Volumetric muscle loss (VML) is the traumatic/surgical loss of skeletal muscle, causing aesthetic damage and functional impairment. Suboptimal current surgical treatments are driving research towards the development of optimised regenerative therapies. The grafting of bioengineered scaffolds derived from decellularized skeletal muscle may be a valid option to promote structural and functional healing. In this work, a cellular human diaphragm was considered as a scaffold material for VML treatment. Decellularization occurred through four detergent-enzymatic protocols involving (1) sodium dodecyl sulfate (SDS), (2) SDS + Tergitol™, (3) sodium deoxycholate, and (4) Tergitol™. After decellularization, cells, DNA (≤50 ng/mg of tissue), and muscl...
Large volume skeletal muscle injuries, such as those that occur through traumatic or surgical means,...
Background. Skeletal muscle defects arising from traumatic or pathological conditions may require su...
AbstractMuscle tissue engineering can provide support to large congenital skeletal muscle defects us...
Therapeutic options available in the clinical practice to restore severe loss of muscle mass after t...
Surgical repair of large muscular defects requires the use of autologous graft transfer or prostheti...
Several acquired or congenital pathological conditions can affect skeletal muscle leading to volumet...
Several acquired or congenital pathological conditions can affect skeletal muscle leading to volumet...
Background. Repair of skeletal muscle loss due to trauma, surgical resection or malformations repres...
Regenerative medicine and tissue engineering could potentially provide a solution to help patients s...
Skeletal muscle tissue engineering (TE) aims to efficiently repair large congenital and acquired def...
textabstractSkeletal muscle tissue engineering (TE) aims to efficiently repair large congenital and ...
Muscle tissue engineering can provide support to large congenital skeletal muscle defects using scaf...
Background. Skeletal muscle loss secondary to trauma or myopathy may require surgical interventions,...
The production of skeletal muscle constructs useful for replacing large defects in vivo, such as in ...
[[abstract]]Objective: We evaluated the effectiveness of enzyme-detergent methods on cell removal of...
Large volume skeletal muscle injuries, such as those that occur through traumatic or surgical means,...
Background. Skeletal muscle defects arising from traumatic or pathological conditions may require su...
AbstractMuscle tissue engineering can provide support to large congenital skeletal muscle defects us...
Therapeutic options available in the clinical practice to restore severe loss of muscle mass after t...
Surgical repair of large muscular defects requires the use of autologous graft transfer or prostheti...
Several acquired or congenital pathological conditions can affect skeletal muscle leading to volumet...
Several acquired or congenital pathological conditions can affect skeletal muscle leading to volumet...
Background. Repair of skeletal muscle loss due to trauma, surgical resection or malformations repres...
Regenerative medicine and tissue engineering could potentially provide a solution to help patients s...
Skeletal muscle tissue engineering (TE) aims to efficiently repair large congenital and acquired def...
textabstractSkeletal muscle tissue engineering (TE) aims to efficiently repair large congenital and ...
Muscle tissue engineering can provide support to large congenital skeletal muscle defects using scaf...
Background. Skeletal muscle loss secondary to trauma or myopathy may require surgical interventions,...
The production of skeletal muscle constructs useful for replacing large defects in vivo, such as in ...
[[abstract]]Objective: We evaluated the effectiveness of enzyme-detergent methods on cell removal of...
Large volume skeletal muscle injuries, such as those that occur through traumatic or surgical means,...
Background. Skeletal muscle defects arising from traumatic or pathological conditions may require su...
AbstractMuscle tissue engineering can provide support to large congenital skeletal muscle defects us...