Background In recent years, bioactive bioceramics such as bioglass and hydroxyapatite (HA) have been introduced as a remarkable development in the field of medicine due to their bio-adaptability, non-toxicity, and persistence, in vivo. They have many potential applications in the repair of bone defects and hence they have attracted significant interest from scholars. Objectives The aim of this study was to synthesize inorganic matrix CuO-based bioglasses and evaluate their antibacterial activity against aerobic bacterial infections in bone implants. Methods Nano-composite samples of silica-based bioactive glass, 60S BG with nano-powder CuO, were synthesize...
Successful treatment of infected bone defects caused by multi-drug resistant bacteria (MDR) has beco...
To promote osteointegration and simultaneously limit bacterial contamination without using antibioti...
Successful treatment of infected bone defects caused by multi-drug resistant bacteria (MDR) has beco...
Existing commercial bioactive glasses are reported to inhibit the growth of bacteria and are used to...
In search of new approaches to treat bone infection and prevent drug resistance development, a nanos...
he application of mesoporous bioactive glasses (MBGs) containing controllable amount of different io...
he application of mesoporous bioactive glasses (MBGs) containing controllable amount of different io...
Multifunctional bioactive glasses (BGs) are designed with a focus on the provision of bactericidal a...
The design and development of biomaterials with multifunctional properties is highly attractive in t...
Existing commercial bioactive glasses are reported to inhibit the growth of bacteria and are used to...
Existing commercial bioactive glasses are reported to inhibit the growth of bacteria and are used to...
Bioactive glasses are well-known materials suitable for bone-related applications thanks to their bi...
Bioactive glasses are well-known materials suitable for bone-related applications thanks to their bi...
Bioactive glasses are well-known materials suitable for bone-related applications thanks to their bi...
To promote osteointegration and simultaneously limit bacterial contamination without using antibioti...
Successful treatment of infected bone defects caused by multi-drug resistant bacteria (MDR) has beco...
To promote osteointegration and simultaneously limit bacterial contamination without using antibioti...
Successful treatment of infected bone defects caused by multi-drug resistant bacteria (MDR) has beco...
Existing commercial bioactive glasses are reported to inhibit the growth of bacteria and are used to...
In search of new approaches to treat bone infection and prevent drug resistance development, a nanos...
he application of mesoporous bioactive glasses (MBGs) containing controllable amount of different io...
he application of mesoporous bioactive glasses (MBGs) containing controllable amount of different io...
Multifunctional bioactive glasses (BGs) are designed with a focus on the provision of bactericidal a...
The design and development of biomaterials with multifunctional properties is highly attractive in t...
Existing commercial bioactive glasses are reported to inhibit the growth of bacteria and are used to...
Existing commercial bioactive glasses are reported to inhibit the growth of bacteria and are used to...
Bioactive glasses are well-known materials suitable for bone-related applications thanks to their bi...
Bioactive glasses are well-known materials suitable for bone-related applications thanks to their bi...
Bioactive glasses are well-known materials suitable for bone-related applications thanks to their bi...
To promote osteointegration and simultaneously limit bacterial contamination without using antibioti...
Successful treatment of infected bone defects caused by multi-drug resistant bacteria (MDR) has beco...
To promote osteointegration and simultaneously limit bacterial contamination without using antibioti...
Successful treatment of infected bone defects caused by multi-drug resistant bacteria (MDR) has beco...