Despite tissue engineering advances, current nerve guidance conduits (NGCs) are still failing in repairing critical-sized defects. This study aims, therefore, at tackling large nerve gaps (2 cm) by designing NGCs possessing refined physicochemical properties enhancing the activity of Schwann cells (SCs) that support nerve regeneration over long distances. As such, a combinatorial strategy adopting novel plasma-induced surface chemistry and architectural heterogeneity was considered. A mechanically suitable copolymer (Polyactive®) was electrospun to produce nanofibrous NGCs mimicking the extracellular matrix. An innovative seamless double-layered architecture consisting of an inner wall comprised of bundles of aligned fibers with intercalate...
We have designed a novel nerve guidance conduit (NGC) made from silk fibroin and poly(lactic-co-glyc...
Nerve conduits containing highly aligned architecture that mimics native tissues are essential for e...
Injury to nerve tissue in the peripheral nervous system (PNS) results in long-term impairment of lim...
Despite tissue engineering advances, current nerve guidance conduits (NGCs) are still failing in rep...
Injuries to the peripheral nervous system affect 1 in 1,000 individuals each year. The implication o...
Composite biopolymer/conducting polymer scaffolds, such as polylactic acid (PLA)/ polyaniline (PAni)...
Nerve guidance conduits (NGCs) are sub-optimal for long-distance injuries with inflammation and poor...
Implantable biodegradable nerve guidance conduits (NGCs) are promising alternatives to autograft ner...
Injuries to the peripheral nervous system affect 1 in 1,000 individuals each year. The implication o...
The prevalence of peripheral nerve injuries resulting in loss of motor function, sensory function, o...
The gold standard for the treatment of peripheral nerve injuries, the autograft, presents several dr...
Following severe nerve injuries, surgery is required to physically reconnect the injured nerve for r...
In the tissue engineering field, the surface modification of hydrophobic nanofibers (NFs) to introdu...
Microsurgical techniques for the treatment of large peripheral nerve injuries (such as the gold stan...
Due to the limited self-repairing capacity after peripheral nerve injuries (PNI), artificial nerve c...
We have designed a novel nerve guidance conduit (NGC) made from silk fibroin and poly(lactic-co-glyc...
Nerve conduits containing highly aligned architecture that mimics native tissues are essential for e...
Injury to nerve tissue in the peripheral nervous system (PNS) results in long-term impairment of lim...
Despite tissue engineering advances, current nerve guidance conduits (NGCs) are still failing in rep...
Injuries to the peripheral nervous system affect 1 in 1,000 individuals each year. The implication o...
Composite biopolymer/conducting polymer scaffolds, such as polylactic acid (PLA)/ polyaniline (PAni)...
Nerve guidance conduits (NGCs) are sub-optimal for long-distance injuries with inflammation and poor...
Implantable biodegradable nerve guidance conduits (NGCs) are promising alternatives to autograft ner...
Injuries to the peripheral nervous system affect 1 in 1,000 individuals each year. The implication o...
The prevalence of peripheral nerve injuries resulting in loss of motor function, sensory function, o...
The gold standard for the treatment of peripheral nerve injuries, the autograft, presents several dr...
Following severe nerve injuries, surgery is required to physically reconnect the injured nerve for r...
In the tissue engineering field, the surface modification of hydrophobic nanofibers (NFs) to introdu...
Microsurgical techniques for the treatment of large peripheral nerve injuries (such as the gold stan...
Due to the limited self-repairing capacity after peripheral nerve injuries (PNI), artificial nerve c...
We have designed a novel nerve guidance conduit (NGC) made from silk fibroin and poly(lactic-co-glyc...
Nerve conduits containing highly aligned architecture that mimics native tissues are essential for e...
Injury to nerve tissue in the peripheral nervous system (PNS) results in long-term impairment of lim...