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Erschienen in: Child's Nervous System 3/2021

11.03.2020 | Focus Session

Pediatric low-grade gliomas: molecular characterization of patient-derived cellular models

verfasst von: Martina Chiacchiarini, Zein Mersini Besharat, Andrea Carai, Evelina Miele, Giada Del Baldo, Angela Mastronuzzi, Giuseppina Catanzaro, Elisabetta Ferretti

Erschienen in: Child's Nervous System | Ausgabe 3/2021

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Abstract

Purpose

Pediatric low-grade gliomas (pLGGs), the most frequent pediatric brain tumors, include different entities harboring distinct histological and molecular features. A major limitation in the development of treatments for these tumors is the absence of reliable in vitro models that would allow a better understanding of the molecular mechanisms that support their growth. Surgical excision is the primary treatment method and the extent of resection represents one of the strongest prognostic factors. pLGGs that cannot be completely resected are prone to recur and associated with relapses and extensive morbidities, thus remaining a major clinical challenge.

Methods

We established a protocol to successfully derive primary patient-derived pLGG cells and to fully characterize them from a molecular point of view.

Results

Primary patients-derived pLGG cells were extensively analyzed in order to confirm their reliability as cellular models. Specifically, we evaluated the growth rate, senescence, and molecular features, such as BRAF mutational status, methylation, and protein expression profile.

Conclusion

This study extensively describes pLGG primary cellular models in terms of isolation, culture method, and molecular characterization that can be used to investigate pLGG biology.
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Metadaten
Titel
Pediatric low-grade gliomas: molecular characterization of patient-derived cellular models
verfasst von
Martina Chiacchiarini
Zein Mersini Besharat
Andrea Carai
Evelina Miele
Giada Del Baldo
Angela Mastronuzzi
Giuseppina Catanzaro
Elisabetta Ferretti
Publikationsdatum
11.03.2020
Verlag
Springer Berlin Heidelberg
Erschienen in
Child's Nervous System / Ausgabe 3/2021
Print ISSN: 0256-7040
Elektronische ISSN: 1433-0350
DOI
https://doi.org/10.1007/s00381-020-04559-w

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