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Emerging intersections between neuroscience and glioma biology.

Erik JungJulieta AlfonsoMatthias OsswaldHannah MonyerWolfgang WickFrank Winkler
Published in: Nature neuroscience (2019)
The establishment of neuronal and glial networks in the brain depends on the activities of neural progenitors, which are influenced by cell-intrinsic mechanisms, interactions with the local microenvironment and long-range signaling. Progress in neuroscience has helped identify key factors in CNS development. In parallel, studies in recent years have increased our understanding of molecular and cellular factors in the development and growth of primary brain tumors. To thrive, glioma cells exploit pathways that are active in normal CNS progenitor cells, as well as in normal neurotransmitter signaling. Furthermore, tumor cells of incurable gliomas integrate into communicating multicellular networks, where they are interconnected through neurite-like cellular protrusions. In this Review, we discuss evidence that CNS development, organization and function share a number of common features with glioma progression and malignancy. These include mechanisms used by cells to proliferate and migrate, interact with their microenvironment and integrate into multicellular networks. The emerging intersections between the fields of neuroscience and neuro-oncology considered in this review point to new research directions and novel therapeutic opportunities.
Keyphrases
  • stem cells
  • blood brain barrier
  • induced apoptosis
  • single cell
  • cell therapy
  • high grade
  • cell proliferation
  • spinal cord injury
  • bone marrow
  • cerebral ischemia
  • spinal cord
  • cell cycle arrest
  • case control
  • pi k akt