The importance of skeletal muscle tissue is undoubted being the controller of several vital functions including respiration and all voluntary locomotion activities. However, its regenerative capability is limited and significant tissue loss often leads to a chronic pathologic condition known as volumetric muscle loss. Here, we propose a biofabrication approach to rapidly restore skeletal muscle mass, 3D histoarchitecture, and functionality. By recapitulating muscle anisotropic organization at the microscale level, we demonstrate to efficiently guide cell differentiation and myobundle formation both in vitro and in vivo. Of note, upon implantation, the biofabricated myo-substitutes support the formation of new blood vessels and neuromuscular...
Skeletal muscle related diseases cause loss and weakness in the muscle and affect the quality of lif...
Skeletal muscle atrophy as a consequence of acute and chronic illness, immobilisation, muscular dyst...
The generation of engineered tissues and organs has entered into the clinical practice in response t...
The importance of skeletal muscle tissue is undoubted being the controller of several vital function...
Abstract The importance of skeletal muscle tissue is undoubted being the controller of several vital...
The growing deficit in suitable tissues for patients awaiting organ transplants demonstrates the cli...
Tissue engineered skeletal muscle has great potential to successfully treat volumetric muscle loss (...
Volumetric muscle loss (VML) is the traumatic or surgical loss of skeletal muscle comprising 20-30% ...
Purpose of reviewRegardless of the underlying cause, skeletal muscle wasting is detrimental for a pe...
Volumetric muscle loss (VML) is a common pathological condition caused by traumatic loss of skeletal...
Skeletal muscle is a complex tissue with a capacity to regenerate upon injury. However, when skeleta...
PURPOSE Minor skeletal muscle injuries can be repaired, but more extensive volumetric muscle loss (V...
Classical approaches to engineer skeletal muscle tissue based on current regenerative and surgical p...
A bioengineered skeletal muscle tissue as an alternative for autologous tissue flaps, which mimics ...
Tissue-engineered skeletal muscle can serve as a physiological model of natural muscle and a potenti...
Skeletal muscle related diseases cause loss and weakness in the muscle and affect the quality of lif...
Skeletal muscle atrophy as a consequence of acute and chronic illness, immobilisation, muscular dyst...
The generation of engineered tissues and organs has entered into the clinical practice in response t...
The importance of skeletal muscle tissue is undoubted being the controller of several vital function...
Abstract The importance of skeletal muscle tissue is undoubted being the controller of several vital...
The growing deficit in suitable tissues for patients awaiting organ transplants demonstrates the cli...
Tissue engineered skeletal muscle has great potential to successfully treat volumetric muscle loss (...
Volumetric muscle loss (VML) is the traumatic or surgical loss of skeletal muscle comprising 20-30% ...
Purpose of reviewRegardless of the underlying cause, skeletal muscle wasting is detrimental for a pe...
Volumetric muscle loss (VML) is a common pathological condition caused by traumatic loss of skeletal...
Skeletal muscle is a complex tissue with a capacity to regenerate upon injury. However, when skeleta...
PURPOSE Minor skeletal muscle injuries can be repaired, but more extensive volumetric muscle loss (V...
Classical approaches to engineer skeletal muscle tissue based on current regenerative and surgical p...
A bioengineered skeletal muscle tissue as an alternative for autologous tissue flaps, which mimics ...
Tissue-engineered skeletal muscle can serve as a physiological model of natural muscle and a potenti...
Skeletal muscle related diseases cause loss and weakness in the muscle and affect the quality of lif...
Skeletal muscle atrophy as a consequence of acute and chronic illness, immobilisation, muscular dyst...
The generation of engineered tissues and organs has entered into the clinical practice in response t...