Background and purpose Many investigations on biodegradable materials acting as an antibiotic carrier for local drug delivery are based on poly(lactide). However, the use of poly(lactide) implants in bone has been disputed because of poor bone regeneration at the site of implantation. Poly(trimethylene carbonate) (PTMC) is an enzymatically degradable polymer that does not produce acidic degradation products. We explored the suitability of PTMC as an antibiotic releasing polymer for the local treatment of osteomyelitis. Methods This study addressed 2 separate attributes of PTMC: (1) the release kinetics of gentamicin-loaded PTMC and (2) its behavior in inhibiting biofilm formation. Both of these characteristics were compared with those of co...
This thesis describes the development of gentamicin loaded resorbable polymeric\ud carriers as anti-...
Osteomyelitis is a severe bacterial infection that is considered to be one of the most-difficult-to-...
This paper reviews recent advances concerning antibiotic-loaded microparticles application in osteom...
Background and purpose Many investigations on biodegradable materials acting as an antibiotic carrie...
Background and purpose Many investigations on biodegradable materials acting as an antibiotic carrie...
Infections localised to bone (osteomyelitis) rapidly progress to a chronic state in which bacteria f...
Biodegradable delivery systems that do not produce acidic compounds during degradation are preferred...
Background: Biofilm formation on the prosthetic implant in osteomyelitis poses a great challenge to ...
Standard antibiotic therapy in osteomyelitis patients is of limited value when methicillin-resistant...
Introduction: Chronic osteomyelitis, or bone infection, is a major worldwide cause of morbidity and ...
FCT_UIDB/05608/2020. FCT_UIDP/05608/2020.The treatment of bone infections still involves systemic or...
As conventional drug delivery system is being improved rapidly by target-based drug delivery system,...
Osteomyelitis, an inflammatory process accompanied by bone destruction, is caused by infective micro...
Polymethylmethacrylate (PMMA) also referred as (acrylic) bone cement is a non-degradable biomaterial...
Implant associated infections are a critical health concern following orthopaedic surgery. Sustained...
This thesis describes the development of gentamicin loaded resorbable polymeric\ud carriers as anti-...
Osteomyelitis is a severe bacterial infection that is considered to be one of the most-difficult-to-...
This paper reviews recent advances concerning antibiotic-loaded microparticles application in osteom...
Background and purpose Many investigations on biodegradable materials acting as an antibiotic carrie...
Background and purpose Many investigations on biodegradable materials acting as an antibiotic carrie...
Infections localised to bone (osteomyelitis) rapidly progress to a chronic state in which bacteria f...
Biodegradable delivery systems that do not produce acidic compounds during degradation are preferred...
Background: Biofilm formation on the prosthetic implant in osteomyelitis poses a great challenge to ...
Standard antibiotic therapy in osteomyelitis patients is of limited value when methicillin-resistant...
Introduction: Chronic osteomyelitis, or bone infection, is a major worldwide cause of morbidity and ...
FCT_UIDB/05608/2020. FCT_UIDP/05608/2020.The treatment of bone infections still involves systemic or...
As conventional drug delivery system is being improved rapidly by target-based drug delivery system,...
Osteomyelitis, an inflammatory process accompanied by bone destruction, is caused by infective micro...
Polymethylmethacrylate (PMMA) also referred as (acrylic) bone cement is a non-degradable biomaterial...
Implant associated infections are a critical health concern following orthopaedic surgery. Sustained...
This thesis describes the development of gentamicin loaded resorbable polymeric\ud carriers as anti-...
Osteomyelitis is a severe bacterial infection that is considered to be one of the most-difficult-to-...
This paper reviews recent advances concerning antibiotic-loaded microparticles application in osteom...