ArticleNeuro-oncology2025
Establishing a living biobank of pediatric high-grade glioma and ependymoma suitable for cancer pharmacology.
Article in Neuro-oncology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed.
- A patient-derived organoid platform for predominantly posterior fossa adult ependymoma: histopathologic preservation, culture-associated transcriptomic remodeling, and in vivo tumorigenicity.Journal of neuro-oncology · 2026Article
- Patient-derived organoids predict personalized drug response and reveal alternative therapeutic options in glioblastoma.Cell reports. Medicine · 2026Article
- Modelling brain tumours with organoids: towards precision medicine in neuro-oncology.Nature reviews. Neurology · 2026Review
- Patient-derived complex organoids are a critical tool to understand and explore pediatric malignant brain tumors.Cancer metastasis reviews · 2026Review
- De novo H3.3K27M-altered diffuse midline glioma in human brainstem organoids to dissect GD2 CAR T cell function.Nature cancer · 2026Article
- Dysregulation of human ClpP using small molecules with piperazine-based scaffold for diffuse intrinsic pontine glioma therapy validated by patient-derived tumor organoids.Research square · 2026Article
- Modeling gliomas with organoids: reconstructing the human neural microenvironment for translational neuro-oncology.Frontiers in oncology · 2026Review
- Organoids glimpse: the nexus for diverse tumor heterogeneity.Frontiers in cell and developmental biology · 2026Review
- Review
- The therapeutic potential of repurposed mebendazole, alone and in synergistic combination with ONC201, in the treatment of diffuse midline glioma.American journal of cancer research · 2025Article
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Authors and funding
35 authors.
Funding
Abstract
backgroundBrain tumors are the deadliest solid tumors in children and adolescents. Most of these tumors are glial in origin and exhibit strong heterogeneity, hampering the development of effective therapeutic strategies. In the past decades, patient-derived tumor organoids (PDT-O) have emerged as powerful tools for modeling tumoral cell diversity and dynamics, and they could then help define new therapeutic options for pediatric brain tumors.
methodsThrough an integrative approach based on our expertise and a careful review of the literature about glioblastoma 3D primary cultures, we set up a standardized methodological pipeline for the establishment, characterization, and biobanking of PDT-O through direct 3D in vitro culture of the deadliest pediatric glial brain tumors. To assess PDT-O fidelity and validate their preclinical relevance, we performed comprehensive histological, molecular, and drug-response analyses.
resultsOur methodological pipeline allowed the rapid and efficient generation of PDT-O recapitulating their parental tumor features, including intratumoral heterogeneity, even after several passages and cryopreservation/revival as 3D cultures. Moreover, we successfully performed preclinical test responses on these PDT-O to standard-of-care therapies and new therapeutic options. Finally, we identified ONC201 as a selective drug for pediatric glial tumor types not restricted to H3K27-altered glial tumors, as well as combination strategies to increase the therapeutic response to ONC201.
conclusionsHence, we describe a fast and robust process to biobank PDT-O for pediatric glial brain tumors. These PDT-O models have the potential for patient-specific modeling even after long-term expansion in vitro, and we established the proof-of-concept of their usefulness to support powerful preclinical studies.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.