AbstractIntroductionTissue-engineered skeletal muscle constructs should be designed to generate contractile force with directional movement. Because electrical impulses from a somatic nervous system are crucial for in vivo skeletal muscle development, electrical pulse stimulation (EPS) culture as an artificial exercise is essential to fabricate functional skeletal muscle tissues in vitro. To further improve muscle functions, the activation of cell-signaling pathways from myogenic growth factors, such as insulin-like growth factor (IGF)-I, is also important. Because tissue-engineered skeletal muscle constructs should maintain a high cell-dense structure, the expression of an anti-apoptotic factor, such as B-cell lymphoma 2 (Bcl-2), could be ...
Muscular dystrophies are a group of highly disabling disorders that share degenerative muscle weakne...
Skeletal muscle tissue engineering (SMTE) aims at the in vitro generation of 3D skeletal muscle engi...
This project set out to develop a system to mechanically stimulate in vitro skeletal muscle tissue t...
Introduction: Tissue-engineered skeletal muscle constructs should be designed to generate contractil...
Engineered functional skeletal muscle would be beneficial in reconstructive surgery. Our previous wo...
The growing deficit in suitable tissues for patients awaiting organ transplants demonstrates the cli...
Engineered muscle tissues can be used for several different purposes, which include the production o...
Engineered skeletal muscle tissues are ideal candidates for applications in drug screening systems, ...
Engineering skeletal muscle tissue remains still a challenge, and numerous studies have indicated th...
Skeletal muscle related diseases cause loss and weakness in the muscle and affect the quality of lif...
Skeletal muscle atrophy can occur for a number of reasons including degenerative diseases and age-re...
Although skeletal muscle repairs itself following small injuries, genetic diseases or severe damages...
Background Volumetric muscle loss caused by trauma or after tumour surgery exceeds the natural regen...
Neuromuscular and neurodegenerative diseases are conditions that affect both motor neurons and the u...
A novel method based on the fibrin gels for engineering skeletal muscle was developed, the advantage...
Muscular dystrophies are a group of highly disabling disorders that share degenerative muscle weakne...
Skeletal muscle tissue engineering (SMTE) aims at the in vitro generation of 3D skeletal muscle engi...
This project set out to develop a system to mechanically stimulate in vitro skeletal muscle tissue t...
Introduction: Tissue-engineered skeletal muscle constructs should be designed to generate contractil...
Engineered functional skeletal muscle would be beneficial in reconstructive surgery. Our previous wo...
The growing deficit in suitable tissues for patients awaiting organ transplants demonstrates the cli...
Engineered muscle tissues can be used for several different purposes, which include the production o...
Engineered skeletal muscle tissues are ideal candidates for applications in drug screening systems, ...
Engineering skeletal muscle tissue remains still a challenge, and numerous studies have indicated th...
Skeletal muscle related diseases cause loss and weakness in the muscle and affect the quality of lif...
Skeletal muscle atrophy can occur for a number of reasons including degenerative diseases and age-re...
Although skeletal muscle repairs itself following small injuries, genetic diseases or severe damages...
Background Volumetric muscle loss caused by trauma or after tumour surgery exceeds the natural regen...
Neuromuscular and neurodegenerative diseases are conditions that affect both motor neurons and the u...
A novel method based on the fibrin gels for engineering skeletal muscle was developed, the advantage...
Muscular dystrophies are a group of highly disabling disorders that share degenerative muscle weakne...
Skeletal muscle tissue engineering (SMTE) aims at the in vitro generation of 3D skeletal muscle engi...
This project set out to develop a system to mechanically stimulate in vitro skeletal muscle tissue t...