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Adv Sci (Weinh) ; 10(15): e2205525, 2023 05.
Article in English | MEDLINE | ID: mdl-36994665

ABSTRACT

High-grade meningioma has an unsatisfactory outcome despite surgery and postoperative radiotherapy; however, the factors driving its malignancy and recurrence remain largely unknown, which limits the development of systemic treatments. Single-cell RNA sequencing (scRNA-Seq) technology is a powerful tool for studying intratumoral cellular heterogeneity and revealing the roles of various cell types in oncogenesis. In this study, scRNA-Seq is used to identify a unique initiating cell subpopulation (SULT1E1+ ) in high-grade meningiomas. This subpopulation modulates the polarization of M2-type macrophages and promotes meningioma progression and recurrence. A novel patient-derived meningioma organoid (MO) model is established to characterize this unique subpopulation. The resulting MOs fully retain the aggressiveness of SULT1E1+ and exhibit invasiveness in the brain after orthotopic transplantation. By targeting SULT1E1+ in MOs, the synthetic compound SRT1720 is identified as a potential agent for systemic treatment and radiation sensitization. These findings shed light on the mechanism underlying the malignancy of high-grade meningiomas and provide a novel therapeutic target for refractory high-grade meningioma.


Subject(s)
Meningeal Neoplasms , Meningioma , Humans , Meningioma/genetics , Meningioma/metabolism , Meningioma/pathology , Meningeal Neoplasms/genetics , Meningeal Neoplasms/metabolism , Meningeal Neoplasms/pathology , Single-Cell Gene Expression Analysis , Carcinogenesis , Organoids/metabolism
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