Literature DB >> 28683327

Exosomes Mediate Mobilization of Autocrine Wnt10b to Promote Axonal Regeneration in the Injured CNS.

Nardos G Tassew1, Jason Charish2, Alireza P Shabanzadeh1, Valbona Luga3, Hidekiyo Harada1, Nahal Farhani1, Philippe D'Onofrio4, Brian Choi4, Ahmad Ellabban1, Philip E B Nickerson1, Valerie A Wallace5, Paulo D Koeberle4, Jeffrey L Wrana3, Philippe P Monnier6.   

Abstract

Developing strategies that promote axonal regeneration within the injured CNS is a major therapeutic challenge, as axonal outgrowth is potently inhibited by myelin and the glial scar. Although regeneration can be achieved using the genetic deletion of PTEN, a negative regulator of the mTOR pathway, this requires inactivation prior to nerve injury, thus precluding therapeutic application. Here, we show that, remarkably, fibroblast-derived exosomes (FD exosomes) enable neurite growth on CNS inhibitory proteins. Moreover, we demonstrate that, upon treatment with FD exosomes, Wnt10b is recruited toward lipid rafts and activates mTOR via GSK3β and TSC2. Application of FD exosomes shortly after optic nerve injury promoted robust axonal regeneration, which was strongly reduced in Wnt10b-deleted animals. This work uncovers an intercellular signaling pathway whereby FD exosomes mobilize an autocrine Wnt10b-mTOR pathway, thereby awakening the intrinsic capacity of neurons for regeneration, an important step toward healing the injured CNS.
Copyright © 2017 The Authors. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Wnt10b; axonal regeneration; exosomes; lipid rafts; mTOR; optic nerve injury

Mesh:

Substances:

Year:  2017        PMID: 28683327     DOI: 10.1016/j.celrep.2017.06.009

Source DB:  PubMed          Journal:  Cell Rep            Impact factor:   9.423


  37 in total

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Review 6.  What neurons tell themselves: autocrine signals play essential roles in neuronal development and function.

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Review 7.  Extracellular vesicle therapy for retinal diseases.

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Review 8.  Exosomes as a Promising Therapeutic Strategy for Peripheral Nerve Injury.

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