchestrates Tumor Cell Type Diversity.

作者信息

Fazzari Elisa, Azizad Daria J, Yu Kwanha, Ge Weihong, Li Matthew X, Nano Patricia R, Kan Ryan L, Tum Hong A, Tse Christopher, Bayley Nicholas A, Haka Vjola, Cadet Dimitri, Perryman Travis, Soto Jose A, Wick Brittney, Raleigh David R, Crouch Elizabeth E, Patel Kunal S, Liau Linda M, Deneen Benjamin, Nathanson David A, Bhaduri Aparna

机构信息

Department of Biological Chemistry, David Geffen School of Medicine, University of California, Los Angeles, California, Los Angeles, CA, USA.

Center for Cell and Gene Therapy, Baylor College of Medicine, Houston, TX, USA.

出版信息

bioRxiv. 2024 Jul 24:2024.07.24.604840. doi: 10.1101/2024.07.24.604840.

Abstract

Glioblastoma (GBM) is the deadliest form of primary brain tumor with limited treatment options. Recent studies have profiled GBM tumor heterogeneity, revealing numerous axes of variation that explain the molecular and spatial features of the tumor. Here, we seek to bridge descriptive characterization of GBM cell type heterogeneity with the functional role of individual populations within the tumor. Our lens leverages a gene program-centric meta-atlas of published transcriptomic studies to identify commonalities between diverse tumors and cell types in order to decipher the mechanisms that drive them. This approach led to the discovery of a tumor-derived stem cell population with mixed vascular and neural stem cell features, termed a neurovascular progenitor (NVP). Following validation and molecular characterization of NVP cells in GBM patient samples, we characterized their function Genetic depletion of NVP cells resulted in altered tumor cell composition, fewer cycling cells, and extended survival, underscoring their critical functional role. Clonal analysis of primary patient tumors in a human organoid tumor transplantation system demonstrated that the NVP has dual potency, generating both neuronal and vascular tumor cells. Although NVP cells comprise a small fraction of the tumor, these clonal analyses demonstrated that they strongly contribute to the total number of cycling cells in the tumor and generate a defined subset of the whole tumor. This study represents a paradigm by which cell type-specific interrogation of tumor populations can be used to study functional heterogeneity and therapeutically targetable vulnerabilities of GBM.

摘要

胶质母细胞瘤(GBM)是最致命的原发性脑肿瘤形式,治疗选择有限。最近的研究对GBM肿瘤异质性进行了剖析,揭示了众多变异轴,这些变异轴解释了肿瘤的分子和空间特征。在此,我们试图将GBM细胞类型异质性的描述性特征与肿瘤内单个细胞群的功能作用联系起来。我们的视角利用已发表的转录组学研究中以基因程序为中心的元图谱,来识别不同肿瘤和细胞类型之间的共性,以便破译驱动它们的机制。这种方法导致发现了一种具有混合血管和神经干细胞特征的肿瘤衍生干细胞群,称为神经血管祖细胞(NVP)。在对GBM患者样本中的NVP细胞进行验证和分子表征后,我们对其功能进行了表征。NVP细胞的基因缺失导致肿瘤细胞组成改变、增殖细胞减少以及生存期延长,突显了它们的关键功能作用。在人器官oid肿瘤移植系统中对原发性患者肿瘤进行的克隆分析表明,NVP具有双重潜能,可产生神经元和血管肿瘤细胞。尽管NVP细胞在肿瘤中只占一小部分,但这些克隆分析表明,它们对肿瘤中增殖细胞的总数有很大贡献,并产生整个肿瘤的一个特定子集。这项研究代表了一种范式,通过这种范式,对肿瘤细胞群进行细胞类型特异性询问可用于研究GBM的功能异质性和可治疗的脆弱性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f2e/11291138/f493b03826ed/nihpp-2024.07.24.604840v1-f0001.jpg

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