Bone tissue engineering (BTE) requires a sturdy biomaterial for scaffolds for restoration of large bone defects. Ideally, the scaffold should have a mechanical strength comparable to the natural bone in the implanted site. We show that adding cosolvent during the processing of our previously developed composite of hydroxyapatite-gelatin with a silane cross-linker can significantly affect its mechanical strength. When processed with tetrahydrofuran (THF) as the cosolvent, the new hydroxyapatite-gelatin composite can demonstrate almost twice the compressive strength (97 vs 195 MPa) and biaxial flexural strength (222 vs 431 MPa) of the previously developed hydroxyapatite-gelatin composite (i.e., processed without THF), respectively. We further...
The hydroxyapatite [HAp, Ca10(PO4)6(OH)2] has a variety of applications in bone fillers and replacem...
Bone defect is still a major problem in dentistry. Solving this problem, tissue engineering becomes ...
Three-dimensional (3D) printing application is a promising method for bone tissue engineering. For e...
Bone tissue engineering (BTE) requires a sturdy biomaterial for scaffolds for restoration of large b...
Bone tissue engineering (BTE) requires a sturdy biomimetic scaffold for restoration of large bone de...
Causes of bone deficiency are numerous, but biomimetic alloplastic grafts provide an alternative to ...
Hydroxyapatite-gelatin modified siloxane (GEMOSIL) nanocomposite was developed by coating, kneading ...
Bone tissue is a nanocomposite consisting of an organic and inorganic matrix, in which the collagen ...
Bioactive synthetic hydrogels have emerged as promising materials because they can provide molecular...
The present work is focused on the development of gelatin-based scaffolds crosslinked through carbod...
Large segmental bone defect repairing remains a big challenge in clinics, and synthetic bone grafts ...
In this study for the first time, we compared physico-chemical and biological properties of polycapr...
The demand of new strategies for the induction of bone regeneration is continuously increasing. Biom...
Hydroxyapatite (HAP)-containing poly-ε-caprolactone (PCL)–polydiisopropyl fumarate (PDIPF) composite...
The development of bioactive glass-ceramic materials has been a topic of great interest aiming at en...
The hydroxyapatite [HAp, Ca10(PO4)6(OH)2] has a variety of applications in bone fillers and replacem...
Bone defect is still a major problem in dentistry. Solving this problem, tissue engineering becomes ...
Three-dimensional (3D) printing application is a promising method for bone tissue engineering. For e...
Bone tissue engineering (BTE) requires a sturdy biomaterial for scaffolds for restoration of large b...
Bone tissue engineering (BTE) requires a sturdy biomimetic scaffold for restoration of large bone de...
Causes of bone deficiency are numerous, but biomimetic alloplastic grafts provide an alternative to ...
Hydroxyapatite-gelatin modified siloxane (GEMOSIL) nanocomposite was developed by coating, kneading ...
Bone tissue is a nanocomposite consisting of an organic and inorganic matrix, in which the collagen ...
Bioactive synthetic hydrogels have emerged as promising materials because they can provide molecular...
The present work is focused on the development of gelatin-based scaffolds crosslinked through carbod...
Large segmental bone defect repairing remains a big challenge in clinics, and synthetic bone grafts ...
In this study for the first time, we compared physico-chemical and biological properties of polycapr...
The demand of new strategies for the induction of bone regeneration is continuously increasing. Biom...
Hydroxyapatite (HAP)-containing poly-ε-caprolactone (PCL)–polydiisopropyl fumarate (PDIPF) composite...
The development of bioactive glass-ceramic materials has been a topic of great interest aiming at en...
The hydroxyapatite [HAp, Ca10(PO4)6(OH)2] has a variety of applications in bone fillers and replacem...
Bone defect is still a major problem in dentistry. Solving this problem, tissue engineering becomes ...
Three-dimensional (3D) printing application is a promising method for bone tissue engineering. For e...