Bioactive glasses may function as antimicrobial delivery systems through the incorporation and subsequent release of therapeutic ions. The aim of this study was to evaluate the antimicrobial properties of a series of composite scaffolds composed of poly(octanediol citrate) with increased loads of a bioactive glass that releases zinc (Zn2+) and gallium (Ga3+) ions in a controlled manner. The antibacterial activity of these scaffolds was investigated against both Gram-positive (Staphylococcus aureus) and Gram-negative (Escherichia coli) bacteria. The ability of the scaffolds to release ions and the subsequent ingress of these ions into hard tissue was evaluated using a bovine bone model. Scaffolds containing bioactive glass exhibited antibact...
The proposed research is intended to measure the antibacterial properties of novel bioactive glass f...
Beneficial effects in bone cell growth and antibacterial action are currently attributed to Ga3+ ion...
Beneficial effects in bone cell growth and antibacterial action are currently attributed to Ga3+ ion...
Bone can be affected by osteosarcomae requiring surgical excision of the tumor as part of a treatme...
Zinc borate glasses with increasing gallium content (0, 2.5, 5, 10, and 15 Wt % Ga) were synthesized...
The incorporation of gallium into bioactive materials has been reported to enhance osteogenesis, to ...
Bone can be affected by osteosarcomae requiring surgical excision of the tumor as part of the treatm...
Gallium-doped phosphate-based glasses (PBGs) have been recently shown to have antibacterial activity...
Using an ideal biomaterial to treat injured bones can accelerate the healing process and simultaneou...
Fibrous scaffolds have gained increasing attention in tissue engineering applications because of the...
Borate 1393-B3 bioactive glasses doped with ZnO or Ga2O3 (1, 3, and 6% mol) were produced by convent...
This study aims to detect the optimum antibacterial activity of silver-doped bioactive glasses (Ag-B...
The aim of this work was to develop biodegradable and bioactive materials with sufficient structural...
Bone defects caused by trauma or pathological events are major clinical and socioeconomic burdens. T...
A new bioactive glass-based scaffold was developed for local delivery of drugs in case of osteomyeli...
The proposed research is intended to measure the antibacterial properties of novel bioactive glass f...
Beneficial effects in bone cell growth and antibacterial action are currently attributed to Ga3+ ion...
Beneficial effects in bone cell growth and antibacterial action are currently attributed to Ga3+ ion...
Bone can be affected by osteosarcomae requiring surgical excision of the tumor as part of a treatme...
Zinc borate glasses with increasing gallium content (0, 2.5, 5, 10, and 15 Wt % Ga) were synthesized...
The incorporation of gallium into bioactive materials has been reported to enhance osteogenesis, to ...
Bone can be affected by osteosarcomae requiring surgical excision of the tumor as part of the treatm...
Gallium-doped phosphate-based glasses (PBGs) have been recently shown to have antibacterial activity...
Using an ideal biomaterial to treat injured bones can accelerate the healing process and simultaneou...
Fibrous scaffolds have gained increasing attention in tissue engineering applications because of the...
Borate 1393-B3 bioactive glasses doped with ZnO or Ga2O3 (1, 3, and 6% mol) were produced by convent...
This study aims to detect the optimum antibacterial activity of silver-doped bioactive glasses (Ag-B...
The aim of this work was to develop biodegradable and bioactive materials with sufficient structural...
Bone defects caused by trauma or pathological events are major clinical and socioeconomic burdens. T...
A new bioactive glass-based scaffold was developed for local delivery of drugs in case of osteomyeli...
The proposed research is intended to measure the antibacterial properties of novel bioactive glass f...
Beneficial effects in bone cell growth and antibacterial action are currently attributed to Ga3+ ion...
Beneficial effects in bone cell growth and antibacterial action are currently attributed to Ga3+ ion...