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Publication : Subtype-specific regeneration of retinal ganglion cells following axotomy: effects of osteopontin and mTOR signaling.

First Author  Duan X Year  2015
Journal  Neuron Volume  85
Issue  6 Pages  1244-56
PubMed ID  25754821 Mgi Jnum  J:245845
Mgi Id  MGI:5920337 Doi  10.1016/j.neuron.2015.02.017
Citation  Duan X, et al. (2015) Subtype-specific regeneration of retinal ganglion cells following axotomy: effects of osteopontin and mTOR signaling. Neuron 85(6):1244-56
abstractText  In mammals, few retinal ganglion cells (RGCs) survive following axotomy, and even fewer regenerate axons. This could reflect differential extrinsic influences or the existence of subpopulations that vary in their responses to injury. We tested these alternatives by comparing responses of molecularly distinct subsets of mouse RGCs to axotomy. Survival rates varied dramatically among subtypes, with alpha-RGCs (alphaRGCs) surviving preferentially. Among survivors, alphaRGCs accounted for nearly all regeneration following downregulation of PTEN, which activates the mTOR pathway. alphaRGCs have uniquely high mTOR signaling levels among RGCs and also selectively express osteopontin (OPN) and receptors for the insulin-like growth factor 1 (IGF-1). Administration of OPN plus IGF-1 promotes regeneration as effectively as downregulation of PTEN; however, regeneration is still confined to alphaRGCs. Our results reveal dramatic subtype-specific differences in the ability of RGCs to survive and regenerate following injury, and they identify promising agents for promoting axonal regeneration.
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