Nonwoven polycaprolactone materials produced by electrospinning are perspective internal prosthetic implants. Seeding these implants with multipotent mesenchymal stromal cells stimulates the replacement of the prosthesis with recipient's own connective tissue. Electrospinning method was used for producing polycaprolactone matrices differing in thickness, pore diameter, fiber size, and biomechanical properties. Labeled cells were seeded on scaffolds in three ways: (1) static, (2) dynamic, and (3) directed flow of the cell suspension generated by capillary action. Cell distribution on the surface and the interior of the scaffolds was studied; the metabolic activity of cells was measured by MTT assay. Static seeding method yielded fully conflu...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Tissue loss is one of the most important reasons for failure in all the living systems. With develop...
Melt electrospinning is a promising approach to manufacture biocompatible scaffolds for tissue engin...
AbstractThe term “tissue engineering” refers to applications related with the repair or replacement ...
Since the inception of the field of tissue engineering, there has been a considerable effort to deve...
Electrospinning provides a simple robust method to manufacture scaffolds for tissue engineering appl...
Tissue engineering involves fabrication of three-dimensional scaffolds to support cellular in-growth...
The restoration of normal functioning of damaged body tissues is one of the major objectives of tiss...
Tissue engineering can effectively contribute to the development of novel vascular prostheses aimed ...
In tissue engineering, a uniform cell occupation of scaffolds is crucial to ensure the success of ti...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Thirty-two poly(ε)caprolactone (PCL) scaffolds have been produced by electrospinning directly into a...
Melt electrospinning is a promising approach to manufacture biocompatible scaffolds for tissue engin...
Tissue Engineering is an interdisciplinary field aiming at the restoration of the function of damage...
Melt electrospinning writing (MEW) is a solvent-free fabrication method for making polymer fiber sca...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Tissue loss is one of the most important reasons for failure in all the living systems. With develop...
Melt electrospinning is a promising approach to manufacture biocompatible scaffolds for tissue engin...
AbstractThe term “tissue engineering” refers to applications related with the repair or replacement ...
Since the inception of the field of tissue engineering, there has been a considerable effort to deve...
Electrospinning provides a simple robust method to manufacture scaffolds for tissue engineering appl...
Tissue engineering involves fabrication of three-dimensional scaffolds to support cellular in-growth...
The restoration of normal functioning of damaged body tissues is one of the major objectives of tiss...
Tissue engineering can effectively contribute to the development of novel vascular prostheses aimed ...
In tissue engineering, a uniform cell occupation of scaffolds is crucial to ensure the success of ti...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Thirty-two poly(ε)caprolactone (PCL) scaffolds have been produced by electrospinning directly into a...
Melt electrospinning is a promising approach to manufacture biocompatible scaffolds for tissue engin...
Tissue Engineering is an interdisciplinary field aiming at the restoration of the function of damage...
Melt electrospinning writing (MEW) is a solvent-free fabrication method for making polymer fiber sca...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Tissue loss is one of the most important reasons for failure in all the living systems. With develop...
Melt electrospinning is a promising approach to manufacture biocompatible scaffolds for tissue engin...