The implantation of cell-seeded large-sized scaffold often results in insufficient tissue regeneration, which is still a challenge for successful grafting. Excess hydrogen peroxide (H2O2) released by cells propagates oxidative stress, which is the primary cause of tissue injury leading to failure in tissue regeneration. Hence, preventing tissue from oxidative damage becomes imperative. For the first time, we entrapped catalase, an antioxidant in a scaffold as a novel approach in bioengineering to prevent tissue from H2O2-induced damage. The gel prepared from the mixture of decellularized adipose tissue and high viscous sodium alginate was used to entrap the catalase, and was coated to 3D polycaprolactone porous scaffolds. This study showed ...
In tissue engineering, excessively generated reactive oxygen species (ROS) during biomaterial implan...
Restricted oxygen diffusion can result in central cell necrosis in engineered tissue, a problem that...
In the regeneration process for new tissues, oxygen promotes re-epithelialization and healing of inf...
The implantation of cell-seeded large-sized scaffold often results in insufficient tissue regenerati...
Tissue engineering has emerged as an interdisciplinary field to overcome current challenges for tiss...
Tissue engineering has emerged as an interdisciplinary field to overcome current challenges for tiss...
An important limitation in cell therapy for the regeneration of tissue is the initial lack of oxygen...
When designing cell encapsulation devices for tissue engineering, a number of important parameters n...
When designing cell encapsulation devices for tissue engineering, a number of important parameters n...
The inadequate oxygen supply to engineered tissues has been a persistent challenge in tissue enginee...
Bioengineering of tissues and organs has the potential to generate functional replacement organs. Ho...
The free radical formation and resulting oxidative stress formed during cell transplantation can cau...
There have been many attempts to provide sufficient nutrients, especially oxygen, to engineered larg...
Angiogenesis holds an important role in wound healing by constructing new blood vessels from the pre...
The biological responses of hydrogen peroxide (H2O2) are highly dependent on its concentration. H2O2...
In tissue engineering, excessively generated reactive oxygen species (ROS) during biomaterial implan...
Restricted oxygen diffusion can result in central cell necrosis in engineered tissue, a problem that...
In the regeneration process for new tissues, oxygen promotes re-epithelialization and healing of inf...
The implantation of cell-seeded large-sized scaffold often results in insufficient tissue regenerati...
Tissue engineering has emerged as an interdisciplinary field to overcome current challenges for tiss...
Tissue engineering has emerged as an interdisciplinary field to overcome current challenges for tiss...
An important limitation in cell therapy for the regeneration of tissue is the initial lack of oxygen...
When designing cell encapsulation devices for tissue engineering, a number of important parameters n...
When designing cell encapsulation devices for tissue engineering, a number of important parameters n...
The inadequate oxygen supply to engineered tissues has been a persistent challenge in tissue enginee...
Bioengineering of tissues and organs has the potential to generate functional replacement organs. Ho...
The free radical formation and resulting oxidative stress formed during cell transplantation can cau...
There have been many attempts to provide sufficient nutrients, especially oxygen, to engineered larg...
Angiogenesis holds an important role in wound healing by constructing new blood vessels from the pre...
The biological responses of hydrogen peroxide (H2O2) are highly dependent on its concentration. H2O2...
In tissue engineering, excessively generated reactive oxygen species (ROS) during biomaterial implan...
Restricted oxygen diffusion can result in central cell necrosis in engineered tissue, a problem that...
In the regeneration process for new tissues, oxygen promotes re-epithelialization and healing of inf...