Establishment of drug delivery system (DDS) in bone substitute materials for local treatment of bone defects still requires ambitious solutions for a retarded drug release. We present two novel DDS, a weakly cationic dendritic glycopolymer and a cationic polyelectrolyte complex, composed of dendritic glycopolymer and cellulose sulfate, for the proteasome inhibitor bortezomib. Both DDS are able to induce short-term retarded release of bortezomib from calcium phosphate bone cement in comparison to a burst-release of the drug from bone cement alone. Different release parameters have been evaluated to get a first insight into the release mechanism from bone cements. In addition, biocompatibility of the calcium phosphate cement, modified with th...
Bortezomib is a boronate proteasome inhibitor widely used as an efficient anticancer drug; however, ...
Abstract: Bone-seeking (osteotropic) drug delivery systems (ODDS) represent an interesting solution ...
It is well known that calcium phosphate bone cements set at low temperatures, therefore a wide range...
For the local treatment of bone defects, highly adaptable macromolecular architectures are still req...
The proteasome inhibitor bortezomib (BZM) is one of the most potent anti-cancer drugs in the therapy...
The proteasome inhibitor bortezomib (BZM) is one of the most potent anti-cancer drugs in the therapy...
This report presents a study of new dendrimer materials for drug delivery. The approach is to utili...
The proteasome inhibitor bortezomib (BZM) is one of the most potent anti-cancer drugs in the therapy...
This report presents a study of new dendrimer materials for drug delivery. The approach is to utili...
The proteasome inhibitor bortezomib (BZM) is one of the most potent anti-cancer drugs in the therapy...
Calcium phosphate cements are used as synthetic bone grafts, with several advantages, such as their ...
A novel injectable cement composed of chitosan-bonded borate bioactive glass (BG) particles was eval...
BACKGROUND: A novel injectable cement composed of chitosan-bonded borate bioactive glass (BG) partic...
The proteasome inhibitor bortezomib (BZM) is one of the most potent anti-cancer drugs in the therapy...
Ideally, bone substitute materials would undergo cell-mediated degradation during the remodeling pro...
Bortezomib is a boronate proteasome inhibitor widely used as an efficient anticancer drug; however, ...
Abstract: Bone-seeking (osteotropic) drug delivery systems (ODDS) represent an interesting solution ...
It is well known that calcium phosphate bone cements set at low temperatures, therefore a wide range...
For the local treatment of bone defects, highly adaptable macromolecular architectures are still req...
The proteasome inhibitor bortezomib (BZM) is one of the most potent anti-cancer drugs in the therapy...
The proteasome inhibitor bortezomib (BZM) is one of the most potent anti-cancer drugs in the therapy...
This report presents a study of new dendrimer materials for drug delivery. The approach is to utili...
The proteasome inhibitor bortezomib (BZM) is one of the most potent anti-cancer drugs in the therapy...
This report presents a study of new dendrimer materials for drug delivery. The approach is to utili...
The proteasome inhibitor bortezomib (BZM) is one of the most potent anti-cancer drugs in the therapy...
Calcium phosphate cements are used as synthetic bone grafts, with several advantages, such as their ...
A novel injectable cement composed of chitosan-bonded borate bioactive glass (BG) particles was eval...
BACKGROUND: A novel injectable cement composed of chitosan-bonded borate bioactive glass (BG) partic...
The proteasome inhibitor bortezomib (BZM) is one of the most potent anti-cancer drugs in the therapy...
Ideally, bone substitute materials would undergo cell-mediated degradation during the remodeling pro...
Bortezomib is a boronate proteasome inhibitor widely used as an efficient anticancer drug; however, ...
Abstract: Bone-seeking (osteotropic) drug delivery systems (ODDS) represent an interesting solution ...
It is well known that calcium phosphate bone cements set at low temperatures, therefore a wide range...