The biocompatibility of a scaffold for tissue engineered constructs is essential for the outcome. Bacterial cellulose (BC) consists of completely pure cellulose nanofibrils synthesized by Acetobacter xylinum. BC has high mechanical strength and can be shaped into three-dimensional structures. Cellulose-based materials induce negligible foreign body and inflammatory responses and are considered as biocompatible. The in vivo biocompatibility of BC has never been evaluated systematically. Thus, in the development of tissue engineered constructs with a BC scaffold, it is necessary to evaluate the in vivo biocompatibility. BC was implanted subcutaneously in rats for 1, 4, and 12 weeks. The implants were evaluated in aspects of chronic inflammati...
Bacterial cellulose (BC), which can be produced by microorganisms, is an ideal biomaterial especiall...
Bacterial nanocellulose (BNC), synthesized by the bacterium Gluconacetobacter xylinus, is composed o...
Tissue engineered blood vessels (TEBV) represent an attractive approach for overcoming reconstructiv...
The biocompatibility of a scaffold for tissue engineered constructs is essential for the outcome. Ba...
The bacterial cellulose (BC) secreted by Gluconacetobacter xylinus is a network of pure cellulose na...
The bacterial cellulose (BC) secreted by G. xylinus is a network of pure cellulose nanofibers, which...
Bacterial cellulose was functionalized with a chimeric protein containing a cellulose-binding module...
Abstract: Some bacteria can synthesize cellulose when they are cultivated under adequate conditions....
Some bacteria can synthesize cellulose when they are cultivated under adequate conditions. These bac...
Bacterial cellulose (BC) has established to be a remarkably versatile biomaterial and can be used in...
Bacterial cellulose was functionalized with a chimeric protein containing a cellulose-binding module...
Bacterial cellulose (BC) is a unique and promising material for use as implants and scaffolds in tis...
Cardiovascular diseases are still the predominant cause of death among the adult population in the W...
Microbial cellulose (MC) is a polysaccharide excreted extracellularly by certain bacteria. The speci...
Although commonly used synthetic vascular grafts perform satisfactorily in large caliber blood vesse...
Bacterial cellulose (BC), which can be produced by microorganisms, is an ideal biomaterial especiall...
Bacterial nanocellulose (BNC), synthesized by the bacterium Gluconacetobacter xylinus, is composed o...
Tissue engineered blood vessels (TEBV) represent an attractive approach for overcoming reconstructiv...
The biocompatibility of a scaffold for tissue engineered constructs is essential for the outcome. Ba...
The bacterial cellulose (BC) secreted by Gluconacetobacter xylinus is a network of pure cellulose na...
The bacterial cellulose (BC) secreted by G. xylinus is a network of pure cellulose nanofibers, which...
Bacterial cellulose was functionalized with a chimeric protein containing a cellulose-binding module...
Abstract: Some bacteria can synthesize cellulose when they are cultivated under adequate conditions....
Some bacteria can synthesize cellulose when they are cultivated under adequate conditions. These bac...
Bacterial cellulose (BC) has established to be a remarkably versatile biomaterial and can be used in...
Bacterial cellulose was functionalized with a chimeric protein containing a cellulose-binding module...
Bacterial cellulose (BC) is a unique and promising material for use as implants and scaffolds in tis...
Cardiovascular diseases are still the predominant cause of death among the adult population in the W...
Microbial cellulose (MC) is a polysaccharide excreted extracellularly by certain bacteria. The speci...
Although commonly used synthetic vascular grafts perform satisfactorily in large caliber blood vesse...
Bacterial cellulose (BC), which can be produced by microorganisms, is an ideal biomaterial especiall...
Bacterial nanocellulose (BNC), synthesized by the bacterium Gluconacetobacter xylinus, is composed o...
Tissue engineered blood vessels (TEBV) represent an attractive approach for overcoming reconstructiv...