Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgical methods for repairing or replacing such damage have limitations. Tissue engineering offers a potential alternative. Here we show that functionalized α-helical-peptide hydrogels can be used to induce attachment, migration, proliferation and differentiation of murine embryonic neural stem cells (NSCs). Specifically, compared with undecorated gels, those functionalized with Arg-Gly-Asp-Ser (RGDS) peptides increase the proliferative activity of NSCs; promote their directional migration; induce differentiation, with increased expression of microtubule-associated protein-2, and a low expression of glial fibrillary acidic protein; and lead to the...
The number of individuals affected by neurological disorders rises rapidly world-wide, however, ther...
Hydrogel materials have been employed as biological scaffolds for tissue regeneration across a wide ...
Brain injury is almost irreparable due to the poor regenerative capability of neural tissue. Nowaday...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
This is the final version of the article. Available from the American Chemical Society via the DOI i...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
ABSTRACT: Trauma to the central and peripheral nervous systems often lead to serious morbidity. Curr...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
The number of individuals affected by neurological disorders rises rapidly world-wide, however, ther...
Hydrogel materials have been employed as biological scaffolds for tissue regeneration across a wide ...
Brain injury is almost irreparable due to the poor regenerative capability of neural tissue. Nowaday...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
This is the final version of the article. Available from the American Chemical Society via the DOI i...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
ABSTRACT: Trauma to the central and peripheral nervous systems often lead to serious morbidity. Curr...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
Trauma to the central and peripheral nervous systems often lead to serious morbidity. Current surgic...
The number of individuals affected by neurological disorders rises rapidly world-wide, however, ther...
Hydrogel materials have been employed as biological scaffolds for tissue regeneration across a wide ...
Brain injury is almost irreparable due to the poor regenerative capability of neural tissue. Nowaday...