Axon regeneration in the injured adult CNS is reportedly inhibited by myelin-derived inhibitory molecules, after binding to a receptor complex comprised of the Nogo-66 receptor (NgR1) and two transmembrane co-receptors p75/TROY and LINGO-1. However, the post-injury expression pattern for LINGO-1 is inconsistent with its proposed function. We demonstrated that AMIGO3 levels were significantly higher acutely than those of LINGO-1 in dorsal column lesions and reduced in models of dorsal root ganglion neuron (DRGN) axon regeneration. Similarly, AMIGO3 levels were raised in the retina immediately after optic nerve crush, whilst levels were suppressed in regenerating optic nerves, induced by intravitreal peripheral nerve implantation. AMIGO3 inte...
AbstractMyelin inhibitors of axonal regeneration, like Nogo and MAG, block regrowth after injury to ...
PURPOSE. LINGO-1 is a functional member of the Nogo66 receptor (NgR1)/p75 and NgR1/TROY signaling co...
As neuronal development enters its final stages, axon growth becomes restricted. This lack of regene...
Axon regeneration in the injured adult CNS is reportedly inhibited by myelin-derived inhibitory mole...
The capacity for regeneration in the central nervous system is limited, with little functional recov...
Three myelin proteins bind to the neuronal Nogo66 receptor (NgR1) that mediates the inhibition of ax...
Adult mammalian central nervous system (CNS) axons have a limited regrowth capacity following injury...
Presentation no. 749.5Transection of the optic nerve results in the death of retinal ganglion cells ...
Adult mammalian central nervous system (CNS) axons have very limited capacity of regrowth after inju...
CNS myelin contains axon outgrowth inhibitors, such as Nogo, that restrict regenerative growth after...
AbstractGrowth inhibition in the central nervous system (CNS) is a major barrier to axon regeneratio...
SummaryMyelin-associated inhibitory factors (MAIFs) are inhibitors of CNS axonal regeneration follow...
AbstractThree different myelin proteins, Nogo, MAG, and OMgp, inhibit regenerating axons after CNS i...
SummaryA major obstacle for successful axon regeneration in the adult central nervous system (CNS) a...
A variety of conditions ranging from glaucoma to blunt force trauma lead to optic nerve atrophy. Ide...
AbstractMyelin inhibitors of axonal regeneration, like Nogo and MAG, block regrowth after injury to ...
PURPOSE. LINGO-1 is a functional member of the Nogo66 receptor (NgR1)/p75 and NgR1/TROY signaling co...
As neuronal development enters its final stages, axon growth becomes restricted. This lack of regene...
Axon regeneration in the injured adult CNS is reportedly inhibited by myelin-derived inhibitory mole...
The capacity for regeneration in the central nervous system is limited, with little functional recov...
Three myelin proteins bind to the neuronal Nogo66 receptor (NgR1) that mediates the inhibition of ax...
Adult mammalian central nervous system (CNS) axons have a limited regrowth capacity following injury...
Presentation no. 749.5Transection of the optic nerve results in the death of retinal ganglion cells ...
Adult mammalian central nervous system (CNS) axons have very limited capacity of regrowth after inju...
CNS myelin contains axon outgrowth inhibitors, such as Nogo, that restrict regenerative growth after...
AbstractGrowth inhibition in the central nervous system (CNS) is a major barrier to axon regeneratio...
SummaryMyelin-associated inhibitory factors (MAIFs) are inhibitors of CNS axonal regeneration follow...
AbstractThree different myelin proteins, Nogo, MAG, and OMgp, inhibit regenerating axons after CNS i...
SummaryA major obstacle for successful axon regeneration in the adult central nervous system (CNS) a...
A variety of conditions ranging from glaucoma to blunt force trauma lead to optic nerve atrophy. Ide...
AbstractMyelin inhibitors of axonal regeneration, like Nogo and MAG, block regrowth after injury to ...
PURPOSE. LINGO-1 is a functional member of the Nogo66 receptor (NgR1)/p75 and NgR1/TROY signaling co...
As neuronal development enters its final stages, axon growth becomes restricted. This lack of regene...