Metallothionein (MT)-I/II has been shown to be neuroprotective and neuroregenerative in a model of rat cortical brain injury. Here we examine expression patterns of MT-I/II and its putative receptor megalin in rat retina. At neonatal stages, MT-I/II was present in retinal ganglion cells (RGCs) but not glial or amacrine cells; megalin was present throughout the retina. Whilst MT-I/II was absent from adult RGC in normal animals and after optic nerve transection, the constitutive megalin expression in RGCs was lost following optic nerve transection. In vitro MT-IIA treatment stimulated neuritic growth: more RGCs grew neurites longer than 25 μm (P < 0.05) in dissociated retinal cultures and neurite extension increased in retinal explants (P < 0...
Metallothionein (MT) expression is rapidly up-regulated following CNS injury, and there is a strong ...
Metallothioneins (MTs) constitutes a superfamily of highly conserved, low molecular weight polypepti...
Abstract Background The extracellular environment plays an important role in supporting the regenera...
Metallothionein (MT)-I/II has been shown to be neuroprotective and neuroregenerative in a model of r...
A number of intracellular proteins that are protective after brain injury are classically thought to...
The primary function of metallothioneins (MTs) remains elusive since their discovery 50 years ago. ...
A number of intracellular proteins that are protective after brain injury are classically thought to...
Prior studies have reported that metallothionein I/II (MT) promote regenerative axonal sprouting and...
Recent data suggests that metallothioneins (MTs) are major neuroprotective proteins within the CNS. ...
Metallothioneins (MTs) are small, cysteine-rich, metal binding proteins. Their function has often be...
Metallothioneins are a family of low molecular weight, metal-binding proteins with an unusually high...
Anumber of intracellular proteins that are protective after brain injury are classically thought to...
The physiological role of metallothionein (MT) has been a topic of growing interest, particularly wi...
Metallothioneins (MTs) constitutes a superfamily of highly conserved, low molecular weight polypepti...
Megalin is an endocytotic receptor belonging to the low-density lipoprotein family. It has often bee...
Metallothionein (MT) expression is rapidly up-regulated following CNS injury, and there is a strong ...
Metallothioneins (MTs) constitutes a superfamily of highly conserved, low molecular weight polypepti...
Abstract Background The extracellular environment plays an important role in supporting the regenera...
Metallothionein (MT)-I/II has been shown to be neuroprotective and neuroregenerative in a model of r...
A number of intracellular proteins that are protective after brain injury are classically thought to...
The primary function of metallothioneins (MTs) remains elusive since their discovery 50 years ago. ...
A number of intracellular proteins that are protective after brain injury are classically thought to...
Prior studies have reported that metallothionein I/II (MT) promote regenerative axonal sprouting and...
Recent data suggests that metallothioneins (MTs) are major neuroprotective proteins within the CNS. ...
Metallothioneins (MTs) are small, cysteine-rich, metal binding proteins. Their function has often be...
Metallothioneins are a family of low molecular weight, metal-binding proteins with an unusually high...
Anumber of intracellular proteins that are protective after brain injury are classically thought to...
The physiological role of metallothionein (MT) has been a topic of growing interest, particularly wi...
Metallothioneins (MTs) constitutes a superfamily of highly conserved, low molecular weight polypepti...
Megalin is an endocytotic receptor belonging to the low-density lipoprotein family. It has often bee...
Metallothionein (MT) expression is rapidly up-regulated following CNS injury, and there is a strong ...
Metallothioneins (MTs) constitutes a superfamily of highly conserved, low molecular weight polypepti...
Abstract Background The extracellular environment plays an important role in supporting the regenera...