Hydroxyapatite (HA) has been widely investigated as scaffolding material for bone tissue engineering, mainly for its excellent biocompatibility. Presently, there is an increasing interest in the composites of hydroxyapatite with bioactive glasses, with the aim to obtain systems with improved bioactivity or mechanical properties. Moreover, modifying the ratio between bioactive glass and hydroxyapatite results in the possibility of controlling the reaction rate of the composite scaffold in the human body. However, high temperature treatments are usually required in order to sinter HA-based composites, causing the bioactive glass to crystallize into a glass-ceramic, with possible negative effects on its bioactivity. In the present research wor...
Bioactive-glass-derived scaffolds are crucial in bone tissue engineering since they act as temporary...
Bioactive-glass-derived scaffolds are crucial in bone tissue engineering since they act as temporary...
Bioactive glass/hydroxyapatite composites for bone tissue repair and regeneration have been produced...
Hydroxyapatite (HA) has been widely investigated as scaffolding material for bone tissue engineering...
Since the 1970s, various types of ceramic, glass and glass\u2013ceramic materials have been proposed...
Since the 1970s, various types of ceramic, glass and glass–ceramic materials have been proposed and ...
Since the 1970s, various types of ceramic, glass and glass-ceramic materials have been proposed and ...
In the last few years several attempts have been made to combine hydroxyapatite (HA) with bioactive ...
New Hydroxyapatite-Bioactive Glass composites, xHA-(1-x)BG (x = 25, 50, and 75 wt %), are developed ...
In the last few years several attempts have been made to combine hydroxyapatite (HA) with bioactive ...
The most common biomaterials employed in orthopaedic and dental surgery are calcium phosphate (CaP) ...
Biomaterials, such as Hydroxyapatite (HA) and Bioactive glass (BG) have been increasingly implemente...
Bioresorbable and bioactive tissue engineering scaffolds based on bioactive glass (45S5 Bioglass®) p...
Bioactive glass/hydroxyapatite composites for bone tissue repair and regeneration have been produced...
Recently several attempts have been made to combine calcium phosphates, such as β-tricalcium phospha...
Bioactive-glass-derived scaffolds are crucial in bone tissue engineering since they act as temporary...
Bioactive-glass-derived scaffolds are crucial in bone tissue engineering since they act as temporary...
Bioactive glass/hydroxyapatite composites for bone tissue repair and regeneration have been produced...
Hydroxyapatite (HA) has been widely investigated as scaffolding material for bone tissue engineering...
Since the 1970s, various types of ceramic, glass and glass\u2013ceramic materials have been proposed...
Since the 1970s, various types of ceramic, glass and glass–ceramic materials have been proposed and ...
Since the 1970s, various types of ceramic, glass and glass-ceramic materials have been proposed and ...
In the last few years several attempts have been made to combine hydroxyapatite (HA) with bioactive ...
New Hydroxyapatite-Bioactive Glass composites, xHA-(1-x)BG (x = 25, 50, and 75 wt %), are developed ...
In the last few years several attempts have been made to combine hydroxyapatite (HA) with bioactive ...
The most common biomaterials employed in orthopaedic and dental surgery are calcium phosphate (CaP) ...
Biomaterials, such as Hydroxyapatite (HA) and Bioactive glass (BG) have been increasingly implemente...
Bioresorbable and bioactive tissue engineering scaffolds based on bioactive glass (45S5 Bioglass®) p...
Bioactive glass/hydroxyapatite composites for bone tissue repair and regeneration have been produced...
Recently several attempts have been made to combine calcium phosphates, such as β-tricalcium phospha...
Bioactive-glass-derived scaffolds are crucial in bone tissue engineering since they act as temporary...
Bioactive-glass-derived scaffolds are crucial in bone tissue engineering since they act as temporary...
Bioactive glass/hydroxyapatite composites for bone tissue repair and regeneration have been produced...