In cardiac tissue engineering it has been widely demonstrated the fundamental role of physical stimuli in improving structural and functional properties of the engineered cardiac constructs. An electro-mechanical bioreactor has been designed and developed to provide physiological uniaxial stretching and electrical stimuli for inducing functional differentiation and promoting morphological and structural maturation of cultured cardiac constructs obtained from stem cell-seeded scaffolds. The bioreactor is composed of: a transparent and sterilizable culture chamber for housing four cell-seeded scaffolds and the culture medium (working volume = 70 ml); a mechanical stimulation system, with a dedicated grasping system, to provide cyclic stretch...
Tissue engineering strategies have been extensively exploited to generate functional cardiac patches...
Tissue engineering strategies have been extensively exploited to generate functional cardiac patches...
Tissue engineering strategies have been extensively exploited to generate functional cardiac patches...
After myocardial infarction, the implantation of stem cell seeded scaffolds on the ischemic zone rep...
After myocardial infarction, the implantation of stem cell seeded scaffolds on the ischemic zone rep...
Physical stimuli are crucial for the structural and functional maturation of tissues both in vivo an...
Physical stimuli are crucial for the structural and functional maturation of tissues both in vivo an...
After myocardial infarction, the implantation of stem cell seeded scaffolds on the ischemic zone rep...
Physical stimuli are crucial for the structural and functional maturation of tissues both in vivo an...
Physical stimuli are crucial for the structural and functional maturation of tissues both in vivo an...
In last the decades, advances relevant to the generation of 3D Engineered Cardiac Tissues (ECTs) hav...
In last the decades, advances relevant to the generation of 3D Engineered Cardiac Tissues (ECTs) hav...
Owing to the inability of self-replacement by a damaged myocardium, alternative strategies to heart ...
Owing to the inability of self-replacement by a damaged myocardium, alternative strategies to heart ...
open4noOwing to the inability of self-replacement by a damaged myocardium, alternative strategies to...
Tissue engineering strategies have been extensively exploited to generate functional cardiac patches...
Tissue engineering strategies have been extensively exploited to generate functional cardiac patches...
Tissue engineering strategies have been extensively exploited to generate functional cardiac patches...
After myocardial infarction, the implantation of stem cell seeded scaffolds on the ischemic zone rep...
After myocardial infarction, the implantation of stem cell seeded scaffolds on the ischemic zone rep...
Physical stimuli are crucial for the structural and functional maturation of tissues both in vivo an...
Physical stimuli are crucial for the structural and functional maturation of tissues both in vivo an...
After myocardial infarction, the implantation of stem cell seeded scaffolds on the ischemic zone rep...
Physical stimuli are crucial for the structural and functional maturation of tissues both in vivo an...
Physical stimuli are crucial for the structural and functional maturation of tissues both in vivo an...
In last the decades, advances relevant to the generation of 3D Engineered Cardiac Tissues (ECTs) hav...
In last the decades, advances relevant to the generation of 3D Engineered Cardiac Tissues (ECTs) hav...
Owing to the inability of self-replacement by a damaged myocardium, alternative strategies to heart ...
Owing to the inability of self-replacement by a damaged myocardium, alternative strategies to heart ...
open4noOwing to the inability of self-replacement by a damaged myocardium, alternative strategies to...
Tissue engineering strategies have been extensively exploited to generate functional cardiac patches...
Tissue engineering strategies have been extensively exploited to generate functional cardiac patches...
Tissue engineering strategies have been extensively exploited to generate functional cardiac patches...