Novel technologies allowed the scientific community to develop scaffolds for regeneration of bone tissue. A successful scaffold should possess specific macroscopic geometry and internal architecture to perform biological and biophysical functions. In this study the process of polycaprolactone microfibrous development with either cross-linked or highly-aligned three-dimensional artificial mats via electrospinning technology for potential application in tissue engineering is described. The morphology and size of electrospun fibers were assessed systematically by varying the rotation speed of grounded collector. It was found that the diameter of the fibers decreased by increasing the rotation speed of collector. The morphology of the fibers ch...
Abstract The creation of biomimetic cell environments with micro and nanoscale topographical feature...
abstract: Heterogeneous tissues are composed of chemical and physical gradients responsible for tran...
Tissue engineering involves fabrication of three-dimensional scaffolds to support cellular in-growth...
AbstractThe term “tissue engineering” refers to applications related with the repair or replacement ...
Electrospinning is a technique that can produce fibres in the nanoscale range. This process is usefu...
Electrospinning is a technique that can produce fibres in the nanoscale range. This process is usefu...
We have developed three-dimensional electrospun microfibrous meshes of a novel star branched three-a...
Tissue engineering fibrous scaffolds serve as three-dimensional (3D) environmental framework by mimi...
Recently, there has been a significant increase of bone tissue engineering research for elderly as t...
Thirty-two poly(ε)caprolactone (PCL) scaffolds have been produced by electrospinning directly into a...
Electrospinning process, a simple and versatile set up for the fabrication of fibers textiles is cap...
Recently, there has been a significant increase of bone tissue engineering research for elderly as t...
Complex scaffolds composed of micro- and nano-structures are a key target in tissue engineering and ...
Tissue engineering (TE) is envisaged to play a vital role in improving the quality of life by restor...
This study presents a 3D fabrication technique of nanofibrous scaffold for tissue engineering. A di...
Abstract The creation of biomimetic cell environments with micro and nanoscale topographical feature...
abstract: Heterogeneous tissues are composed of chemical and physical gradients responsible for tran...
Tissue engineering involves fabrication of three-dimensional scaffolds to support cellular in-growth...
AbstractThe term “tissue engineering” refers to applications related with the repair or replacement ...
Electrospinning is a technique that can produce fibres in the nanoscale range. This process is usefu...
Electrospinning is a technique that can produce fibres in the nanoscale range. This process is usefu...
We have developed three-dimensional electrospun microfibrous meshes of a novel star branched three-a...
Tissue engineering fibrous scaffolds serve as three-dimensional (3D) environmental framework by mimi...
Recently, there has been a significant increase of bone tissue engineering research for elderly as t...
Thirty-two poly(ε)caprolactone (PCL) scaffolds have been produced by electrospinning directly into a...
Electrospinning process, a simple and versatile set up for the fabrication of fibers textiles is cap...
Recently, there has been a significant increase of bone tissue engineering research for elderly as t...
Complex scaffolds composed of micro- and nano-structures are a key target in tissue engineering and ...
Tissue engineering (TE) is envisaged to play a vital role in improving the quality of life by restor...
This study presents a 3D fabrication technique of nanofibrous scaffold for tissue engineering. A di...
Abstract The creation of biomimetic cell environments with micro and nanoscale topographical feature...
abstract: Heterogeneous tissues are composed of chemical and physical gradients responsible for tran...
Tissue engineering involves fabrication of three-dimensional scaffolds to support cellular in-growth...