This study investigated the osteoconductive properties of a porous hydroxyapatite (HA) scaffold manufactured using a novel technique similar to the bread-making process, alone and in combination with an alginate polysaccharide fiber gel (HA/APFG putty) and autologous bone marrow aspirate (BMA). The hypothesis was that the HA/APFG putty would be as osteoconductive as granular HA and that the presence of BMA would further enhance bone formation in an ovine femoral condyle critical defect model. Thirty-six defects were created and either (1) porous HA granules, (2) HA/APFG putty, or (3) HA/APFG putty + BMA were implanted. After retrieval at 6 and 12 weeks, image analysis techniques were used to quantify bone apposition rates, new bone area, bo...
© 2018 Elsevier B.V. The main goal of this study was to produce a novel porous scaffold for rapid in...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
A synthetic bone substitute based on calcium hydroxyapatite (CHA) and poly(lactic-co-glycolic) acid ...
Current bone tissue engineering strategies aim to grow a tissue similar to native bone by combining ...
Ceramic/polymer-based biocomposites have emerged as potential biomaterials tofill, replace, repair o...
The development of an osteogenic bone graft substitute has important practical and cost implications...
This work aimed to manufacture scaffolds from a hydrogel composed of a sodium alginate matrix with h...
Purpose: Development and characterization of an in situ-forming, osteoconductive, and growth factor-...
This paper describes the synthesis of sodium alginate (Alg) / hydroxyapatite (HA) composites and the...
The need for finding a bone graft substitute stems from the fact that approximately 200,000 bone gra...
Hydroxyapatite (HA) ceramics are widely used for bone reconstruction. They are osteoconductive and s...
Tissue engineering is widely recognized as a promising approach for bone repair and reconstruction. ...
BACKGROUND: We reviewed the biological and mechanical properties of porous hydroxyapatite (HA) compa...
Item does not contain fulltextAn emerging approach toward development of injectable, self-setting, a...
Porous composite scaffold using an alginate and bioactive glass ICIE16M was synthesized by a simple ...
© 2018 Elsevier B.V. The main goal of this study was to produce a novel porous scaffold for rapid in...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
A synthetic bone substitute based on calcium hydroxyapatite (CHA) and poly(lactic-co-glycolic) acid ...
Current bone tissue engineering strategies aim to grow a tissue similar to native bone by combining ...
Ceramic/polymer-based biocomposites have emerged as potential biomaterials tofill, replace, repair o...
The development of an osteogenic bone graft substitute has important practical and cost implications...
This work aimed to manufacture scaffolds from a hydrogel composed of a sodium alginate matrix with h...
Purpose: Development and characterization of an in situ-forming, osteoconductive, and growth factor-...
This paper describes the synthesis of sodium alginate (Alg) / hydroxyapatite (HA) composites and the...
The need for finding a bone graft substitute stems from the fact that approximately 200,000 bone gra...
Hydroxyapatite (HA) ceramics are widely used for bone reconstruction. They are osteoconductive and s...
Tissue engineering is widely recognized as a promising approach for bone repair and reconstruction. ...
BACKGROUND: We reviewed the biological and mechanical properties of porous hydroxyapatite (HA) compa...
Item does not contain fulltextAn emerging approach toward development of injectable, self-setting, a...
Porous composite scaffold using an alginate and bioactive glass ICIE16M was synthesized by a simple ...
© 2018 Elsevier B.V. The main goal of this study was to produce a novel porous scaffold for rapid in...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
A synthetic bone substitute based on calcium hydroxyapatite (CHA) and poly(lactic-co-glycolic) acid ...