Cells respond to changes in the environment by altering their phenotype. The ability to influence cell behavior by modifying their environment provides an opportunity for therapeutic application, for example, to promote faster wound healing in response to skin injury. Here, we have modified the preparation of an aluminium oxide template to generate large uniform membranes with differing nano-pore sizes. Epidermal cells (keratinocytes) and dermal cells (fibroblasts) readily adhere to these nanoporous membranes. The pore size appears to influence the rate of cell proliferation and migration, important aspects of cell behavior during wound healing. The suitability of the membrane to act as a dressing after a burn injury was assessed in vivo; a...
This work studied the effect of nanoporous alumina in acute cellular response in an in vivo model. N...
Anodized aluminium oxide may be chemically treated to yield a uniform self-organized distribution of...
Nanobiomaterials application into tissue repair and ulcer management is experiencing its golden age...
Cells respond to changes in the environment by altering their phenotype. The ability to influence ce...
In this study we investigate the electrochemical synthesis and characterisation of a nanometre scale...
AbstractBackgroundThe mesenchymal stem cell therapy has proven to be an effective option in the trea...
In this study we investigate for the first time the biomedical potential of using a membrane made fr...
In this study we investigate the biomedical potential of composite membranes composed of anodic alum...
Background: This study for the first time examines the biomedical potential of using anodic aluminiu...
Background: This study for the first time examines the biomedical potential of using anodic aluminiu...
As an effort to create the next generation of improved skin graft materials, in this study, we modif...
AbstractBackgroundThe mesenchymal stem cell therapy has proven to be an effective option in the trea...
yesA major challenge in the production of 3D tissue engineered skin is the recreation of the basemen...
Various artificial or natural biomaterials can be used for constructing a scaffold suitable for trea...
Current decade of tissue repair and ulcer management is experience stimulating change due to advance...
This work studied the effect of nanoporous alumina in acute cellular response in an in vivo model. N...
Anodized aluminium oxide may be chemically treated to yield a uniform self-organized distribution of...
Nanobiomaterials application into tissue repair and ulcer management is experiencing its golden age...
Cells respond to changes in the environment by altering their phenotype. The ability to influence ce...
In this study we investigate the electrochemical synthesis and characterisation of a nanometre scale...
AbstractBackgroundThe mesenchymal stem cell therapy has proven to be an effective option in the trea...
In this study we investigate for the first time the biomedical potential of using a membrane made fr...
In this study we investigate the biomedical potential of composite membranes composed of anodic alum...
Background: This study for the first time examines the biomedical potential of using anodic aluminiu...
Background: This study for the first time examines the biomedical potential of using anodic aluminiu...
As an effort to create the next generation of improved skin graft materials, in this study, we modif...
AbstractBackgroundThe mesenchymal stem cell therapy has proven to be an effective option in the trea...
yesA major challenge in the production of 3D tissue engineered skin is the recreation of the basemen...
Various artificial or natural biomaterials can be used for constructing a scaffold suitable for trea...
Current decade of tissue repair and ulcer management is experience stimulating change due to advance...
This work studied the effect of nanoporous alumina in acute cellular response in an in vivo model. N...
Anodized aluminium oxide may be chemically treated to yield a uniform self-organized distribution of...
Nanobiomaterials application into tissue repair and ulcer management is experiencing its golden age...