Bone tissue is usually damaged after big traumas, tumors, and increasing aging-related diseases such as osteoporosis and osteoarthritis. Current treatments are based on implanting grafts, which are shown to have several inconveniences. In this regard, tissue engineering through the 3D bioprinting technique has arisen to manufacture structures that would be a feasible therapeutic option for bone regenerative medicine. In this study, nanocellulose–alginate (NC–Alg)-based bioink is improved by adding two different inorganic components such as hydroxyapatite (HAP) and graphene oxide (GO). First, ink rheological properties and biocompatibility are evaluated as well as the influence of the sterilization process on them. Then, scaffolds are charac...
3D-printing technology allows the automated and reproducible manufacturing of functional structures ...
The consequences of bone traumatisation, loss or damage, resulting from injury or disease can dramat...
This work aimed to manufacture scaffolds from a hydrogel composed of a sodium alginate matrix with h...
Studies have reported that the incorporation of graphene oxide (GO) and hydroxyapatite (HA) into bio...
Tissue engineered constructs can serve as in vitro models for research and replacement of diseased o...
Màster en Nanociència i Nanotecnologia, Facultat de Física, Universitat de Barcelona, Curs: 2018-201...
The incorporation of reduced graphene oxide (rGO) nanomaterials into scaffolds structure can be expl...
3D bioprinting has begun to show great promise in advancing the development of functional tissue/org...
Over two million bone grafts are performed every year worldwide to treat bone loss due to trauma or ...
© 2016 by the author. Scaffolds are physical substrates for cell attachment, proliferation, and diff...
Current approaches to treat bone fractures typically use: i) autologous bone graft harvested from th...
To design a hydrogel material containing nano hydroxyapatite particles for three-dimensional (3D) bi...
Bone tissue engineering has come on the scene to overcome the difficulties of the current treatment ...
The incidence of fractures and bone-related diseases like osteoporosis has been increasing due to ag...
Current clinical strategies to treat large bone size defects, mainly based on autografts, are ineffi...
3D-printing technology allows the automated and reproducible manufacturing of functional structures ...
The consequences of bone traumatisation, loss or damage, resulting from injury or disease can dramat...
This work aimed to manufacture scaffolds from a hydrogel composed of a sodium alginate matrix with h...
Studies have reported that the incorporation of graphene oxide (GO) and hydroxyapatite (HA) into bio...
Tissue engineered constructs can serve as in vitro models for research and replacement of diseased o...
Màster en Nanociència i Nanotecnologia, Facultat de Física, Universitat de Barcelona, Curs: 2018-201...
The incorporation of reduced graphene oxide (rGO) nanomaterials into scaffolds structure can be expl...
3D bioprinting has begun to show great promise in advancing the development of functional tissue/org...
Over two million bone grafts are performed every year worldwide to treat bone loss due to trauma or ...
© 2016 by the author. Scaffolds are physical substrates for cell attachment, proliferation, and diff...
Current approaches to treat bone fractures typically use: i) autologous bone graft harvested from th...
To design a hydrogel material containing nano hydroxyapatite particles for three-dimensional (3D) bi...
Bone tissue engineering has come on the scene to overcome the difficulties of the current treatment ...
The incidence of fractures and bone-related diseases like osteoporosis has been increasing due to ag...
Current clinical strategies to treat large bone size defects, mainly based on autografts, are ineffi...
3D-printing technology allows the automated and reproducible manufacturing of functional structures ...
The consequences of bone traumatisation, loss or damage, resulting from injury or disease can dramat...
This work aimed to manufacture scaffolds from a hydrogel composed of a sodium alginate matrix with h...