Meningiomas are the most common primary intracranial tumors. Treatments for patients with meningiomas are limited to surgery and radiotherapy, and systemic therapies remain ineffective or experimental. Resistance to radiotherapy is common in high-grade meningiomas and the cell types and signaling mechanisms that drive meningioma tumorigenesis and resistance to radiotherapy are incompletely understood. Here, we report that NOTCH3 drives meningioma tumorigenesis and resistance to radiotherapy and find that perivascular NOTCH3+ stem cells are conserved across meningiomas from humans, dogs, and mice. Integrating single-cell transcriptomics with lineage tracing and imaging approaches in genetically engineered mouse models and xenografts, we show NOTCH3 drives tumor-initiating capacity, cell proliferation, angiogenesis, and resistance to radiotherapy to increase meningioma growth and reduce survival. To translate these findings to patients, we show that an antibody stabilizing the extracellular negative regulatory region of NOTCH3 blocks meningioma tumorigenesis and sensitizes meningiomas to radiotherapy, reducing tumor growth and improving survival. Significance: There are no effective systemic therapies to treat meningiomas, and meningioma stem cells are poorly understood. Here, we report perivascular NOTCH3+ stem cells to drive meningioma tumorigenesis and resistance to radiotherapy. Our results identify a conserved mechanism and a therapeutic vulnerability to treat meningiomas that are resistant to standard interventions.
Perivascular NOTCH3+ Stem Cells Drive Meningioma Tumorigenesis and Resistance to Radiotherapy.
血管周围 NOTCH3+ 干细胞驱动脑膜瘤的肿瘤发生和放射治疗耐药性
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作者:Choudhury Abrar, Cady Martha A, Lucas Calixto-Hope G, Najem Hinda, Phillips Joanna J, Palikuqi Brisa, Zakimi Naomi, Joseph Tara, Birrueta Janeth O, Chen William C, Oberheim Bush Nancy A, Hervey-Jumper Shawn L, Klein Ophir D, Toedebusch Christine M, Horbinski Craig M, Magill Stephen T, Bhaduri Aparna, Perry Arie, Dickinson Peter J, Heimberger Amy B, Ashworth Alan, Crouch Elizabeth E, Raleigh David R
| 期刊: | Cancer Discovery | 影响因子: | 33.300 |
| 时间: | 2024 | 起止号: | 2024 Oct 4; 14(10):1823-1837 |
| doi: | 10.1158/2159-8290.CD-23-1459 | 研究方向: | 发育与干细胞、细胞生物学、肿瘤 |
| 信号通路: | Notch | ||
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