Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Preparation of porous multi-channeled chitosan conduits for nerve tissue engineering
A new method to fabricate porous chitosan nerve conduits with multi-channels was described. A uniquely designed mold was composed of 7 - 50 stainless steel needles and a set of plastic pedestals. Porous or imperforate chitosan tubes with 2 - 5mm inner diameter and 0.2 - 1.0 mm wall thickness were made firstly. The chitosan tubes were injected with 3 % chitosan gel. The stainless steel needles longitudinally perforated through the chitosan tubes filled with chitosan gel, and the plastic pedestals were used to fix the needles. Lyophilization was used to finish fabrication. The diameter of channels was 0.2 - 0.4mm. Swelling property and biodegradability of multi-channeled chitosan conduits were investigated. Wright's staining and scanning electron microscope (SEM) were used to observe spread and proliferation of Neuroblastoma cells (N2A, mouse) on the conduits. It is promising that the porous chitosan nerve conduits with multi-channels are used as nerve tissue engineering scaffolds in repair of peripheral nerve and spinal cord injuries.
Preparation of porous multi-channeled chitosan conduits for nerve tissue engineering
A new method to fabricate porous chitosan nerve conduits with multi-channels was described. A uniquely designed mold was composed of 7 - 50 stainless steel needles and a set of plastic pedestals. Porous or imperforate chitosan tubes with 2 - 5mm inner diameter and 0.2 - 1.0 mm wall thickness were made firstly. The chitosan tubes were injected with 3 % chitosan gel. The stainless steel needles longitudinally perforated through the chitosan tubes filled with chitosan gel, and the plastic pedestals were used to fix the needles. Lyophilization was used to finish fabrication. The diameter of channels was 0.2 - 0.4mm. Swelling property and biodegradability of multi-channeled chitosan conduits were investigated. Wright's staining and scanning electron microscope (SEM) were used to observe spread and proliferation of Neuroblastoma cells (N2A, mouse) on the conduits. It is promising that the porous chitosan nerve conduits with multi-channels are used as nerve tissue engineering scaffolds in repair of peripheral nerve and spinal cord injuries.
Preparation of porous multi-channeled chitosan conduits for nerve tissue engineering
Herstellung poröser, mehrkanaliger Chitosan-Leitungen für ein Tissue Engineering von Nerven
Ao, Q. (Autor:in) / Wang, A.J. (Autor:in) / Cao, W.L. (Autor:in) / Zhao, C. (Autor:in) / Gong, Y.D. (Autor:in) / Zhao, N.M. (Autor:in) / Zhang, X.F. (Autor:in)
2005
4 Seiten, 2 Bilder, 1 Tabelle, 10 Quellen
Aufsatz (Konferenz)
Englisch
Preparation of Porous Multi-Channeled Chitosan Conduits for Nerve Tissue Engineering
British Library Online Contents | 2005
|Preparation of Porous Chitosan/HA Scaffolds for Tissue Engineering
British Library Online Contents | 2005
|Layered chitosan conduits with controllable inner diameters
British Library Online Contents | 2011
|Porous chitosan/graphene oxide biocomposites for tissue engineering
British Library Online Contents | 2017
|