Open Access
Issue
Med Sci (Paris)
Volume 39, Number 2, Février 2023
Page(s) 105 - 107
Section Nouvelles
DOI https://doi.org/10.1051/medsci/2023002
Published online 17 February 2023
  1. Maghe C, Jacobs KA, Bidère N, et al. Glioblastome multiforme. Les fleurs du MALT1. Med Sci (Paris) 2020; 36 : 452–4. [Google Scholar]
  2. Boulanger CM, Raposo G, Théry C. Vésicules extracellulaires : comment passer en quelques décennies d’un statut de débris cellulaires, ou pire, de sacs poubelle, à celui de messagers intercellulaires. Med Sci (Paris) 2021; 37 : 1089–91. [Google Scholar]
  3. André-Grégoire G, Gavard J. Spitting out the demons: Extracellular vesicles in glioblastoma. Cell Adhes Migr 2017 ; 11 : 164–172. [CrossRef] [PubMed] [Google Scholar]
  4. Treps L, Edmond S, Harford-Wright E, et al. Extracellular vesicle-transported Semaphorin3A promotes vascular permeability in glioblastoma. Oncogene 2016 ; 35 : 2615–2623. [Google Scholar]
  5. Treps L, Perret R, Edmond S, et al. Glioblastoma stem-like cells secrete the pro-angiogenic VEGF-A factor in extracellular vesicles. J. Extracell. Vesicles 2017 ; 6 : 1359479. [CrossRef] [Google Scholar]
  6. André-Grégoire G, Bidère N, Gavard J. Temozolomide affects Extracellular Vesicles Released by Glioblastoma Cells. Biochimie 2018 ; 155 : 11–15. [CrossRef] [PubMed] [Google Scholar]
  7. Quezada C, Torres Á, Niechi I, et al. Role of extracellular vesicles in glioma progression. Mol Aspects Med 2018 ; 60 : 38–51. [Google Scholar]
  8. Skog J, Würdinger T, van Rijn S, et al. Glioblastoma microvesicles transport RNA and proteins that promote tumour growth and provide diagnostic biomarkers. Nat Cell Biol 2008 ; 10 : 1470–1476. [Google Scholar]
  9. Sabbagh Q, André-Grégoire G, Alves-Nicolau C, et al. The von Willebrand factor stamps plasmatic extracellular vesicles from glioblastoma patients. Sci Rep 2021; 11 : 22792. [Google Scholar]
  10. Sun L, Wang H, Wang Z, et al. Mixed lineage kinase domain-like protein mediates necrosis signaling downstream of RIP3 kinase. Cell 2012 ; 148 : 213–227. [CrossRef] [PubMed] [Google Scholar]
  11. Dai J, Zhang C, Guo L, et al. A necroptotic-independent function of MLKL in regulating endothelial cell adhesion molecule expression. Cell Death Dis 2020; 11 : 282. [CrossRef] [PubMed] [Google Scholar]
  12. Ying Z, Pan C, Shao T, et al. Mixed Lineage Kinase Domain-like Protein MLKL Breaks Down Myelin following Nerve Injury. Mol Cell 2018 ; 72 : 457–68.e5. [Google Scholar]
  13. Yoon S, Kovalenko A, Bogdanov K, et al. MLKL, the Protein that Mediates Necroptosis, Also Regulates Endosomal Trafficking and Extracellular Vesicle Generation. Immunity 2017 ; 47 : 51–65.e7. [CrossRef] [PubMed] [Google Scholar]
  14. André-Grégoire G, Maghe C, Douanne T, et al. Inhibition of the pseudokinase MLKL alters extracellular vesicle release and reduces tumor growth in glioblastoma. iScience 2022; 25 : 105118. [CrossRef] [PubMed] [Google Scholar]

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