Volumetric muscle loss overwhelms skeletal muscle’s ordinarily capable regenerative machinery, resulting in fibrosis and severe functional deficits which have defied clinical repair strategies. My work spans the design and preclinical evaluation of implants intended to drive the cell community of injured muscle toward a regenerative state, as well as the development of an understanding of the molecular responses of this cell community to biomaterial interventions. I demonstrate a new class of biomaterial by leveraging the productive capacity of sacrificial hollow fiber membrane cell culture; I show specifically that unique threads of whole extracellular matrix can be isolated by solvent degradation of cultured hollow fiber systems and that ...
The extracellular microenvironment regulates many of the mechanical and biochemical cues that direct...
Skeletal muscle is a complex tissue with a capacity to regenerate upon injury. However, when skeleta...
At an ever increasing pace, synthetic biomaterials are being developed with specific functionalities...
AbstractSkeletal muscle is essential in voluntary movement and other major vital functions. Muscle i...
The importance of skeletal muscle tissue is undoubted being the controller of several vital function...
Skeletal muscle has robust regenerative capacity after minor injury. However, following the traumati...
Skeletal muscles can self-repair minor strains, lacerations, and contusions; however, in cases of vo...
Current treatments for Volumetric Muscle Loss (VML) defects limit the restoration of functional musc...
Tissue engineered skeletal muscle has great potential to successfully treat volumetric muscle loss (...
PURPOSE Minor skeletal muscle injuries can be repaired, but more extensive volumetric muscle loss (V...
textThe toll skeletal muscle injury, resulting in significant muscle mass loss, has on the patient r...
Effective clinical treatments for volumetric muscle loss resulting from traumatic injury or resectio...
The progression of regenerative medicine has advanced the treatment of multiple illnesses and injuri...
Skeletal muscle has a high regenerative capacity, injuries trigger a regenerative program which rest...
Decellularized tissues composed of extracellular matrix are commonly used for tissue transplantation...
The extracellular microenvironment regulates many of the mechanical and biochemical cues that direct...
Skeletal muscle is a complex tissue with a capacity to regenerate upon injury. However, when skeleta...
At an ever increasing pace, synthetic biomaterials are being developed with specific functionalities...
AbstractSkeletal muscle is essential in voluntary movement and other major vital functions. Muscle i...
The importance of skeletal muscle tissue is undoubted being the controller of several vital function...
Skeletal muscle has robust regenerative capacity after minor injury. However, following the traumati...
Skeletal muscles can self-repair minor strains, lacerations, and contusions; however, in cases of vo...
Current treatments for Volumetric Muscle Loss (VML) defects limit the restoration of functional musc...
Tissue engineered skeletal muscle has great potential to successfully treat volumetric muscle loss (...
PURPOSE Minor skeletal muscle injuries can be repaired, but more extensive volumetric muscle loss (V...
textThe toll skeletal muscle injury, resulting in significant muscle mass loss, has on the patient r...
Effective clinical treatments for volumetric muscle loss resulting from traumatic injury or resectio...
The progression of regenerative medicine has advanced the treatment of multiple illnesses and injuri...
Skeletal muscle has a high regenerative capacity, injuries trigger a regenerative program which rest...
Decellularized tissues composed of extracellular matrix are commonly used for tissue transplantation...
The extracellular microenvironment regulates many of the mechanical and biochemical cues that direct...
Skeletal muscle is a complex tissue with a capacity to regenerate upon injury. However, when skeleta...
At an ever increasing pace, synthetic biomaterials are being developed with specific functionalities...