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Published on: January 12, 2020
NOTCH3 drives meningioma tumorigenesis and resistance to radiotherapy
Abrar Choudhury1,2,3,4, Martha A Cady1,2,3,5, Calixto-Hope G Lucas6,7
1Department of Radiation Oncology, University of California San Francisco, San Francisco, CA, USA.
Abstract:
Meningiomas are the most common primary intracranial tumors1-3. Treatments for patients with meningiomas are limited to surgery and radiotherapy, and systemic therapies remain ineffective or experimental4,5. Resistance to radiotherapy is common in high-grade meningiomas6, and the cell types and signaling mechanisms driving meningioma tumorigenesis or resistance to radiotherapy are incompletely understood. Here we report NOTCH3 drives meningioma tumorigenesis and resistance to radiotherapy and find NOTCH3+ meningioma mural cells are conserved across meningiomas from humans, dogs, and mice. NOTCH3+ cells are restricted to the perivascular niche during meningeal development and homeostasis and in low-grade meningiomas but are expressed throughout high-grade meningiomas that are resistant to radiotherapy. Integrating single-cell transcriptomics with lineage tracing and imaging approaches across mouse genetic and xenograft models, we show NOTCH3 drives tumor initiating capacity, cell proliferation, angiogenesis, and resistance to radiotherapy to increase meningioma growth and reduce survival. An antibody stabilizing the extracellular negative regulatory region of NOTCH37,8 blocks meningioma tumorigenesis and sensitizes meningiomas to radiotherapy, reducing tumor growth and improving survival in preclinical models. In summary, our results identify a conserved cell type and signaling mechanism that underlie meningioma tumorigenesis and resistance to radiotherapy, revealing a new therapeutic vulnerability to treat meningiomas that are resistant to standard interventions.
Insights
NOTCH3 drives meningioma growth and resistance to radiotherapy. Targeting NOTCH3 with an antibody offers a new therapeutic strategy for difficult-to-treat meningiomas.
Area of Science:
- Neuro-oncology
- Cellular signaling
- Tumorigenesis
Background:
- Meningiomas are the most common primary brain tumors, with limited treatment options beyond surgery and radiotherapy.
- High-grade meningiomas often exhibit resistance to radiotherapy, and the underlying cellular mechanisms are not fully understood.
Approach:
- Utilized single-cell transcriptomics, lineage tracing, and imaging in mouse models (genetic and xenograft).
- Investigated the role of NOTCH3 signaling in meningioma development and radiotherapy resistance.
Key Points:
- NOTCH3+ meningioma mural cells are conserved across species and are implicated in tumor initiation, proliferation, and angiogenesis.
- NOTCH3 expression is restricted in normal meninges and low-grade tumors but widespread in high-grade, radiotherapy-resistant meningiomas.
- An antibody targeting NOTCH3 blocked tumorigenesis and sensitized tumors to radiotherapy in preclinical models.
Conclusions:
- NOTCH3 is a key driver of meningioma tumorigenesis and radiotherapy resistance.
- NOTCH3+ mural cells represent a conserved cell type and therapeutic target in meningiomas.
- Targeting NOTCH3 presents a promising new strategy for treating aggressive and treatment-resistant meningiomas.
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