The present study intended to evaluate the performance of chitosan-based scaffolds produced by a particle aggregation method aimed to be used in tissue engineering applications addressing key issues such as morphological characteristics, mechanical performance and in vivo behaviour. It is claimed that the particle aggregation methodology may present several advantages, such as combine simultaneously a high interconnectivity with high mechanical properties that are both critical for an in vivo successful application. In order to evaluate these properties, micro-Computed Tomography (micro-CT) and Dynamical Mechanical Analysis (DMA) were applied. The herein proposed scaffolds present an interesting morphology as assessed by micro-CT tha...
Aims. Vascular grafts made of synthetic polymers perform poorly in small-diameter applications. Cons...
Aims. Vascular grafts made of synthetic polymers perform poorly in small-diameter applications. Cons...
Tissue engineering sustains the need of a three-dimensional (3D) scaffold to promote the regenerati...
In tissue engineering, scaffolds development presents, among others, 3 key requirements: adequate mo...
It is well accepted that natural tissue regeneration is unlikely to occur if the cells are not suppl...
In tissue engineering, scaffolds development presents, among others, 3 key requirements: adequate mo...
Scaffolds are porous three-dimensional supports, designed to mimic the extracellular environment and...
[Excerpt] Microparticles may be used as a support for the adhesion and proliferation of cells. There...
The use of bioabsorbable polymeric scaffolds is being investigated for use in bone tissue engineerin...
The use of chitosan microparticles as injectable carriers for cell transplantation represents a pro...
This study reports on the production of chitosan fibers and 3-D fiber meshes for the use as tissue e...
Composite scaffolds based on biodegradable natural polymer and osteoconductive hydroxyapatite (HA) n...
AbstractIn this work, plasticizer agents were incorporated in a chitosan based formulation, as a str...
[Excerpt] Osteochondral tissue engineering presents a challenge to the present research due to requi...
Osteochondral tissue engineering presents a current research challenge due to the necessity of combi...
Aims. Vascular grafts made of synthetic polymers perform poorly in small-diameter applications. Cons...
Aims. Vascular grafts made of synthetic polymers perform poorly in small-diameter applications. Cons...
Tissue engineering sustains the need of a three-dimensional (3D) scaffold to promote the regenerati...
In tissue engineering, scaffolds development presents, among others, 3 key requirements: adequate mo...
It is well accepted that natural tissue regeneration is unlikely to occur if the cells are not suppl...
In tissue engineering, scaffolds development presents, among others, 3 key requirements: adequate mo...
Scaffolds are porous three-dimensional supports, designed to mimic the extracellular environment and...
[Excerpt] Microparticles may be used as a support for the adhesion and proliferation of cells. There...
The use of bioabsorbable polymeric scaffolds is being investigated for use in bone tissue engineerin...
The use of chitosan microparticles as injectable carriers for cell transplantation represents a pro...
This study reports on the production of chitosan fibers and 3-D fiber meshes for the use as tissue e...
Composite scaffolds based on biodegradable natural polymer and osteoconductive hydroxyapatite (HA) n...
AbstractIn this work, plasticizer agents were incorporated in a chitosan based formulation, as a str...
[Excerpt] Osteochondral tissue engineering presents a challenge to the present research due to requi...
Osteochondral tissue engineering presents a current research challenge due to the necessity of combi...
Aims. Vascular grafts made of synthetic polymers perform poorly in small-diameter applications. Cons...
Aims. Vascular grafts made of synthetic polymers perform poorly in small-diameter applications. Cons...
Tissue engineering sustains the need of a three-dimensional (3D) scaffold to promote the regenerati...