There is an urgent, clinical need for an alternative to the use of autologous grafts for the ever increasing number of bone grafting procedures performed annually. Herein, we describe a developmentally inspired approach to bone tissue engineering, which focuses on leveraging biomaterials as platforms for recapitulating the process of endochondral ossification. To begin, we describe the traditional biomaterial-based approaches to tissue engineering that have been investigated as methods to promote in vivo bone regeneration, including the use of three-dimensional biomimetic scaffolds, the delivery of growth factors and recombinant proteins, and the in vitro engineering of mineralized bone-like tissue. Thereafter, we suggest that some of the h...
Biomaterials developed to treat bone defects have classically focused on bone healing via direct, in...
Cartilaginous tissues engineered using mesenchymal stem cells (MSCs) can be leveraged to generate bo...
Abstract Biomaterials play an important role in treating bone defects by promoting direct osteogenic...
There is an urgent, clinical need for an alternative to the use of autologous grafts for the ever-in...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Damaged or diseased bone can be treated using autografts or a range of different bone grafting bioma...
Damaged or diseased bone can be treated using autografts or a range of different bone grafting bioma...
IntroductionCurrent tissue engineering strategies to heal critical-size bone defects through direct ...
For years it has been recognized that engineering of large bone constructs will be feasible only if ...
Bone possesses a great regenerative capacity, as the majority of injuries reach resolution through c...
Bone possesses a great regenerative capacity, as the majority of injuries reach resolution through c...
Bone tissue engineering is currently undergoing a paradigm shift regarding the concepts used to deve...
Bone has innate ability to regenerate following injury. However, large and complex fractures exceed ...
Biomaterials developed to treat bone defects have classically focused on bone healing via direct, in...
Cartilaginous tissues engineered using mesenchymal stem cells (MSCs) can be leveraged to generate bo...
Abstract Biomaterials play an important role in treating bone defects by promoting direct osteogenic...
There is an urgent, clinical need for an alternative to the use of autologous grafts for the ever-in...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Damaged or diseased bone can be treated using autografts or a range of different bone grafting bioma...
Damaged or diseased bone can be treated using autografts or a range of different bone grafting bioma...
IntroductionCurrent tissue engineering strategies to heal critical-size bone defects through direct ...
For years it has been recognized that engineering of large bone constructs will be feasible only if ...
Bone possesses a great regenerative capacity, as the majority of injuries reach resolution through c...
Bone possesses a great regenerative capacity, as the majority of injuries reach resolution through c...
Bone tissue engineering is currently undergoing a paradigm shift regarding the concepts used to deve...
Bone has innate ability to regenerate following injury. However, large and complex fractures exceed ...
Biomaterials developed to treat bone defects have classically focused on bone healing via direct, in...
Cartilaginous tissues engineered using mesenchymal stem cells (MSCs) can be leveraged to generate bo...
Abstract Biomaterials play an important role in treating bone defects by promoting direct osteogenic...