Open Access
Numéro
Med Sci (Paris)
Volume 36, Numéro 5, Mai 2020
Page(s) 440 - 442
Section Le Magazine
DOI https://doi.org/10.1051/medsci/2020069
Publié en ligne 26 mai 2020
  1. MagnonC, HallSJ, LinJ, et al. Autonomic nerve development contributes to prostate cancer progression. Science 2013 ; 341 : 1236361. [Google Scholar]
  2. DobrenisK, GauthierL R, BarrocaV, MagnonC. Granulocyte colony-stimulating factor off-target effect on nerve outgrowth promotes prostate cancer development. Int J Cancer 2015 ; 136 : 982–988. [CrossRef] [PubMed] [Google Scholar]
  3. LeMagnon C.. système nerveux autonome : un nouveau composant du microenvironnement tumoral. Med Sci (Paris) 2013 ; 29 : 699–701. [CrossRef] [EDP Sciences] [PubMed] [Google Scholar]
  4. Zhao CM, Hayakawa Y, Kodama Y, et al. Denervation suppresses gastric tumorigenesis. Sci Transl Med 2014; 6 : 250ra115. [CrossRef] [PubMed] [Google Scholar]
  5. PundavelaJ, RoselliS, FaulknerS, et al. Nerve fibers infiltrate the tumor microenvironment and are associated with nerve growth factor production and lymph node invasion in breast cancer. Mol Oncol 2015 ; 9 : 1626–1635. [CrossRef] [PubMed] [Google Scholar]
  6. PetersonSC, EberlM, VagnozziAN, et al. Basal cell carcinoma preferentially arises from stem cells within hair follicle and mechanosensory niches. Cell Stem Cell 2015 ; 16 : 400–412. [Google Scholar]
  7. HayakawaY, SakitaniK, KonishiM, et al. Nerve growth factor promotes gastrictumorigenesis through aberrant cholinergic signaling. Cancer Cell 2017 ; 31 : 21–34. [CrossRef] [PubMed] [Google Scholar]
  8. StopczynskiRE, NormolleDP, HartmanDJ, et al. Neuroplastic changes occur early in the development of pancreatic ductal adenocarcinoma. Cancer Res 2014 ; 74 : 1718–1727. [Google Scholar]
  9. ShaoJX, WangB, YaoYN, et al. Autonomic nervous infiltration positively correlates with pathological risk grading and poor prognosis in patients with lung adenocarcinoma. Thorac Cancer 2016 ; 7 : 588–598. [CrossRef] [PubMed] [Google Scholar]
  10. VenkataramaniV, TanevDI, StrahleC, et al. Glutamatergic synaptic input to glioma cells drives brain tumour progression. Nature 2019 ; 573 : 532–538. [Google Scholar]
  11. ZengQ, MichaelIP, ZhangP, et al. Synaptic proximity enables NMDAR signalling to promote brain metastasis. Nature 2019 ; 573 : 526–531. [Google Scholar]
  12. VenkateshHS, MorishitaW, GeraghtyAC, et al. Electrical and synaptic integration of glioma into neural circuits. Nature 2019 ; 573 : 539–545. [Google Scholar]
  13. MauffreyP, TchitchekN, BarrocaV, et al. Progenitors from the central nervous system drive neurogenesis in cancer. Nature 2019 ; 569 : 672–678. [Google Scholar]
  14. MingGL, SongH. Adult neurogenesis in the mammalian brain: significant answers and significant questions. Neuron 2011 ; 70 : 687–702. [CrossRef] [PubMed] [Google Scholar]
  15. Engblom C, Pfirschke C, Zilionis R, et al. Osteoblasts remotely supply lung tumors with cancer-promoting SiglecFhigh neutrophils. Science 2017; 358 : doi:10.1126/science.aal5081. [Google Scholar]
  16. TakedaS, ElefteriouF, LevasseurR, et al. Leptin regulates bone formation via the sympathetic nervous system. Cell 2002 ; 111 : 305–317. [CrossRef] [PubMed] [Google Scholar]
  17. RheeSH, PothoulakisC, MayerEA. Principles and clinical implications of the brain-gut-enteric microbiota axis. Nat Rev Gastroenterol Hepatol 2009 ; 6 : 306–314. [CrossRef] [PubMed] [Google Scholar]
  18. ObradovicMMS, HamelinB, ManevskiN, et al. Glucocorticoids promote breast cancer metastasis. Nature 2019 ; 567 : 540–544. [Google Scholar]

Les statistiques affichées correspondent au cumul d'une part des vues des résumés de l'article et d'autre part des vues et téléchargements de l'article plein-texte (PDF, Full-HTML, ePub... selon les formats disponibles) sur la platefome Vision4Press.

Les statistiques sont disponibles avec un délai de 48 à 96 heures et sont mises à jour quotidiennement en semaine.

Le chargement des statistiques peut être long.