An important aspect of bone tissue engineering (BTE) is bone regeneration, an interdisciplinary process involving the use of cells, biomaterials, and therapeutic agents. Biomaterials, being an essential part of this process, still face challenges in mimicking the three-dimensional (3D) architecture of natural bone and inducing the functions of cells and tissues during bone tissue formation. Electrical stimulation (ES), as one of the signals governing the functions of cells and tissues, has been proved to induce the bone formation of damaged tissues in vivo with outstanding efficiency. However, the research on its potential to improve the performance of bone regeneration with tissue-engineered materials in vitro has been challenging due to t...
Several biomaterials, including natural polymers, are used to increase cellular interactions as an e...
Abstract: Osteoporosis is a skeletal disease characterized by bone loss and bone microarchitectural ...
The advent of implantable biomaterials has revolutionized medical treatment, allowing the developmen...
Scaffolds are physical substrates for cell attachments, proliferation, and differentiation, ultimate...
Scaffolds play a key role in tissue engineering applications. In the case of bone tissue engineering...
Bone tissue engineering promises to restore bone defects that are caused by severe trauma, congenita...
The versatile properties of graphene-based materials are enabling various tissue regeneration, towar...
© 2021 Elsevier Ltd and Techna Group S.r.l.The employment of graphene and its derivatives, graphene ...
Composite biomaterials with hierarchical structures have emerged as new approaches for bone-tissue e...
The incidence of fractures and bone-related diseases like osteoporosis has been increasing due to ag...
In the last few years, graphene oxide (GO) has gained considerable importance in scaffold preparatio...
Human mesenchymal stem cells (hMSCs) hold great promise for bone regeneration, yet the direction of ...
The goal of this study was to develop a biodegradable and conductive scaffold to mimic the piezoelec...
Publisher Copyright: © 2023 by the authors. Licensee MDPI, Basel, Switzerland.Tissue-engineered bone...
Graphene oxide (GO) has attracted much interest for applications in bone tissue engineering; however...
Several biomaterials, including natural polymers, are used to increase cellular interactions as an e...
Abstract: Osteoporosis is a skeletal disease characterized by bone loss and bone microarchitectural ...
The advent of implantable biomaterials has revolutionized medical treatment, allowing the developmen...
Scaffolds are physical substrates for cell attachments, proliferation, and differentiation, ultimate...
Scaffolds play a key role in tissue engineering applications. In the case of bone tissue engineering...
Bone tissue engineering promises to restore bone defects that are caused by severe trauma, congenita...
The versatile properties of graphene-based materials are enabling various tissue regeneration, towar...
© 2021 Elsevier Ltd and Techna Group S.r.l.The employment of graphene and its derivatives, graphene ...
Composite biomaterials with hierarchical structures have emerged as new approaches for bone-tissue e...
The incidence of fractures and bone-related diseases like osteoporosis has been increasing due to ag...
In the last few years, graphene oxide (GO) has gained considerable importance in scaffold preparatio...
Human mesenchymal stem cells (hMSCs) hold great promise for bone regeneration, yet the direction of ...
The goal of this study was to develop a biodegradable and conductive scaffold to mimic the piezoelec...
Publisher Copyright: © 2023 by the authors. Licensee MDPI, Basel, Switzerland.Tissue-engineered bone...
Graphene oxide (GO) has attracted much interest for applications in bone tissue engineering; however...
Several biomaterials, including natural polymers, are used to increase cellular interactions as an e...
Abstract: Osteoporosis is a skeletal disease characterized by bone loss and bone microarchitectural ...
The advent of implantable biomaterials has revolutionized medical treatment, allowing the developmen...