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PI3K mediated electrotaxis of embryonic and adult neural progenitor cells in the presence of growth factors.

Xiaoting Meng | Miguel Arocena | Josef Penninger | Fred H Gage | Min Zhao | Bing Song
Experimental neurology | 2011

Correct guidance of the migration of neural progenitor cells (NPCs) is essential for the development and repair of the central nervous system (CNS). Electric field (EF)-guided migration, electrotaxis, has been observed in many cell types. We report here that, in applied EFs of physiological magnitude, embryonic and adult NPCs show marked electrotaxis, which is dependent on the PI3K/Akt pathway. The electrotaxis was also evidenced by ex vivo investigation that transplanted NPCs migrated directionally towards cathode in organotypic spinal cord slice model when treated with EFs. Genetic disruption or pharmacological inhibition of phosphoinositide 3-kinase (PI3K) impaired electrotaxis, whereas EF exposure increased Akt phosphorylation in a growth factor-dependent manner and increased phosphatidylinositol-3,4,5-trisphosphate (PIP3) levels. EF treatments also induced asymmetric redistribution of PIP3, growth factor receptors, and actin cytoskeleton. Electrotaxis in both embryonic and adult NPCs requires epidermal growth factor (EGF) and fibroblast growth factor (FGF). Our results demonstrate the importance of the PI3K/Akt pathway in directed migration of NPCs driven by EFs and growth factors and highlight the potential of EFs to enhance the guidance of various NPC populations in CNS repair therapies.

Pubmed ID: 21092738

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Associated grants

  • Agency: Wellcome Trust, United Kingdom
    Id: 082887
  • Agency: NEI NIH HHS, United States
    Id: R01 EY019101
  • Agency: NEI NIH HHS, United States
    Id: R01EY019101
  • Agency: Wellcome Trust, United Kingdom
  • Agency: European Research Council, International
    Id: 243261

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MetaMorph Microscopy Automation and Image Analysis Software (tool)

RRID:SCR_002368

Software tool for automated microscope acquisition, device control, and image analysis. Used for integrating dissimilar fluorescent microscope hardware and peripherals into a single custom workstation, while providing all the tools needed to perform analysis of acquired images. Offers user friendly application modules for analysis such as cell signaling, cell counting, and protein expression.

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