The large surface area of highly porous titanium structures produced by additive manufacturing can be modified using biofunctionalizing surface treatments to improve the bone regeneration performance of these otherwise bioinert biomaterials. In this longitudinal study, we applied and compared three types of biofunctionalizing surface treatments, namely acid-alkali (AcAl), alkali-acid-heat treatment (AlAcH), and anodizing-heat treatment (AnH). The effects of treatments on apatite forming ability, cell attachment, cell proliferation, osteogenic gene expression, bone regeneration, biomechanical stability, and bone-biomaterial contact were evaluated using apatite forming ability test, cell culture assays, and animal experiments. It was found th...
People in both developing and developed worlds are increasingly facing musculoskeletal problems that...
Titanium shows minimal encapsulation when implanted in bone tissue and develops a direct interfacial...
Bio-functionalizing surface treatments are often applied for improving the bioactivity of biomateria...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
Advanced additive manufacturing techniques such as electron beam melting (EBM), can produce highly p...
The aim of the study was to compare Ca and P formation (CaP) and subsequent bone cell response of a ...
The aim of the study was to compare Ca and P formation (CaP) and subsequent bone cell response of a ...
Anodizing could be used for bio-functionalization of the surfaces of titanium alloys. In this study,...
Bio-functionalizing surface treatments are often applied for improving the bioactivity of biomateria...
People in both developing and developed worlds are increasingly facing musculoskeletal problems that...
Titanium shows minimal encapsulation when implanted in bone tissue and develops a direct interfacial...
Bio-functionalizing surface treatments are often applied for improving the bioactivity of biomateria...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
Advanced additive manufacturing techniques such as electron beam melting (EBM), can produce highly p...
The aim of the study was to compare Ca and P formation (CaP) and subsequent bone cell response of a ...
The aim of the study was to compare Ca and P formation (CaP) and subsequent bone cell response of a ...
Anodizing could be used for bio-functionalization of the surfaces of titanium alloys. In this study,...
Bio-functionalizing surface treatments are often applied for improving the bioactivity of biomateria...
People in both developing and developed worlds are increasingly facing musculoskeletal problems that...
Titanium shows minimal encapsulation when implanted in bone tissue and develops a direct interfacial...
Bio-functionalizing surface treatments are often applied for improving the bioactivity of biomateria...