Electrospun scaffolds for in situ tissue engineering can be prepared with different fiber diameters to influence cell recruitment, adhesion, and differentiation. For cardiovascular applications, we investigated the impact of different fiber diameters (2, 5, 8, and 11 µm) in electrospun poly(e-caprolactone) scaffolds on endothelial colony forming cells (ECFCs) in comparison to mature endothelial cells (HUVECs). In 2D cultures and on 2 µm fiber scaffolds, ECFC morphology and phenotype resemble those of HUVECs. When cultured on scaffolds with 5-11 µm fibers, a different behavior was detected. HUVECs developed a cytoskeleton organized circumferentially around the fibers, with collagen alignment in the same direction. ECFCs, instead, aligned the...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Due to the morphological resemblance between the electrospun nanofibers and extracellular matrix (EC...
Electrospun scaffolds for in situ tissue engineering can be prepared with different fiber diameters ...
Electrospun scaffolds for in situ tissue engineering can be prepared with different fiber diameters ...
Electrospun scaffolds for in situ tissue engineering can be prepared with different fiber diameters ...
Electrospun scaffolds for in situ tissue engineering can be prepared with different fiber diameters ...
Electrospun scaffolds for in situ tissue engineering can be prepared with different fiber diameters ...
Electrospun scaffolds for in situ tissue engineering can be prepared with different fiber diameters ...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
The aim of this study was to look at how the composition and morphology of polymer scaffolds could b...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Due to the morphological resemblance between the electrospun nanofibers and extracellular matrix (EC...
Electrospun scaffolds for in situ tissue engineering can be prepared with different fiber diameters ...
Electrospun scaffolds for in situ tissue engineering can be prepared with different fiber diameters ...
Electrospun scaffolds for in situ tissue engineering can be prepared with different fiber diameters ...
Electrospun scaffolds for in situ tissue engineering can be prepared with different fiber diameters ...
Electrospun scaffolds for in situ tissue engineering can be prepared with different fiber diameters ...
Electrospun scaffolds for in situ tissue engineering can be prepared with different fiber diameters ...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
The aim of this study was to look at how the composition and morphology of polymer scaffolds could b...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Despite the attractive features of nanofibrous scaffolds for cell attachment in tissue-engineering (...
Due to the morphological resemblance between the electrospun nanofibers and extracellular matrix (EC...