Background/Aims\ud \ud Biological and synthetic scaffolds play important roles in tissue engineering and are being developed towards human clinical applications. Based on previous work from our laboratory, we propose that extracellular matrices from skeletal muscle could be developed for adipose tissue engineering. \ud \ud Methods\ud \ud Extracellular matrices (Myogels) extracted from skeletal muscle of various species were assessed using biochemical assays including ELISA and Western blotting. Biofunctionality was assessed using an in vitro differentiation assay and a tissue engineering construct model in the rat. \ud \ud Results\ud \ud Myogels were successfully extracted from mice, rats, pigs and humans. Myogels contained significant leve...
Despite the increasing clinical demand in reconstructive, cosmetic and correctional surgery there re...
Background The creation of functional skeletal muscle via tissue engineering holds great promise ...
Here, we present extracellular matrix (ECM) powders derived from human adipose tissue as injectable ...
We initially described a rat chamber model with an inserted arteriovenous pedicle which spontaneousl...
Skeletal muscles represent 40% of body mass and its native regenerative capacity can be permanently ...
Skeletal muscles represent 40% of body mass and its native regenerative capacity can be permanently ...
Regenerative medicine and tissue engineering could potentially provide a solution to help patients s...
Adipose tissue forms when basement membrane extract ( Matrigel (TM)) and fibroblast growth factor-2 ...
Adipose tissue engineering strives to develop novel materials and methods for repairing and regenera...
The ability of skeletal muscle to repair itself via regenerative mechanisms is limited to instances ...
For severe muscle damage, tissue engineering has become a viable option to culture muscle tissues wi...
The development of ectopic adipose tissue in skeletal muscle is associated with several skeletal mus...
Reconstruction of muscle defects remains a challenge. Our work assessed the potential of an engineer...
Skeletal muscle has a remarkable, yet limited capacity for regeneration. Severely damaged skeletal m...
Cell sheet (CS) engineering, taking advantage of cellular self-matrix organized as in native tissue,...
Despite the increasing clinical demand in reconstructive, cosmetic and correctional surgery there re...
Background The creation of functional skeletal muscle via tissue engineering holds great promise ...
Here, we present extracellular matrix (ECM) powders derived from human adipose tissue as injectable ...
We initially described a rat chamber model with an inserted arteriovenous pedicle which spontaneousl...
Skeletal muscles represent 40% of body mass and its native regenerative capacity can be permanently ...
Skeletal muscles represent 40% of body mass and its native regenerative capacity can be permanently ...
Regenerative medicine and tissue engineering could potentially provide a solution to help patients s...
Adipose tissue forms when basement membrane extract ( Matrigel (TM)) and fibroblast growth factor-2 ...
Adipose tissue engineering strives to develop novel materials and methods for repairing and regenera...
The ability of skeletal muscle to repair itself via regenerative mechanisms is limited to instances ...
For severe muscle damage, tissue engineering has become a viable option to culture muscle tissues wi...
The development of ectopic adipose tissue in skeletal muscle is associated with several skeletal mus...
Reconstruction of muscle defects remains a challenge. Our work assessed the potential of an engineer...
Skeletal muscle has a remarkable, yet limited capacity for regeneration. Severely damaged skeletal m...
Cell sheet (CS) engineering, taking advantage of cellular self-matrix organized as in native tissue,...
Despite the increasing clinical demand in reconstructive, cosmetic and correctional surgery there re...
Background The creation of functional skeletal muscle via tissue engineering holds great promise ...
Here, we present extracellular matrix (ECM) powders derived from human adipose tissue as injectable ...