AbstractIn the field of reconstructive surgery, a great challenge is represented by bone injuries beyond the self-repair threshold.Autologous bone grafts may be considered the gold standard. Anyway, such approach is limited by the amount of tissue required for grafting and by donor site morbidity. To overcome these drawbacks, bone tissue engineering represents a promising solution. 3D fully biodegradable and nanocomposite scaffolds for bone tissue regeneration, consisting of poly(ɛ-caprolactone) (PCL) reinforced with hydroxyapatite (HA) nanoparticles, were developed using an additive manufacturing process. The effect of nanoparticles and architecture (i.e., lay-down pattern) on the mechanical/functional and biological properties was discuss...
Hydroxyapatite (HAP)-containing poly-ε-caprolactone (PCL)–polydiisopropyl fumarate (PDIPF) composite...
AbstractIdeal scaffolds for tissue engineering must mimic the complex characteristics of natural tis...
Three-dimensional (3D) printing application is a promising method for bone tissue engineering. For e...
AbstractIn the field of reconstructive surgery, a great challenge is represented by bone injuries be...
Additive manufacturing represents a powerful tool for the direct fabrication of lightweight and poro...
Tissue engineering and regenerative medicine has been providing exciting technologies for the devel...
Abstract A fine-tuned combination of scaffolds, biomolecules, and mesenchymal stem cells (MSCs) is u...
Session: Biomaterial-based Tissue Regeneration: abstract no. 150INTRODUCTION: Bone tissue engineerin...
A challenging approach of three-dimensional (3D)-biomimetic scaffold design for bone tissue engineer...
Yan Xia,1,* Panyu Zhou,1,* Xiaosong Cheng,1,* Yang Xie,1,* Chong Liang,2 Chao Li,1 Shuogui Xu1,2 1De...
To facilitate optimal application of appropriate scaffold architectures for clinical trials, there ...
Bone extracellular matrix (ECM) is composed of mineralized collagen fibrils which support biological...
The deficiencies of current bone graft substitutes have been a driving force in developing new and m...
© 2016 by the author. Scaffolds are physical substrates for cell attachment, proliferation, and diff...
Introduction: Despite its regenerative capacity, bone healing can be compromised, leading to delayed...
Hydroxyapatite (HAP)-containing poly-ε-caprolactone (PCL)–polydiisopropyl fumarate (PDIPF) composite...
AbstractIdeal scaffolds for tissue engineering must mimic the complex characteristics of natural tis...
Three-dimensional (3D) printing application is a promising method for bone tissue engineering. For e...
AbstractIn the field of reconstructive surgery, a great challenge is represented by bone injuries be...
Additive manufacturing represents a powerful tool for the direct fabrication of lightweight and poro...
Tissue engineering and regenerative medicine has been providing exciting technologies for the devel...
Abstract A fine-tuned combination of scaffolds, biomolecules, and mesenchymal stem cells (MSCs) is u...
Session: Biomaterial-based Tissue Regeneration: abstract no. 150INTRODUCTION: Bone tissue engineerin...
A challenging approach of three-dimensional (3D)-biomimetic scaffold design for bone tissue engineer...
Yan Xia,1,* Panyu Zhou,1,* Xiaosong Cheng,1,* Yang Xie,1,* Chong Liang,2 Chao Li,1 Shuogui Xu1,2 1De...
To facilitate optimal application of appropriate scaffold architectures for clinical trials, there ...
Bone extracellular matrix (ECM) is composed of mineralized collagen fibrils which support biological...
The deficiencies of current bone graft substitutes have been a driving force in developing new and m...
© 2016 by the author. Scaffolds are physical substrates for cell attachment, proliferation, and diff...
Introduction: Despite its regenerative capacity, bone healing can be compromised, leading to delayed...
Hydroxyapatite (HAP)-containing poly-ε-caprolactone (PCL)–polydiisopropyl fumarate (PDIPF) composite...
AbstractIdeal scaffolds for tissue engineering must mimic the complex characteristics of natural tis...
Three-dimensional (3D) printing application is a promising method for bone tissue engineering. For e...