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JCI Insight ; 9(12)2024 May 23.
Article de Anglais | MEDLINE | ID: mdl-38805346

RÉSUMÉ

Tumor evolution is driven by genetic variation; however, it is the tumor microenvironment (TME) that provides the selective pressure contributing to evolution in cancer. Despite high histopathological heterogeneity within glioblastoma (GBM), the most aggressive brain tumor, the interactions between the genetically distinct GBM cells and the surrounding TME are not fully understood. To address this, we analyzed matched primary and recurrent GBM archival tumor tissues with imaging-based techniques aimed to simultaneously evaluate tumor tissues for the presence of hypoxic, angiogenic, and inflammatory niches, extracellular matrix (ECM) organization, TERT promoter mutational status, and several oncogenic amplifications on the same slide and location. We found that the relationships between genetic and TME diversity are different in primary and matched recurrent tumors. Interestingly, the texture of the ECM, identified by label-free reflectance imaging, was predictive of single-cell genetic traits present in the tissue. Moreover, reflectance of ECM revealed structured organization of the perivascular niche in recurrent GBM, enriched in immunosuppressive macrophages. Single-cell spatial transcriptomics further confirmed the presence of the niche-specific macrophage populations and identified interactions between endothelial cells, perivascular fibroblasts, and immunosuppressive macrophages. Our results underscore the importance of GBM tissue organization in tumor evolution and highlight genetic and spatial dependencies.


Sujet(s)
Tumeurs du cerveau , Matrice extracellulaire , Glioblastome , Récidive tumorale locale , Microenvironnement tumoral , Glioblastome/génétique , Glioblastome/anatomopathologie , Glioblastome/imagerie diagnostique , Humains , Microenvironnement tumoral/génétique , Tumeurs du cerveau/génétique , Tumeurs du cerveau/anatomopathologie , Tumeurs du cerveau/imagerie diagnostique , Récidive tumorale locale/génétique , Récidive tumorale locale/anatomopathologie , Matrice extracellulaire/anatomopathologie , Matrice extracellulaire/métabolisme , Matrice extracellulaire/génétique , Analyse spatiale , Mâle , Macrophages/anatomopathologie , Femelle , Telomerase/génétique , Analyse sur cellule unique , Mutation , Adulte d'âge moyen
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