Calcium sulfate/calcium phosphate (CS-CP)-based bone substitutes have been developed in premixed putty for usage in clinical applications. However, it is difficult to completely stop the bleeding during an operation because premixed putty can come into contact with blood or body fluids leading to disintegration. Under certain conditions depending on particle size and morphology, collapsed (washed) particles can cause inflammation and delay bone healing. In this context, anti-washout premixed putty CS-CP was prepared by mixing glycerin with 1, 2, and 4 wt% of hydroxypropyl methylcellulose (HPMC), and the resultant anti-washout properties were evaluated. The results showed that more than 70% of the premixed putty without HPMC was disintegrate...
Calcium sulfate (CS) can be used as an antibiotically impregnated bone substitute in a variety of cl...
Calcium phosphate cements (CPCs) are commonly used as bone substitute materials. However, their slow...
Lyophilised collagen scaffolds have shown enormous potential in tissue engineering in a number of ar...
[[abstract]]Calcium sulfate/calcium phosphate (CS-CP)-based bone substitutes have been developed in ...
This article describes preparation of anti-decay self-setting pastes of hydroxyapatite/collagen (HAp...
Calcium sulfate (CS) formulations are frequently implanted as antibiotically impregnated bone substi...
Autografting is the most effective method used for supplementing and replacing bone. Autografting is...
Calcium phosphates (CaPs) are widely used in hard tissue replacement because of their excellent bioc...
Two formulations of biphasic injectable bone substitutes have been developed for the treatment of bo...
Objective: Moldable in situ self-stabilizing and hardening bone graft materials facilitate handling ...
Calcium sulfate (CS) formulations are frequently implanted as antibiotically impregnated bone substi...
Calcium sulfate (CS) can be used as an antibiotically impregnated bone substitute in a variety of cl...
Over the last decades, numerous attempts of grafting bone defects have been made, using materials of...
International audienceThis study reports on the incorporation of the self-setting polysaccharide der...
In this study, a novel injectable bone substitute (IBS) was prepared by incorporating a bioceramic p...
Calcium sulfate (CS) can be used as an antibiotically impregnated bone substitute in a variety of cl...
Calcium phosphate cements (CPCs) are commonly used as bone substitute materials. However, their slow...
Lyophilised collagen scaffolds have shown enormous potential in tissue engineering in a number of ar...
[[abstract]]Calcium sulfate/calcium phosphate (CS-CP)-based bone substitutes have been developed in ...
This article describes preparation of anti-decay self-setting pastes of hydroxyapatite/collagen (HAp...
Calcium sulfate (CS) formulations are frequently implanted as antibiotically impregnated bone substi...
Autografting is the most effective method used for supplementing and replacing bone. Autografting is...
Calcium phosphates (CaPs) are widely used in hard tissue replacement because of their excellent bioc...
Two formulations of biphasic injectable bone substitutes have been developed for the treatment of bo...
Objective: Moldable in situ self-stabilizing and hardening bone graft materials facilitate handling ...
Calcium sulfate (CS) formulations are frequently implanted as antibiotically impregnated bone substi...
Calcium sulfate (CS) can be used as an antibiotically impregnated bone substitute in a variety of cl...
Over the last decades, numerous attempts of grafting bone defects have been made, using materials of...
International audienceThis study reports on the incorporation of the self-setting polysaccharide der...
In this study, a novel injectable bone substitute (IBS) was prepared by incorporating a bioceramic p...
Calcium sulfate (CS) can be used as an antibiotically impregnated bone substitute in a variety of cl...
Calcium phosphate cements (CPCs) are commonly used as bone substitute materials. However, their slow...
Lyophilised collagen scaffolds have shown enormous potential in tissue engineering in a number of ar...