EGFR amplification and EGFRvIII predict and participate in TAT-Cx43266–283 antitumor response in preclinical glioblastoma models

[EN] Background Glioblastoma (GBM) commonly displays epidermal growth factor receptor (EGFR) alterations (mainly amplification and EGFRvIII) and TAT-Cx43266–283 is a Src-inhibitory peptide with antitumor properties in preclinical GBM models. Given the link between EGFR and Src, the aim of this study...

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Detalhes bibliográficos
Autores: Álvarez Vázquez, Andrea, San Segundo, Laura, Cerveró García, Pilar, Flores Hernández, Raquel, Ollauri Ibáñez, Claudia, Segura Collar, Berta, Hubert, Christopher G., Morrison, Gillian, Pollard, Steven M., Lathia, Justin D., Sánchez Gómez, Pilar, Tabernero Urbieta, María Aránzazu
Formato: artículo
Estado:Versión publicada
Fecha de publicación:2024
País:España
Recursos:Universidad de Salamanca (USAL)
Repositorio:GREDOS. Repositorio Institucional de la Universidad de Salamanca
OAI Identifier:oai:gredos.usal.es:10366/167631
Acesso em linha:http://hdl.handle.net/10366/167631
Access Level:acceso abierto
Palavra-chave:Cell-penetrating peptides
EGFR
Glioblastoma
NSCs
Src
3201.01 Oncología
3207.13 Oncología
2490.01 Neurofisiología
Descrição
Resumo:[EN] Background Glioblastoma (GBM) commonly displays epidermal growth factor receptor (EGFR) alterations (mainly amplification and EGFRvIII) and TAT-Cx43266–283 is a Src-inhibitory peptide with antitumor properties in preclinical GBM models. Given the link between EGFR and Src, the aim of this study was to explore the role of EGFR in the antitumor effects of TAT-Cx43266–283. Methods The effect of TAT-Cx43266–283, temozolomide (TMZ), and erlotinib (EGFR inhibitor) was studied in patient-derived GBM stem cells (GSCs) and murine neural stem cells (NSCs) with and without EGFR alterations, in vitro and in vivo. EGFR alterations were analyzed by western blot and fluorescence in situ hybridization in these cells, and compared with Src activity and survival in GBM samples from The Cancer Genome Atlas. Results The effect of TAT-Cx43266–283 correlated with EGFR alterations in a set of patient-derived GSCs and was stronger than that exerted by TMZ and erlotinib. In fact, TAT-Cx43266-283 only affected NSCs with EGFR alterations, but not healthy NSCs. EGFR alterations correlated with Src activity and poor survival in GBM patients. Finally, tumors generated from NSCs with EGFR alterations showed a decrease in growth, invasiveness, and vascularization after treatment with TAT-Cx43266–283, which enhanced the survival of immunocompetent mice. Conclusions Clinically relevant EGFR alterations are predictors of TAT-Cx43266–283 response and part of its mechanism of action, even in TMZ- and erlotinib-resistant GSCs. TAT-Cx43266–283 targets NSCs with GBM-driver mutations, including EGFR alterations, in an immunocompetent GBM model in vivo, suggesting a promising effect on GBM recurrence. Together, this study represents an important step toward the clinical application of TAT-Cx43266–283.