Skeletal muscle regeneration is increasingly necessary, which is reflected in the increasing number of studies that are focused on improving the scaffolds used for such regeneration, as well as the incubation protocol. The main objective of this work was to improve the characteristics of polycaprolactone (PCL) scaffolds by incorporating elastin to achieve better cell proliferation and biocompatibility. In addition, two cell incubation protocols (with and without dynamic mechanical stimulation) were evaluated to improve the activity and functionality yields of the regenerated cells. The results indicate that the incorporation of elastin generates aligned and more hydrophilic scaffolds with smaller fiber size. In addition, the mechanical prop...
Tissue engineering combines a scaffold, cells and regulatory signals, reproducing a biomimetic extra...
Electrospun scaffolds are widely used in tissue engineering for the repair of softtissue. In spite o...
Electrospinning provides a simple robust method to manufacture scaffolds for tissue engineering appl...
Skeletal muscle regeneration is increasingly necessary, which is reflected in the increasing number ...
Skeletal muscle regeneration is increasingly necessary, which is reflected in the increasing number ...
The creation of skeletal muscle tissue in vitro is a major topic of interest today in the field of b...
The creation of skeletal muscle tissue in vitro is a major topic of interest today in the field of b...
Elastic fibres play a key role in bodily functions where fatigue resistance and elastic recovery are...
Tissue engineering aims to develop in-vitro substitutes of native tissues. One approach of tissue en...
Tissue engineering represents a possible approach to replace the lost or defective muscle. The purp...
Tissue engineering represents a possible approach to replace the lost or defective muscle. The purp...
Tissue loss is one of the most important reasons for failure in all the living systems. With develop...
Scaffolds for engineering soft tissue would ideally be mechanically compliant and anisotropic while ...
Tissue engineering combines a scaffold, cells and regulatory signals, reproducing a biomimetic extra...
Electrospun scaffolds are widely used in tissue engineering for the repair of softtissue. In spite o...
Electrospinning provides a simple robust method to manufacture scaffolds for tissue engineering appl...
Skeletal muscle regeneration is increasingly necessary, which is reflected in the increasing number ...
Skeletal muscle regeneration is increasingly necessary, which is reflected in the increasing number ...
The creation of skeletal muscle tissue in vitro is a major topic of interest today in the field of b...
The creation of skeletal muscle tissue in vitro is a major topic of interest today in the field of b...
Elastic fibres play a key role in bodily functions where fatigue resistance and elastic recovery are...
Tissue engineering aims to develop in-vitro substitutes of native tissues. One approach of tissue en...
Tissue engineering represents a possible approach to replace the lost or defective muscle. The purp...
Tissue engineering represents a possible approach to replace the lost or defective muscle. The purp...
Tissue loss is one of the most important reasons for failure in all the living systems. With develop...
Scaffolds for engineering soft tissue would ideally be mechanically compliant and anisotropic while ...
Tissue engineering combines a scaffold, cells and regulatory signals, reproducing a biomimetic extra...
Electrospun scaffolds are widely used in tissue engineering for the repair of softtissue. In spite o...
Electrospinning provides a simple robust method to manufacture scaffolds for tissue engineering appl...