AbstractA machine tool for the automatic fabrication of biocompatible scaffolds with embedded nanofibers mats was built. In this novel process, the scaffolds produced by Fused Deposition Modeling (FDM) were embedded with polycaprolactone (PCL) nanofibers in between the object layers. The nanofibers mat was obtained by far field electrospinning and its pore size was controlled by the fabrication process. An additional micromachining tool was used to drill and create microchannels in the hybrid geometry as required. This geometry will further be used in combination with cell cultures to study stem cell adhesion, proliferation and differentiation
Abstract The creation of biomimetic cell environments with micro and nanoscale topographical feature...
AbstractFibrous scaffolds, with fiber dimensions on the nanometer scale, are ideal for tissue engine...
This study presents a 3D fabrication technique of nanofibrous scaffold for tissue engineering. A di...
AbstractA machine tool for the automatic fabrication of biocompatible scaffolds with embedded nanofi...
Tissue engineering fibrous scaffolds serve as three-dimensional (3D) environmental framework by mimi...
Stem cell and tissue engineering offer us with a unique opportunity to research and develop new ther...
Tissue engineering fibrous scaffolds serve as three-dimensional (3D) environmental framework by mimi...
Objective: Three-dimensional (3D) biomimetic nanofiber scaffolds have widespread applications in bi...
Three-dimensional (3D) printing is a powerful manufacturing tool for making 3D structures with well-...
In vitro cell culture is traditionally performed within two-dimensional (2D) environments, providin...
Purpose: The purpose of this paper is to focus on the production of scaffolds with specific morpholo...
Electrospinning is a common technique used to fabricate fibrous scaffolds for tissue engineering app...
Material science, cell biology, and engineering are all part of the research field of tissue enginee...
Tissue Engineering is an interdisciplinary field aiming at the restoration of the function of damage...
Special Issue "Organic Nanofibers : Fabrication, Properties and Applications"Recent advancements in ...
Abstract The creation of biomimetic cell environments with micro and nanoscale topographical feature...
AbstractFibrous scaffolds, with fiber dimensions on the nanometer scale, are ideal for tissue engine...
This study presents a 3D fabrication technique of nanofibrous scaffold for tissue engineering. A di...
AbstractA machine tool for the automatic fabrication of biocompatible scaffolds with embedded nanofi...
Tissue engineering fibrous scaffolds serve as three-dimensional (3D) environmental framework by mimi...
Stem cell and tissue engineering offer us with a unique opportunity to research and develop new ther...
Tissue engineering fibrous scaffolds serve as three-dimensional (3D) environmental framework by mimi...
Objective: Three-dimensional (3D) biomimetic nanofiber scaffolds have widespread applications in bi...
Three-dimensional (3D) printing is a powerful manufacturing tool for making 3D structures with well-...
In vitro cell culture is traditionally performed within two-dimensional (2D) environments, providin...
Purpose: The purpose of this paper is to focus on the production of scaffolds with specific morpholo...
Electrospinning is a common technique used to fabricate fibrous scaffolds for tissue engineering app...
Material science, cell biology, and engineering are all part of the research field of tissue enginee...
Tissue Engineering is an interdisciplinary field aiming at the restoration of the function of damage...
Special Issue "Organic Nanofibers : Fabrication, Properties and Applications"Recent advancements in ...
Abstract The creation of biomimetic cell environments with micro and nanoscale topographical feature...
AbstractFibrous scaffolds, with fiber dimensions on the nanometer scale, are ideal for tissue engine...
This study presents a 3D fabrication technique of nanofibrous scaffold for tissue engineering. A di...