International audienceSynergy between micro-nanotechnology and regenerative medicine can lead to new tools for health improvement. In this study, we investigate the efficacy of electrospun scaffolds-fabricated using clinically approved collagen – as supports for cardiomyoblast culture. The scaffolds were prepared using non-toxic solvents and crosslinking agents and characterized by scanning electron microscopy and contact angle measurements. Among different types of collagen samples, we found that atelocollagen can produce better quality of electrospun fibers than acid and basic fibrous collagen. Our results also show that the cell culture performance can be improved by adjusting the crosslinking conditions. Typically, increasing the concen...
Collagen electrospun scaffolds potentially couple high biomimetism of the biological material with t...
Collagen is the major structural protein in myocardium and contributes to tissue strength and integr...
MSCs are widely applied to regenerate heart tissue in myocardial diseases but when grown in standard...
International audienceSynergy between micro-nanotechnology and regenerative medicine can lead to new...
Collagen, the most abundant component of extracellular matrix, is a molecule of choice for the devel...
International audienceLimited data are available on the effects of stem cells in non-ischemic dilate...
International audienceCardiac cell therapy holds a real promise for improving heart function and esp...
Cardiac cell therapy holds a real promise for improving heart function and especially of the chronic...
Background Myocardial infarction causes the loss of billions of cardiomyocytes and the remodelling o...
The ideal scaffold for tissue engineering provides an architecture similar to natural tissue. For ca...
In the current study, we fabricated a cardiac patch composed of gold nanowires incorporated in colla...
<p>The generation of <i>in vitro</i> tissue constructs using biomaterials and cardiac cells is a pro...
The basic requirement of any engineered scaffold is to mimic the native tissue extracellular matrix ...
Next generation of biomaterials with enhanced functionalities requires the integration of material s...
Reactive electrospinning is capable of efficiently producing in situ crosslinked scaffolds resemblin...
Collagen electrospun scaffolds potentially couple high biomimetism of the biological material with t...
Collagen is the major structural protein in myocardium and contributes to tissue strength and integr...
MSCs are widely applied to regenerate heart tissue in myocardial diseases but when grown in standard...
International audienceSynergy between micro-nanotechnology and regenerative medicine can lead to new...
Collagen, the most abundant component of extracellular matrix, is a molecule of choice for the devel...
International audienceLimited data are available on the effects of stem cells in non-ischemic dilate...
International audienceCardiac cell therapy holds a real promise for improving heart function and esp...
Cardiac cell therapy holds a real promise for improving heart function and especially of the chronic...
Background Myocardial infarction causes the loss of billions of cardiomyocytes and the remodelling o...
The ideal scaffold for tissue engineering provides an architecture similar to natural tissue. For ca...
In the current study, we fabricated a cardiac patch composed of gold nanowires incorporated in colla...
<p>The generation of <i>in vitro</i> tissue constructs using biomaterials and cardiac cells is a pro...
The basic requirement of any engineered scaffold is to mimic the native tissue extracellular matrix ...
Next generation of biomaterials with enhanced functionalities requires the integration of material s...
Reactive electrospinning is capable of efficiently producing in situ crosslinked scaffolds resemblin...
Collagen electrospun scaffolds potentially couple high biomimetism of the biological material with t...
Collagen is the major structural protein in myocardium and contributes to tissue strength and integr...
MSCs are widely applied to regenerate heart tissue in myocardial diseases but when grown in standard...