Meningeal solitary fibrous tumor cell states phenocopy cerebral vascular development and homeostasis.

IF 16.4 1区 医学 Q1 CLINICAL NEUROLOGY Neuro-oncology Pub Date : 2024-08-29 DOI:10.1093/neuonc/noae172
Kanish Mirchia, Abrar Choudhury, Tara Joseph, Janeth Ochoa Birrueta, Joanna J Phillips, Aparna Bhaduri, Elizabeth E Crouch, Arie Perry, David R Raleigh
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Abstract

Background: Meningeal solitary fibrous tumors (SFTs) are rare mesenchymal neoplasms that are associated with local recurrence and hematogenous metastasis. The cell states and spatial transcriptomic architecture underlying the unique clinical behavior of meningeal SFTs are unknown.

Methods: Single-cell (n=4), spatial (n=8), and bulk RNA sequencing (n=22) was used to define the cell states and spatial transcriptomic architecture of meningeal SFTs across histological grades and in patient-matched pairs of primary/recurrent or intracranial/metastatic samples. Immunofluorescence, immunohistochemistry, and comparison of single-cell types to meningiomas, or to cerebral vascular development or homeostasis, were used for validation.

Results: Here we show meningeal SFTs are comprised of regionally distinct gene expression programs that resemble cerebral vascular development or homeostasis. Single-cell trajectory analysis and pseudotemporal ordering of single-cells suggest that meningeal SFT cell fate decisions are dynamic and interchangeable. Cell-cell communication analyses demonstrate receptor-ligand interactions throughout the meningeal SFT microenvironment, particularly between SFT cells, endothelia, and immature neurons. Direct comparison of single-cell transcriptomes from meningeal SFTs versus meningiomas shows that SFT cells are enriched in expression of endothelial markers while meningiomas cells are enriched in expression of mural cells markers. Meningeal SFT spatial transcriptomes show regionally distinct intratumor heterogeneity in cell states, gene expression programs, and cell-cell interactions across WHO histological grades and in patient-matched pairs of primary/recurrent or intracranial/metastatic samples.

Conclusions: These results shed light on pathways underlying meningeal SFT biology in comparison to other central nervous system tumors and provide a framework for integrating single-cell, spatial, and bulk RNA sequencing data across human cancers and normal tissues.

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脑膜单发纤维瘤细胞状态表征了脑血管的发育和平衡。
背景:脑膜单发纤维性肿瘤(SFTs)是一种罕见的间叶肿瘤,与局部复发和血行转移有关。脑膜单发纤维瘤独特临床表现的细胞状态和空间转录组结构尚不清楚:方法:采用单细胞测序(4 个)、空间测序(8 个)和大容量 RNA 测序(22 个)来确定不同组织学分级的脑膜 SFTs 的细胞状态和空间转录组结构,以及患者匹配的原发/复发或颅内/转移样本对的细胞状态和空间转录组结构。免疫荧光、免疫组织化学以及单细胞类型与脑膜瘤、脑血管发育或稳态的比较均用于验证:结果:我们在此发现脑膜SFT由区域性不同的基因表达程序组成,与脑血管发育或稳态相似。单细胞轨迹分析和单细胞伪时序排列表明,脑膜 SFT 细胞命运决定是动态和可互换的。细胞-细胞通讯分析表明了整个脑膜SFT微环境中的受体-配体相互作用,特别是SFT细胞、内皮细胞和未成熟神经元之间的相互作用。脑膜 SFT 与脑膜瘤单细胞转录组的直接比较显示,SFT 细胞富于表达内皮标志物,而脑膜瘤细胞富于表达壁细胞标志物。脑膜SFT空间转录组显示,在不同的WHO组织学分级以及原发性/复发性或颅内/转移性样本的患者匹配对中,细胞状态、基因表达程序和细胞-细胞间相互作用具有区域性的肿瘤内异质性:与其他中枢神经系统肿瘤相比,这些结果揭示了脑膜SFT生物学的基本途径,并为整合人类癌症和正常组织的单细胞、空间和大容量RNA测序数据提供了一个框架。
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来源期刊
Neuro-oncology
Neuro-oncology 医学-临床神经学
CiteScore
27.20
自引率
6.30%
发文量
1434
审稿时长
3-8 weeks
期刊介绍: Neuro-Oncology, the official journal of the Society for Neuro-Oncology, has been published monthly since January 2010. Affiliated with the Japan Society for Neuro-Oncology and the European Association of Neuro-Oncology, it is a global leader in the field. The journal is committed to swiftly disseminating high-quality information across all areas of neuro-oncology. It features peer-reviewed articles, reviews, symposia on various topics, abstracts from annual meetings, and updates from neuro-oncology societies worldwide.
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