Decellularized (acellular) scaffolds, composed of natural extracellular matrix, form the basis of an emerging generation of tissue-engineered organ and tissue replacements capable of transforming healthcare. Prime requirements for allogeneic, or xenogeneic, decellularized scaffolds are biocompatibility and absence of rejection. The humoral immune response to decellularized scaffolds has been well documented, but there is a lack of data on the cell-mediated immune response toward them in vitro and in vivo. Skeletal muscle scaffolds were decellularized, characterized in vitro, and xenotransplanted. The cellular immune response toward scaffolds was evaluated by immunohistochemistry and quantified stereologically. T-cell proliferation and cytok...
AbstractMuscle tissue engineering can provide support to large congenital skeletal muscle defects us...
Pathological conditions affecting skeletal muscle function may lead to irreversible volumetric muscl...
Introduction Because of the restricted inherent capacity of regeneration and healing, transplantatio...
Background. Skeletal muscle defects arising from traumatic or pathological conditions may require su...
With the aim to generate tissue-engineered, implantable devices, we decellularized skeletal muscles ...
Background. Skeletal muscle loss secondary to trauma or myopathy may require surgical interventions,...
In the pursuit of a transplantable construct for the replacement of large skeletal muscle defects ar...
Biological scaffold is a popular choice for the preparation of tissue-engineered organs and has the ...
Skeletal muscle tissue engineering (TE) aims to efficiently repair large congenital and acquired def...
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...
Volumetric muscle loss (VML) is the traumatic/surgical loss of skeletal muscle, causing aesthetic da...
Xenogeneic cardiac extracellular matrix (cECM) scaffolds for reconstructive heart surgery applicatio...
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...
AbstractMuscle tissue engineering can provide support to large congenital skeletal muscle defects us...
Pathological conditions affecting skeletal muscle function may lead to irreversible volumetric muscl...
Introduction Because of the restricted inherent capacity of regeneration and healing, transplantatio...
Background. Skeletal muscle defects arising from traumatic or pathological conditions may require su...
With the aim to generate tissue-engineered, implantable devices, we decellularized skeletal muscles ...
Background. Skeletal muscle loss secondary to trauma or myopathy may require surgical interventions,...
In the pursuit of a transplantable construct for the replacement of large skeletal muscle defects ar...
Biological scaffold is a popular choice for the preparation of tissue-engineered organs and has the ...
Skeletal muscle tissue engineering (TE) aims to efficiently repair large congenital and acquired def...
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...
Volumetric muscle loss (VML) is the traumatic/surgical loss of skeletal muscle, causing aesthetic da...
Xenogeneic cardiac extracellular matrix (cECM) scaffolds for reconstructive heart surgery applicatio...
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...
AbstractMuscle tissue engineering can provide support to large congenital skeletal muscle defects us...
Pathological conditions affecting skeletal muscle function may lead to irreversible volumetric muscl...
Introduction Because of the restricted inherent capacity of regeneration and healing, transplantatio...