Biomaterials hold great promise in helping the adult brain regenerate and rebuild after trauma. Peptide amphiphiles (PAs) are highly versatile biomaterials, gelling and forming macromolecular structures when exposed to physiological levels of electrolytes. We are here reporting on the first ever in vivo use of self-assembling PA carrying a Tenascin-C signal (E 2 Ten-C PA) for the redirection of endogenous neuroblasts in the rodent brain. The PA forms highly aligned nanofibers, displaying the migratory sequence of Tenascin-C glycoprotein as epitope. In this in vivo work, we have formed in situ a gel of aligned PA nanofibers presenting a migratory Tenascin-C signal sequence in the ventral horn of the rostral migratory stream, creating a track...
Neurotrophic growth factors are effective in slowing progressive degeneration and/or promoting neura...
Brain injury is almost irreparable due to the poor regenerative capability of neural tissue. Nowaday...
ABSTRACT: Trauma to the central and peripheral nervous systems often lead to serious morbidity. Curr...
The adult brain has an inherently low capacity for tissue regeneration, and neurons lost to disease ...
Traumatic brain injury (TBI) or brain surgery may cause extensive loss of cerebral parenchyma. Howev...
The combination of biomaterials with stem cells is a promising therapeutic strategy to repair trauma...
The number of individuals affected by neurological disorders rises rapidly world-wide, however, ther...
<div><p>The use of human embryonic stem cells (hESCs) for regeneration of the spiral ganglion will r...
The debilitating symptoms that arise from damage to the central nervous system (CNS) have received s...
Brain tissue engineering has the potential to harness existing elements of neurogenesis within the a...
Neural stem cells, which are confined in localised niches are unable to repair large brain lesions b...
Tissue specific scaffolds formed from minimalist N-fluorenylmethyloxycarbonyl self-assembling peptid...
Due to the delicacy and complexity of the CNS, little spontaneous regeneration, repair or healing oc...
Tissue specific scaffolds formed from minimalist N-fluorenylmethyloxycarbonyl self-assembling peptid...
Cell transplantation has provided a novel approach for the treatment of brain disorders due to ...
Neurotrophic growth factors are effective in slowing progressive degeneration and/or promoting neura...
Brain injury is almost irreparable due to the poor regenerative capability of neural tissue. Nowaday...
ABSTRACT: Trauma to the central and peripheral nervous systems often lead to serious morbidity. Curr...
The adult brain has an inherently low capacity for tissue regeneration, and neurons lost to disease ...
Traumatic brain injury (TBI) or brain surgery may cause extensive loss of cerebral parenchyma. Howev...
The combination of biomaterials with stem cells is a promising therapeutic strategy to repair trauma...
The number of individuals affected by neurological disorders rises rapidly world-wide, however, ther...
<div><p>The use of human embryonic stem cells (hESCs) for regeneration of the spiral ganglion will r...
The debilitating symptoms that arise from damage to the central nervous system (CNS) have received s...
Brain tissue engineering has the potential to harness existing elements of neurogenesis within the a...
Neural stem cells, which are confined in localised niches are unable to repair large brain lesions b...
Tissue specific scaffolds formed from minimalist N-fluorenylmethyloxycarbonyl self-assembling peptid...
Due to the delicacy and complexity of the CNS, little spontaneous regeneration, repair or healing oc...
Tissue specific scaffolds formed from minimalist N-fluorenylmethyloxycarbonyl self-assembling peptid...
Cell transplantation has provided a novel approach for the treatment of brain disorders due to ...
Neurotrophic growth factors are effective in slowing progressive degeneration and/or promoting neura...
Brain injury is almost irreparable due to the poor regenerative capability of neural tissue. Nowaday...
ABSTRACT: Trauma to the central and peripheral nervous systems often lead to serious morbidity. Curr...