Two common problems in the fabrication of tissue engineered scaffolds using electrospinning techniques are poor cellular infiltration into the scaffold and thin dimension of the scaffold which limits its application. In this work, we proposed a novel method to fabricate 3D scaffold to address these issues. We also suggest to further enhance the properties of our scaffold by surface modifying it. The novel method which we employed to produce our 3D scaffold was a modified electrospinning technique. Scaffold was collected on a needle rather than a flat collector plate. A spherical scaffold with diameter approximately 1.5cm could be collected in half an hour time. Scaffold was then surface modified to incorporate gelatin onto the scaff...
The potential of electrospinning process to fabricate ultrafine fibers as building blocks for tissue...
Fabrication of three dimensional (3D) tissue engineering scaffolds, particularly for hard tissues re...
In this review, various achievements in the field of development of tissue-engineered scaffolds with...
Two common problems in the fabrication of tissue engineered scaffolds using electrospinning techniq...
Tissue engineering involves fabrication of three-dimensional scaffolds to support cellular in-growth...
In tissue engineering, a uniform cell occupation of scaffolds is crucial to ensure the success of ti...
In tissue engineering, a uniform cell occupation of scaffolds is crucial to ensure the success of ti...
Three dimensional scaffolds are crucial for the proliferation of cells and maintenance of their diff...
This study investigates the use of patterned collectors to increase the pore size of electrospun sca...
An emerging area of interest in tissue engineering is to fabricate biomimetic constructs that closel...
This study investigates the use of patterned collectors to increase the pore size of electrospun sca...
This study investigates the use of patterned collectors to increase the pore size of electrospun sca...
Three dimensional scaffolds are crucial for the proliferation of cells and maintenance of their diff...
Electrospinning is a technique widely used for tissue engineering. Despite hurdles, electrospun vasc...
An emerging area of interest in tissue engineering is to fabricate biomimetic constructs that closel...
The potential of electrospinning process to fabricate ultrafine fibers as building blocks for tissue...
Fabrication of three dimensional (3D) tissue engineering scaffolds, particularly for hard tissues re...
In this review, various achievements in the field of development of tissue-engineered scaffolds with...
Two common problems in the fabrication of tissue engineered scaffolds using electrospinning techniq...
Tissue engineering involves fabrication of three-dimensional scaffolds to support cellular in-growth...
In tissue engineering, a uniform cell occupation of scaffolds is crucial to ensure the success of ti...
In tissue engineering, a uniform cell occupation of scaffolds is crucial to ensure the success of ti...
Three dimensional scaffolds are crucial for the proliferation of cells and maintenance of their diff...
This study investigates the use of patterned collectors to increase the pore size of electrospun sca...
An emerging area of interest in tissue engineering is to fabricate biomimetic constructs that closel...
This study investigates the use of patterned collectors to increase the pore size of electrospun sca...
This study investigates the use of patterned collectors to increase the pore size of electrospun sca...
Three dimensional scaffolds are crucial for the proliferation of cells and maintenance of their diff...
Electrospinning is a technique widely used for tissue engineering. Despite hurdles, electrospun vasc...
An emerging area of interest in tissue engineering is to fabricate biomimetic constructs that closel...
The potential of electrospinning process to fabricate ultrafine fibers as building blocks for tissue...
Fabrication of three dimensional (3D) tissue engineering scaffolds, particularly for hard tissues re...
In this review, various achievements in the field of development of tissue-engineered scaffolds with...