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    Título
    Connexin43 peptide, TAT-Cx43266–283, selectively targets glioma cells, impairs malignant growth, and enhances survival in mouse models in vivo
    Autor(es)
    Tabernero Urbieta, María AránzazuUSAL authority
    Naus, Christian C
    Medina Jiménez, José MaríaUSAL authority ORCID
    Bechberger, John
    Sin, Wun Chey
    Flores-Hernández, Raquel
    Álvarez Vázquez, AndreaUSAL authority ORCID
    Domínguez Prieto, Marta
    Gutiérrez Pelaz, SaraUSAL authority ORCID
    García Vicente, LauraUSAL authority ORCID
    Talaverón Aguilocho, RocíoUSAL authority ORCID
    Jaraíz-Rodríguez, Myriam
    Palabras clave
    cell-penetrating peptides
    connexin
    glioma
    Src
    Clasificación UNESCO
    6310.03 Enfermedad
    Fecha de publicación
    2020-04-15
    Resumen
    Background. Malignant gliomas are the most frequent primary brain tumors and remain among the most incur- able cancers. Although the role of the gap junction protein, connexin43 (Cx43), has been deeply investigated in malignant gliomas, no compounds have been reported with the ability to recapitulate the tumor suppressor prop- erties of this protein in in vivo glioma models. Methods. TAT-Cx43266–283 a cell-penetrating peptide which mimics the effect of Cx43 on c-Src inhibition, was studied in orthotopic immunocompetent and immunosuppressed models of glioma. The effects of this peptide in brain cells were also analyzed. Results. While glioma stem cell malignant features were strongly affected byTAT-Cx43266–283, these properties were not significantly modified in neurons and astrocytes. Intraperitoneally administeredTAT-Cx43266–283 decreased the invasion of intracranial tumors generated by GL261 mouse glioma cells in immunocompetent mice. When human glioma stem cells were intracranially injected with TAT-Cx43266–283 into immunodeficient mice, there was reduced expression of the stemness markers nestin and Sox2 in human glioma cells at 7 days post-implantation. Consistent with the role of Sox2 as a transcription factor required for tumorigenicity,TAT-Cx43266–283 reduced the number and stemness of human glioma cells at 30 days post-implantation. Furthermore,TAT-Cx43266–283 enhanced the survival of immunocompetent mice bearing gliomas derived from murine glioma stem cells. Conclusion. TAT-Cx43266–283 reduces the growth, invasion, and progression of malignant gliomas and enhances the survival of glioma-bearing mice without exerting toxicity in endogenous brain cells, which suggests that this pep- tide could be considered as a new clinical therapy for high-grade gliomas.
    URI
    https://hdl.handle.net/10366/154676
    ISSN
    1522-8517
    DOI
    10.1093/neuonc/noz243
    Versión del editor
    https://doi.org/10.1093/neuonc/noz243
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    • INCyL. Unidad de Excelencia iBRAINS-IN-CyL [141]
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